Wortmannin
Based on 176 publication(s) in Google Scholar
Wortmannin (SL-2052; KY-12420) is a potent, selective and irreversible PI3K inhibitor with an IC50 of 3 nM. Wortmannin also blocks autophagy formation, and potently inhibits Polo-like kinase 1 (PlK1) and Plk3 with IC50s of 5.8 and 48 nM, respectively.
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- Reinheit: 99.85%
- CAS. Nr.: 19545-26-7
- Formel: C23H24O8
- Molecular Weight:428.43
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Speicherung:Powder -20°C, 3 years , 4°C, 2 years ; In solvent -80°C, 2 years , -20°C, 1 year
Publications Citing Use of MedChemExpress (MCE) Wortmannin
More- Signal Transduct Target Ther. 2024 Mar 9;9(1):65. [Abstract]
- Signal Transduct Target Ther. 2022 Dec 9;7(1):388. [Abstract]
- Nat Immunol. 2024 Apr;25(4):659-670. [Abstract]
- Bioact Mater. 2025 Aug 6:53:801-818. [Abstract]
- Adv Funct Mater. 2020, 2004940.
- ACS Nano. 2025 Dec 26. [Abstract]
- ACS Nano. 2020 Apr 28;14(4):4890-4904. [Abstract]
- Nat Commun. 2026 May 27. [Abstract]
- Nat Commun. 2025 Dec 2;16(1):10831. [Abstract]
- Nat Commun. 2025 Jul 18;16(1):6621. [Abstract]
- Nat Commun. 2024 Jan 26;15(1):759. [Abstract]
- Nat Commun. 2021 Jun 8;12(1):3444. [Abstract]
- BMEmat. 2026 Feb 11.
- Cell Death Differ. 2023 Jan;30(1):168-183. [Abstract]
- Sci Transl Med. 2026 May 20;18(850):eadj4902. [Abstract]
- Acta Pharm Sin B. 2024 Mar;14(3):1166-1186. [Abstract]
- Sci Transl Med. 2021 Jan 27;13(578):eaba7308. [Abstract]
- Autophagy. 2026 Jun 3:1-31. [Abstract]
- Autophagy. 2026 May 20:1-18. [Abstract]
- Autophagy. 2024 Aug;20(8):1798-1814. [Abstract]
- Autophagy. 2022 Jun;18(6):1433-1449. [Abstract]
- Autophagy. 2021 Nov;17(11):3592-3606. [Abstract]
- Adv Sci (Weinh). 2026 Apr;13(24):e21626. [Abstract]
- Adv Sci (Weinh). 2025 Apr 28:e2504647. [Abstract]
- Adv Sci (Weinh). 2023 Jun;10(17):e2207017. [Abstract]
- Adv Sci (Weinh). 2023 Feb;10(5):e2203884. [Abstract]
- Theranostics. 2021 Mar 11;11(11):5279-5295. [Abstract]
- Chem Eng J. 2025 Jul 1.
- J Adv Res. 2023 May:47:151-162. [Abstract]
- J Nanobiotechnology. 2025 Aug 26;23(1):590. [Abstract]
- Carbohydr Polym. 2025 Jan 15;348(Pt A):122854. [Abstract]
- Sci Adv. 2022 Jan 21;8(3):eabh2635. [Abstract]
- Small. 2020 Nov;16(44):e2004172. [Abstract]
- Redox Biol. 2023 Sep:65:102825. [Abstract]
- Redox Biol. 2023 Jun:62:102702. [Abstract]
- Redox Biol. 2022 May 10;53:102323. [Abstract]
- Redox Biol. 2022 May 17;53:102339. [Abstract]
- Redox Biol. 2021 Oct;46:102098. [Abstract]
- J Control Release. 2026 May 10:393:114833. [Abstract]
- J Control Release. 2025 Jan 8:379:45-58. [Abstract]
- Cell Rep Med. 2025 Dec 30:102531. [Abstract]
- Cell Rep Med. 2024 Feb 20;5(2):101357. [Abstract]
- J Exp Med. 2022 May 2;219(5):e20212414. [Abstract]
- Mater Today Bio. 2025 Apr 17:32:101778. [Abstract]
- Cell Mol Biol Lett. 2024 Feb 2;29(1):22. [Abstract]
- Cell Mol Biol Lett. 2023 Oct 24;28(1):85. [Abstract]
- Cancer Lett. 2022 Aug 10:541:215752. [Abstract]
- Cancer Lett. 2021 Oct 28;519:2-19. [Abstract]
- Mol Psychiatry. 2021 Nov;26(11):6451-6468. [Abstract]
- Food Chem. 2021 Nov 30;363:130323. [Abstract]
- Cell Death Dis. 2025 Apr 21;16(1):322. [Abstract]
- Acta Biomater. 2025 Jan 24:193:498-513. [Abstract]
- Cell Death Dis. 2022 Jul 15;13(7):615. [Abstract]
- Cell Death Dis. 2022 Feb 17;13(2):158. [Abstract]
- Cell Death Dis. 2019 Aug 5;10(8):583. [Abstract]
- Genes Dis. 2025 Nov 6.
- J Pharm Anal. 2025 May;15(5):101251. [Abstract]
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- Acta Pharmacol Sin. 2022 Apr;43(4):781-787. [Abstract]
- Phytomedicine. 2024 Dec 3:136:156314. [Abstract]
- Phytomedicine. 2024 Jul 25:130:155726. [Abstract]
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- Diabetes. 2026 Feb 13:db250567. [Abstract]
- Food Sci Hum Wellness. 2026 Apr 29.
- Cell Chem Biol. 2026 Apr 16;33(4):523-537.e7. [Abstract]
- Cell Chem Biol. 2022 Jul 21;29(7):1113-1125.e6. [Abstract]
- Cell Death Discov. 2024 Jul 19;10(1):329. [Abstract]
- Cell Rep. 2025 May 3;44(5):115672. [Abstract]
- Microbiol Res. 2024 Dec:289:127927. [Abstract]
- Br J Cancer. 2023 Mar;128(7):1344-1359. [Abstract]
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- NPJ Regen Med. 2021 Sep 6;6(1):51. [Abstract]
- Elife. 2024 Feb 20:13:e85985. [Abstract]
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- Ecotoxicol Environ Saf. 2024 Dec 2:289:117448. [Abstract]
- Antioxid Redox Signal. 2024 Apr;40(10-12):598-615. [Abstract]
- Cancer Cell Int. 2023 Apr 16;23(1):68. [Abstract]
- Food Biosci. 2025 Jun.
- Cell Biol Toxicol. 2025 Jan 28;41(1):35. [Abstract]
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- Cell Prolif. 2024 Jun 26:e13700. [Abstract]
- Mar Drugs. 2024 Apr 13;22(4):174. [Abstract]
- Life Sci. 2025 Nov 1:380:123934. [Abstract]
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- Life Sci. 2020 Dec 15;263:118713. [Abstract]
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- PLoS Pathog. 2020 Mar 24;16(3):e1008429. [Abstract]
- Int Immunopharmacol. 2024 Jan 5:126:111237. [Abstract]
- Int Immunopharmacol. 2023 Sep:122:110605. [Abstract]
- Int Immunopharmacol. 2022 Oct:111:108806. [Abstract]
- Molecules. 2023 Jan 18;28(3):968. [Abstract]
- Molecules. 2020 Apr 23;25(8):1980. [Abstract]
- Arthritis Res Ther. 2018 Feb 7;20(1):20. [Abstract]
- Cancer Sci. 2021 Apr;112(4):1624-1632. [Abstract]
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- FASEB J. 2025 Jan 31;39(2):e70339. [Abstract]
- FASEB J. 2023 Apr;37(4):e22880. [Abstract]
- J Cell Mol Med. 2021 Jun;25(11):5238-5249. [Abstract]
- J Mol Med (Berl). 2019 Aug;97(8):1183-1193. [Abstract]
- Plant Sci. 2023 Nov:336:111859. [Abstract]
- J Cell Physiol. 2025 Nov;240(11):e70108. [Abstract]
- Front Mol Biosci. 2022 Jul 22:9:952608. [Abstract]
- J Funct Foods. August 2022, 105199.
- J Funct Foods. 2021, 104585.
- Sci Rep. 2026 Jan 3;16(1):3374. [Abstract]
- Fish Shellfish Immunol. 2022 Oct:129:22-29. [Abstract]
- Oncol Rep. 2019 Aug;42(2):479-494. [Abstract]
- J Virol. 2026 Jun 23;100(6):e0206125. [Abstract]
- J Virol. 2025 Aug 11:e0077125. [Abstract]
- Virol J. 2025 Apr 17;22(1):103. [Abstract]
- J Virol. 2021 Nov 23;95(24):e0134521. [Abstract]
- J Virol. 2021 Jul 26;95(16):e0076021. [Abstract]
- Chem Res Toxicol. 2019 Dec 16;32(12):2479-2487. [Abstract]
- Cell Signal. 2025 Jul:131:111706. [Abstract]
- Heliyon. 2024 Aug 6;10(16):e35832. [Abstract]
- Viruses. 2024 Feb 5;16(2):256. [Abstract]
- Viruses. 2023 Aug 24;15(9):1805. [Abstract]
- Front Med. 2022 Apr;16(2):227-239. [Abstract]
- Mol Med Rep. 2020 Feb;21(2):597-606. [Abstract]
- Food Chem Toxicol. 2019 Dec;134:110830. [Abstract]
- Toxicol Appl Pharmacol. 2024 Feb:483:116836. [Abstract]
- PLoS Negl Trop Dis. 2023 May 4;17(5):e0011281. [Abstract]
- Front Physiol. 2021 May 13:12:648399. [Abstract]
- Environ Toxicol. 2024 Jul;39(7):3920-3929. [Abstract]
- Environ Toxicol. 2023 Nov;38(11):2621-2631. [Abstract]
- Polymers. 2023 Mar 28;15(7):1681. [Abstract]
- Environ Toxicol. 2023 Feb;38(2):343-358. [Abstract]
- Int J Med Sci. 2020 Sep 28;17(17):2751-2762. [Abstract]
- J Leukoc Biol. 2026 Jun 27:qiag090. [Abstract]
- Naunyn Schmiedebergs Arch Pharmacol. 2026 Apr 18. [Abstract]
- Cardiovasc Drugs Ther. 2025 May 22. [Abstract]
- Arch Biochem Biophys. 2023 Jul 15:743:109646. [Abstract]
- Arch Biochem Biophys. 2021 Oct 30:711:109015. [Abstract]
- Mol Immunol. 2021 Aug:136:55-64. [Abstract]
- Diabetes Metab Syndr Obes. 2019 Nov 4;12:2289-2302. [Abstract]
- J Reprod Immunol. 2023 Feb:155:103766. [Abstract]
- Brain Sci. 2021 Nov 11;11(11):1487. [Abstract]
- Vet Microbiol. 2025 Mar 27:304:110496. [Abstract]
- Vet Microbiol. 2022 Aug:271:109488. [Abstract]
- Brain Res. 2019 Oct 15:1721:146337. [Abstract]
- J Cosmet Dermatol. 2022 Mar;21(3):1163-1170. [Abstract]
- Clin Exp Pharmacol Physiol. 2020 Dec;47(12):1953-1964. [Abstract]
- Int J Pept Res Ther. 2025 May 22.
- Virology. 2023 Aug:585:21-31. [Abstract]
- Vet Parasitol. 2026 May:344:110769. [Abstract]
- Clin Cosmet Investig Dermatol. 2022 Aug 2;15:1499-1508. [Abstract]
- J Cardiovasc Pharmacol. 2021 Jun 1;77(6):814-821. [Abstract]
- Biochem Biophys Res Commun. 2017 Aug 5;489(4):484-489. [Abstract]
- Int J Ophthalmol. 2025 Jan 18;18(1):28-38. [Abstract]
- Nat Prod Commun. 2023 Dec 20.
- Biosci Biotechnol Biochem. 2023 Nov 21;87(12):1485-1494. [Abstract]
- Reproductive Medicine. 2022, 3(2), 112-126.
- J Vis Exp. 2026 Feb 13:(228). [Abstract]
- Stem Cell Res. 2023 Feb:66:103010. [Abstract]
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- Ann Transl Med. 2020 Mar;8(5):219. [Abstract]
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WB
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Cell Proliferation/Viability Assay
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WB
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WB
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WB
Alle Antibiotic Isoform-spezifische Produkte anzeigen
More
Biologische Aktivität
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PI3K 3 nM (IC50) |
DNA-PK 16 nM (IC50) |
PLK3 48 nM (IC50) |
ATM 150 nM (IC50) |
ATR 1.8 μM (IC50) |
MLCK 200 nM (IC50) |
Autophagy |
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| A549 | IC50 |
0.22 μM
Compound: wortmannin
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Inhibition of Plk3 in human A549 cells assessed as casein substrate phosphorylation by Western blot
Inhibition of Plk3 in human A549 cells assessed as casein substrate phosphorylation by Western blot
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[PMID: 17135248] |
| A549 | IC50 |
11 nM
Compound: Wortmannin
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Inhibition of PI3K in human A549 cell lysate preincubated with compound for 5 mins followed by [gamma-32p]-ATP addition measured after 20 mins by immunoprecipitation based liquid scintillation spectroscopic analysis
Inhibition of PI3K in human A549 cell lysate preincubated with compound for 5 mins followed by [gamma-32p]-ATP addition measured after 20 mins by immunoprecipitation based liquid scintillation spectroscopic analysis
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[PMID: 16622124] |
| A549 | IC50 |
11.4 μM
Compound: 1, wortmannin, Wm
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Antiproliferative activity against human A549 cells after 48 hrs by SRB method
Antiproliferative activity against human A549 cells after 48 hrs by SRB method
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[PMID: 18630894] |
| A549 | IC50 |
4.28 ng/mL
Compound: wortmannin
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Cytotoxicity against human A549 cells after 24 hrs by propidium iodide assay
Cytotoxicity against human A549 cells after 24 hrs by propidium iodide assay
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[PMID: 19138858] |
| A549 | IC50 |
4.28 ng/mL
Compound: wortmannin
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Cytotoxicity against human A549 cells after 24 hrs by YO-PRO-1 assay
Cytotoxicity against human A549 cells after 24 hrs by YO-PRO-1 assay
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[PMID: 19138858] |
| HeLa | IC50 |
49 nM
Compound: wortmannin
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Inhibition of AX-7503 binding to recombinant Plk3 expressed in HeLa cells by Western blot
Inhibition of AX-7503 binding to recombinant Plk3 expressed in HeLa cells by Western blot
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[PMID: 17135248] |
| MCF7 | IC50 |
>100 μM
Compound: Wortmannin
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Cytotoxicity against human MCF7 cells after 72 hrs by MTS/PMS assay
Cytotoxicity against human MCF7 cells after 72 hrs by MTS/PMS assay
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[PMID: 23040731] |
| Neutrophil | IC50 |
19 nM
Compound: Wortmannin
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Inhibition of fMLP-induced superoxide production in human neutrophils
Inhibition of fMLP-induced superoxide production in human neutrophils
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[PMID: 17095227] |
| Sf9 | IC50 |
0.012 μM
Compound: (+)-2
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Inhibition of human PI3Kalpha expressed in Sf9 cells by fluorescent polarization assay
Inhibition of human PI3Kalpha expressed in Sf9 cells by fluorescent polarization assay
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[PMID: 21121631] |
Wortmannin (0-100 nM; 24-72 hours) inhibits the proliferation of K562 cells in a time- and dose-dependent manner. The IC50 values at 24 hour, 48 hour, and 72 hour are 25±0.10 nM, 12.5±0.08 nM, and 6.25±0.11 nM, respectively[4]. Wortmannin prevents nuclear entry of YAP[6].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Cell Line:K562 cells
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Concentration:0, 6.25, 12.5, 25, 50 and 100 nM
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Incubation Time:0, 24, 48 and 72 hours
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Result:Inhibited the K562 cells proliferation. The IC50 value at 24 hour, 48 hour, and 72 hour was 25±0.10 nM, 12.5±0.08 nM, and 6.25±0.11 nM.
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:Scid mice with the murine C3H mammary tumor or human MCF-7 breast cancer xenograft[5]
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Dosage:1 mg/kg and 1.5 mg/kg
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Administration:Oral gavage; daily; one group 1 mg/kg for 14 days; second group 1.5 mg/kg for 5 days then 1.0 mg/kg for 9 days.
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Result:The growth rate of the treated tumors was significantly slower during drug administration than that of nontreated tumors.
Chemical Information
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CAS. Nr. 19545-26-7
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Appearance Solid
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Molecular Weight 428.43
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Formel C23H24O8
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Color White to yellow
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SMILES
O=C1C([C@@](CC2)([H])[C@@]3(C)C2=O)=C([C@H](OC(C)=O)C3)[C@]4(C)C5=C1OC=C5C(O[C@@H]4COC)=O
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Synonyms
SL-2052; KY-12420
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Structure Classification
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Initial Source
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Versand
Room temperature in continental US; may vary elsewhere.
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Speicherung
Powder -20°C 3 years 4°C 2 years In solvent -80°C 2 years -20°C 1 year
Publications (176)
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Journal Impact Factor
-
Most Recent
-
Signal Transduct Target Ther
Tet methylcytosine dioxygenase 2 (TET2) deficiency elicits EGFR-TKI (tyrosine kinase inhibitors) resistance in non-small cell lung cancer. [Abstract]2024 Mar 9;9(1):65. PMID: 38461173 -
Signal Transduct Target Ther
2022 Dec 9;7(1):388. PMID: 36481655 -
Nat Immunol
2024 Apr;25(4):659-670. PMID: 38499799 -
Bioact Mater
2025 Aug 6:53:801-818. PMID: 40809511 -
-
ACS Nano
Redox-Responsive Peptide Coacervates for Enhanced mRNA Delivery and Intracellular Release. [Abstract]2025 Dec 26. PMID: 41451635 -
ACS Nano
Enzyme-Triggered Transcytosis of Dendrimer-Drug Conjugate for Deep Penetration into Pancreatic Tumors. [Abstract]2020 Apr 28;14(4):4890-4904. PMID: 32286784 -
Nat Commun
African swine fever virus B66L drives extracellular mitochondrial release to promote systemic inflammation in mice. [Abstract]2026 May 27. PMID: 42203763 -
Nat Commun
Human pluripotent stem cell-derived skin organoids enabled pathophysiological model of Mycobacterium tuberculosis infection. [Abstract]2025 Dec 2;16(1):10831. PMID: 41331115 -
Nat Commun
2025 Jul 18;16(1):6621. PMID: 40681515 -
Nat Commun
2024 Jan 26;15(1):759. PMID: 38272905 -
Nat Commun
2021 Jun 8;12(1):3444. PMID: 34103528 -
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Cell Death Differ
FAAH served a key membrane-anchoring and stabilizing role for NLRP3 protein independently of the endocannabinoid system. [Abstract]2023 Jan;30(1):168-183. PMID: 36104448 -
Sci Transl Med
Real-time in vivo analysis of murine β cells reveals autophagic flux defects before onset of autoimmune diabetes. [Abstract]2026 May 20;18(850):eadj4902. PMID: 42160447 -
Acta Pharm Sin B
Extracellular vesicles from human urine-derived stem cells delay aging through the transfer of PLAU and TIMP1. [Abstract]2024 Mar;14(3):1166-1186. PMID: 38487008 -
Sci Transl Med
A chimeric antigen receptor with antigen-independent OX40 signaling mediates potent antitumor activity. [Abstract]2021 Jan 27;13(578):eaba7308. PMID: 33504651 -
Autophagy
WNT2B impairs endosomal trafficking via WASHC5 to inhibit autophagy: a novel non-secretory WNT pathway. [Abstract]2026 Jun 3:1-31. PMID: 42233622 -
Autophagy
Iterative design leads to a smart probe capable of quantifying autophagic flux with switchable fluorescence via engaging MAP1LC3/LC3. [Abstract]2026 May 20:1-18. PMID: 42163447 -
Autophagy
The mammalian actin elongation factor ENAH/MENA contributes to autophagosome formation via its actin regulatory function. [Abstract]2024 Aug;20(8):1798-1814. PMID: 38705725 -
Autophagy
Extracellular vesicles originating from autophagy mediate an antibody-resistant spread of classical swine fever virus in cell culture. [Abstract]2022 Jun;18(6):1433-1449. PMID: 34740307 -
Autophagy
Cannabidiol inhibits human glioma by induction of lethal mitophagy through activating TRPV4. [Abstract]2021 Nov;17(11):3592-3606. PMID: 33629929 -
Adv Sci (Weinh)
Coronavirus Nsp3 Hijacks CLTC to Modulate Autophagosome Nucleation for Promoting DMV Formation and Viral Replication. [Abstract]2026 Apr;13(24):e21626. PMID: 41721606 -
Adv Sci (Weinh)
Drug Screening of Primary Human Endometriotic Cells Based on Micro-Encapsulating Microfluidic Chip. [Abstract]2025 Apr 28:e2504647. PMID: 40289897 -
Adv Sci (Weinh)
CCR7 Mediated Mimetic Dendritic Cell Vaccine Homing in Lymph Node for Head and Neck Squamous Cell Carcinoma Therapy. [Abstract]2023 Jun;10(17):e2207017. PMID: 37092579 -
Adv Sci (Weinh)
RNF126-Mediated MRE11 Ubiquitination Activates the DNA Damage Response and Confers Resistance of Triple-Negative Breast Cancer to Radiotherapy. [Abstract]2023 Feb;10(5):e2203884. PMID: 36563124 -
Theranostics
A novel small-molecule PROTAC selectively promotes tau clearance to improve cognitive functions in Alzheimer-like models. [Abstract]2021 Mar 11;11(11):5279-5295. PMID: 33859747 -
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J Adv Res
Paeonol protects against doxorubicin-induced cardiotoxicity by promoting Mfn2-mediated mitochondrial fusion through activating the PKCε-Stat3 pathway. [Abstract]2023 May:47:151-162. PMID: 35842187 -
J Nanobiotechnology
Sparking angiogenesis by carbon monoxide-rich gold nanoparticles obtained by pulsed laser driven CO2 reduction reaction. [Abstract]2025 Aug 26;23(1):590. PMID: 40859339 -
Carbohydr Polym
Dextran-based nanodrugs with mitochondrial targeting/glutathione depleting synergy for enhanced photodynamic therapy. [Abstract]2025 Jan 15;348(Pt A):122854. PMID: 39562123 -
Sci Adv
Fasting improves therapeutic response in hepatocellular carcinoma through p53-dependent metabolic synergism. [Abstract]2022 Jan 21;8(3):eabh2635. PMID: 35061544 -
Small
Active Transportation of Liposome Enhances Tumor Accumulation, Penetration, and Therapeutic Efficacy. [Abstract]2020 Nov;16(44):e2004172. PMID: 33030305 -
Redox Biol
2023 Sep:65:102825. PMID: 37531930 -
Redox Biol
BNP protects against diabetic cardiomyopathy by promoting Opa1-mediated mitochondrial fusion via activating the PKG-STAT3 pathway. [Abstract]2023 Jun:62:102702. PMID: 37116257 -
Redox Biol
TIGAR alleviates oxidative stress in brain with extended ischemia via a pentose phosphate pathway-independent manner. [Abstract]2022 May 10;53:102323. PMID: 35576689 -
Redox Biol
ROS generation attenuates the anti-cancer effect of CPX on cervical cancer cells by inducing autophagy and inhibiting glycophagy. [Abstract]2022 May 17;53:102339. PMID: 35636017 -
Redox Biol
Paeonol promotes Opa1-mediated mitochondrial fusion via activating the CK2α-Stat3 pathway in diabetic cardiomyopathy. [Abstract]2021 Oct;46:102098. PMID: 34418601 -
J Control Release
Spore-inspired surface engineering enhances macrophage phagocytosis for inhalation therapy of acute lung injury. [Abstract]2026 May 10:393:114833. PMID: 41850404 -
J Control Release
Combating cisplatin-resistant lung cancer using a coiled-coil lipopeptides modified membrane fused drug delivery system. [Abstract]2025 Jan 8:379:45-58. PMID: 39756686 -
Cell Rep Med
Discovery, delineation, and therapeutic targeting of a hyper-translation pathway driving cytokine release syndrome. [Abstract]2025 Dec 30:102531. PMID: 41475340 -
Cell Rep Med
Benzosceptrin C induces lysosomal degradation of PD-L1 and promotes antitumor immunity by targeting DHHC3. [Abstract]2024 Feb 20;5(2):101357. PMID: 38237597 -
J Exp Med
EP3 enhances adhesion and cytotoxicity of NK cells toward hepatic stellate cells in a murine liver fibrosis model. [Abstract]2022 May 2;219(5):e20212414. PMID: 35420633 -
Mater Today Bio
Membrane biomimetic nanoenzyme-incorporated hybrid glycyrrhizic acid hydrogel for precise mitochondrial ROS scavenging for osteoarthritis treatment. [Abstract]2025 Apr 17:32:101778. PMID: 40290887 -
Cell Mol Biol Lett
IP3R1-mediated MAMs formation contributes to mechanical trauma-induced hepatic injury and the protective effect of melatonin. [Abstract]2024 Feb 2;29(1):22. PMID: 38308199 -
Cell Mol Biol Lett
Inhibition of SQSTM1 S403 phosphorylation facilitates the aggresome formation of ubiquitinated proteins during proteasome dysfunction. [Abstract]2023 Oct 24;28(1):85. PMID: 37872526 -
Cancer Lett
2022 Aug 10:541:215752. PMID: 35644286 -
Cancer Lett
UM-6 induces autophagy and apoptosis via the Hippo-YAP signaling pathway in cervical cancer. [Abstract]2021 Oct 28;519:2-19. PMID: 34161791 -
Mol Psychiatry
CCL5 promotion of bioenergy metabolism is crucial for hippocampal synapse complex and memory formation. [Abstract]2021 Nov;26(11):6451-6468. PMID: 33931731 -
Food Chem
Ex vivo to in vivo extrapolation of syringic acid and ferulic acid as grape juice proxies for endothelium-dependent vasodilation: Redefining vasoprotective resveratrol of the French paradox. [Abstract]2021 Nov 30;363:130323. PMID: 34247035 -
Cell Death Dis
2025 Apr 21;16(1):322. PMID: 40258807 -
Acta Biomater
A prodrug nanodevice co-delivering docetaxel and ROR1 siRNA for enhanced triple negative breast cancer therapy. [Abstract]2025 Jan 24:193:498-513. PMID: 39730101 -
Cell Death Dis
Autophagic sequestration of SQSTM1 disrupts the aggresome formation of ubiquitinated proteins during proteasome inhibition. [Abstract]2022 Jul 15;13(7):615. PMID: 35840557 -
Cell Death Dis
Targeting CCL2-CCR4 axis suppress cell migration of head and neck squamous cell carcinoma. [Abstract]2022 Feb 17;13(2):158. PMID: 35177591 -
Cell Death Dis
2019 Aug 5;10(8):583. PMID: 31378785 -
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J Pharm Anal
Impact of FASN-enriched EVs on endothelial cell function in obstructive sleep apnea hypopnea syndrome. [Abstract]2025 May;15(5):101251. PMID: 40521370 -
Int J Biol Macromol
Porcine TLR8 signaling and its anti-infection function are disturbed by immune checkpoint receptor TIM-3 via inhibition of P13K-AKT pathway. [Abstract]2024 May 1;269(Pt 1):132018. PMID: 38702002 -
Acta Pharmacol Sin
SOCS1 depletion drives osteosarcoma stemness and chemoresistance by suppressing ACTN4 degradation. [Abstract]2025 Sep 1. PMID: 40890444 -
Acta Pharmacol Sin
2022 Apr;43(4):781-787. PMID: 34294887 -
Phytomedicine
Phillygenin improves diabetic nephropathy by inhibiting inflammation and apoptosis via regulating TLR4/MyD88/NF-κB and PI3K/AKT/GSK3β signaling pathways. [Abstract]2024 Dec 3:136:156314. PMID: 39647467 -
Phytomedicine
β-Caryophyllene promotes the survival of random skin flaps by upregulating the PI3K/AKT signaling pathway. [Abstract]2024 Jul 25:130:155726. PMID: 38815406 -
ACS Appl Mater Interfaces
Fullerol Initiates Stem Cell-Nanomaterials Interactions for Enhanced Tissue Regeneration via Clathrin-Mediated Endocytosis and Nuclear Factor Erythroid 2-Related Factor 2 Signaling. [Abstract]2025 Apr 17. PMID: 40241445 -
New Phytol
Basally distributed actin array drives embryonic hypocotyl elongation during the seed-to-seedling transition in Arabidopsis. [Abstract]2023 Oct;240(1):191-206. PMID: 37537721 -
Diabetes
Exofacial Epitope-Specific Antibodies Detect GLUT4 Translocation in Adult Human, Rat, and Mouse Skeletal Muscle. [Abstract]2026 Feb 13:db250567. PMID: 41686119 -
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Cell Chem Biol
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Cell Chem Biol
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Cell Death Discov
2024 Jul 19;10(1):329. PMID: 39030174 -
Cell Rep
ER-PM tether Syt1 limits cell-to-cell connectivity via plasmodesmata during innate immune responses in Arabidopsis. [Abstract]2025 May 3;44(5):115672. PMID: 40319474 -
Microbiol Res
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Br J Cancer
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Clin Transl Med
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Anal Chem
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J Anim Sci Biotechnol
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NPJ Regen Med
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Elife
2024 Feb 20:13:e85985. PMID: 38375778 -
EMBO Rep
CaMKII suppresses proteotoxicity by phosphorylating BAG3 in response to proteasomal dysfunction. [Abstract]2024 Oct;25(10):4488-4514. PMID: 39261742 -
Cell Mol Life Sci
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Cell Mol Life Sci
HBeAg induces the expression of macrophage miR-155 to accelerate liver injury via promoting production of inflammatory cytokines. [Abstract]2018 Jul;75(14):2627-2641. PMID: 29349567
Wortmannin purchased from MedChemExpress. Usage Cited in: Cell Mol Life Sci. 2018 Jul;75(14):2627-2641. [Abstract]
RAW264.7 macrophages are pre-treated with the inhibitor of ERK, JNK, P38, P65, and AKT signal pathway.Western blot analyzes the non- and phosphorylation of ERK, JNK, P38, P65, and AKT.
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Ecotoxicol Environ Saf
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Cancer Cell Int
PCK1 activates oncogenic autophagy via down-regulation Serine phosphorylation of UBAP2L and antagonizes colorectal cancer growth. [Abstract]2023 Apr 16;23(1):68. PMID: 37062825
Wortmannin purchased from MedChemExpress. Usage Cited in: Cancer Cell Int. 2023 Apr 16;23(1):68. [Abstract]
Wortmannin (1 mM; 24 h) significantly reverses the PCK1-OE-induced increased expression of LC3B II in RKO and SW480 cells.
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Targeting p38γ synergistically enhances sorafenib-induced cytotoxicity in hepatocellular carcinoma. [Abstract]2025 Jan 28;41(1):35. PMID: 39871031 -
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Biochem Pharmacol
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Cell Prolif
MCL restrained ROS/AKT/ASAH1 pathway to therapy tamoxifen resistance breast cancer by stabilizing NRF2. [Abstract]2024 Jun 26:e13700. PMID: 38924190 -
Mar Drugs
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Glia
Vascular endothelial growth factor promotes transdifferentiation of astrocytes into neurons via activation of the MAPK/Erk-Pax6 signal pathway. [Abstract]2023 Jul;71(7):1648-1666. PMID: 36960578 -
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Taxifolin improves disorders of glucose metabolism and water-salt metabolism in kidney via PI3K/AKT signaling pathway in metabolic syndrome rats. [Abstract]2020 Dec 15;263:118713. PMID: 33157091 -
Precis Clin Med
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Nutrients
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Int J Mol Sci
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PLoS Pathog
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Int Immunopharmacol
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Int Immunopharmacol
Gitogenin suppresses lung cancer progression by inducing apoptosis and autophagy initiation through the activation of AMPK signaling. [Abstract]2022 Oct:111:108806. PMID: 35914447 -
Molecules
Anemoside B4 Exerts Hypoglycemic Effect by Regulating the Expression of GLUT4 in HFD/STZ Rats. [Abstract]2023 Jan 18;28(3):968. PMID: 36770636 -
Molecules
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Arthritis Res Ther
Soluble uric acid increases PDZK1 and ABCG2 expression in human intestinal cell lines via the TLR4-NLRP3 inflammasome and PI3K/Akt signaling pathway. [Abstract]2018 Feb 7;20(1):20. PMID: 29415757
Wortmannin purchased from MedChemExpress. Usage Cited in: Arthritis Res Ther. 2018 Feb 7;20(1):20. [Abstract]
Cells preincubated with or without the NF-κB inhibitor PDTC (100 μM), the PI3K inhibitor Wortmannin (3 μg/mL), or DMSO-Control for 2 h. Total protein expression of ABCG2, PDZK1, Akt, p-Akt, and NF-κB p65 determined by western blot analysis. Protein expression normalized to that of GAPDH.
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Cancer Sci
LPAR5 promotes thyroid carcinoma cell proliferation and migration by activating class IA PI3K catalytic subunit p110β. [Abstract]2021 Apr;112(4):1624-1632. PMID: 33540491 -
FASEB J
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FASEB J
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FASEB J
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J Cell Mol Med
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J Mol Med (Berl)
2019 Aug;97(8):1183-1193. PMID: 31201471 -
Plant Sci
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J Cell Physiol
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Front Mol Biosci
NPC1 Deficiency Contributes to Autophagy-Dependent Ferritinophagy in HEI-OC1 Auditory Cells. [Abstract]2022 Jul 22:9:952608. PMID: 35936782 -
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Sci Rep
NDRG4 overexpression is associated with reduced apoptosis after intracerebral hemorrhage via the PI3K/Akt/GSK3β signaling pathway. [Abstract]2026 Jan 3;16(1):3374. PMID: 41484166 -
Fish Shellfish Immunol
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Oncol Rep
Matrine improves skeletal muscle atrophy by inhibiting E3 ubiquitin ligases and activating the Akt/mTOR/FoxO3α signaling pathway in C2C12 myotubes and mice. [Abstract]2019 Aug;42(2):479-494. PMID: 31233199 -
J Virol
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J Virol
2025 Aug 11:e0077125. PMID: 40788012 -
Virol J
Usutu virus NS4A induces autophagy and is targeted by the selective autophagy receptor p62/SQSTM1 for degradation. [Abstract]2025 Apr 17;22(1):103. PMID: 40247289 -
J Virol
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J Virol
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Chem Res Toxicol
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Cell Signal
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Heliyon
Overexpression of mir-489-3p inhibits proliferation and migration of non-small cell lung cancer cells by suppressing the HER2/PI3K/AKT/Snail signaling pathway. [Abstract]2024 Aug 6;10(16):e35832. PMID: 39224367 -
Viruses
The Main Protease of Middle East Respiratory Syndrome Coronavirus Induces Cleavage of Mitochondrial Antiviral Signaling Protein to Antagonize the Innate Immune Response. [Abstract]2024 Feb 5;16(2):256. PMID: 38400032 -
Viruses
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Front Med
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Mol Med Rep
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Food Chem Toxicol
α-Humulene inhibits hepatocellular carcinoma cell proliferation and induces apoptosis through the inhibition of Akt signaling. [Abstract]2019 Dec;134:110830. PMID: 31562948 -
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Front Physiol
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Environ Toxicol
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2023 Nov;38(11):2621-2631. PMID: 37466199 -
Polymers
Chitosan Oligosaccharide Promotes Junction Barrier through Modulation of PI3K/AKT and ERK Signaling Intricate Interplay in T84 Cells. [Abstract]2023 Mar 28;15(7):1681. PMID: 37050295
Wortmannin purchased from MedChemExpress. Usage Cited in: Polymers. 2023 Mar 28;15(7):1681. [Abstract]
Wortmannin (5.0, 10 μM; 24 h) significantly induces cell death in T84 cells.
Wortmannin purchased from MedChemExpress. Usage Cited in: Polymers. 2023 Mar 28;15(7):1681. [Abstract]
Wortmannin (2 µM; 2, 4, 6 h) decreases the expression of p-AKT and the ratio of p-AKT/AKT while increases the expression of p-ERK and the ratio of p-ERK/ERK in T84 cells.
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Environ Toxicol
PI3K/AKT/mTOR pathway mediated-cell cycle dysregulation contribute to malignant proliferation of mouse spermatogonia induced by microcystin-leucine arginine. [Abstract]2023 Feb;38(2):343-358. PMID: 36288207 -
Int J Med Sci
Terlipressin relieves intestinal and renal injuries induced by acute mesenteric ischemia via PI3K/Akt pathway. [Abstract]2020 Sep 28;17(17):2751-2762. PMID: 33162803 -
J Leukoc Biol
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Arch Biochem Biophys
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Mol Immunol
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Diabetes Metab Syndr Obes
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Epidermal growth factor receptor (EGFR) promotes uptake of bovine parainfluenza virus type 3 into MDBK cells. [Abstract]2022 Aug:271:109488. PMID: 35691094 -
Brain Res
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Biochem Biophys Res Commun
MEK and PI3K catalytic activity as predictor of the response to molecularly targeted agents in triple-negative breast cancer. [Abstract]2017 Aug 5;489(4):484-489. PMID: 28576487 -
Int J Ophthalmol
Autophagy serves as a protective effect against inflammatory injury of oxidative stress in ARPE-19 cell. [Abstract]2025 Jan 18;18(1):28-38. PMID: 39829617 -
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bioRxiv
2026 May 19:2026.05.17.725791. PMID: 42239437 -
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Wortmannin purchased from MedChemExpress. Usage Cited in: bioRxiv. 2023 Feb 14.
Both of LY294002 (LY; 30 μM) and Wortmannin (Wort; 50 nM) can downregulate the expression of ACE2 in HPAEpiC cells.
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Ann Transl Med
Downregulated placental expression of linc00468 contributes to trophoblast dysfunction by inducing epithelial-mesenchymal transition. [Abstract]2020 Mar;8(6):333. PMID: 32355777 -
Ann Transl Med
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Lösungsmittel & Löslichkeit
DMSO : ≥ 50 mg/mL (116.71 mM; Hygroscopic DMSO has a significant impact on the solubility of product, please use newly opened DMSO)
* "≥" means soluble, but saturation unknown.
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 2 years; -20°C, 1 year. When stored at -80°C, please use it within 2 years. When stored at -20°C, please use it within 1 year.
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 2 years; -20°C, 1 year. When stored at -80°C, please use it within 2 years. When stored at -20°C, please use it within 1 year.
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)
Select the appropriate dissolution method based on your experimental animal and administration route.
- For the following dissolution methods, please ensure to first prepare a clear stock solution using an In Vitro approach and then sequentially add co-solvents:
- To ensure reliable experimental results, the clarified stock solution can be appropriately stored based on storage conditions. As for the working solution for In Vivo experiments, it is recommended to prepare freshly and use it on the same day.
- The percentages shown for the solvents indicate their volumetric ratio in the final prepared solution. If precipitation or phase separation occurs during preparation, heat and/or sonication can be used to aid dissolution.
Add each solvent one by one: 10% DMSO 40% PEG300 5% Tween-80 45% Saline
Solubility: 2.08 mg/mL (4.85 mM); Suspended solution; Need ultrasonic
This protocol yields a suspended solution of 2.08 mg/mL. Suspended solution can be used for oral and intraperitoneal injection.
Taking 1 mL working solution as an example, add 100 μL DMSO stock solution (20.8 mg/mL) to 400 μL PEG300, and mix evenly; then add 50 μL Tween-80 and mix evenly; then add 450 μL Saline to adjust the volume to 1 mL.
Preparation of Saline: Dissolve 0.9 g sodium chloride in ddH₂O and dilute to 100 mL to obtain a clear Saline solution.
Add each solvent one by one: 10% DMSO 90% (20% SBE-β-CD in Saline)
Solubility: ≥ 2.08 mg/mL (4.85 mM); Clear solution
This protocol yields a clear solution of ≥ 2.08 mg/mL (saturation unknown).
Taking 1 mL working solution as an example, add 100 μL DMSO stock solution (20.8 mg/mL) to 900 μL 20% SBE-β-CD in Saline, and mix evenly.
Preparation of 20% SBE-β-CD in Saline (4°C, storage for one week): 2 g SBE-β-CD powder is dissolved in 10 mL Saline, completely dissolve until clear.
Please enter the basic information of animal experiments:
-
-
-
-
Recommended: Prepare an additional quantity of animals to account for potential losses during experiments.
Please enter your animal formula composition:
-
%DMSO +
Recommended: Keep the proportion of DMSO in working solution below 2% if your animal is weak.
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%+
-
+%Tween-80 + +
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%Saline +
The co-solvents required include: DMSO, . All of co-solvents are available by MedChemExpress (MCE). , Tween 80. All of co-solvents are available by MedChemExpress (MCE).
Working solution concentration: 0.22 mg/mL
Method for preparing stock solution: mg drug dissolved in μL DMSO. Stock solution concentration: mg/mL.
1. Take μL DMSO stock solution;
2. Add μL .
μL , mix evenly;
3. Then add μL Tween 80, mix evenly;
4. Then add μL
Please ensure that the stock solution in the first step is dissolved to a clear state, and add co-solvents in sequence. You can use ultrasonic heating (ultrasonic cleaner, recommended frequency 20-40 kHz), vortexing, etc. to assist dissolution.
Reinheit & Dokumentation
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Data Sheet (292 KB)
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SDS (481 KB)
- English - EN (481 KB)
- Français - FR (481 KB)
- Deutsch - DE (481 KB)
- Norwegian - NO (481 KB)
- Español - ES (481 KB)
- Swedish - SV (481 KB)
- Italian - IT (481 KB)
- Korean - KR (481 KB)
- Portuguese - PT (481 KB)
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Handling Instructions (2659 KB)
Verweise
[1]. Yano H, et al. Inhibition of histamine secretion by wortmannin through the blockade of phosphatidylinositol 3-kinase in RBL-2H3 cells. J Biol Chem. 1993 Dec 5;268(34):25846-56. [Content Brief]
[2]. Moon EK, et al. Autophagy inhibitors as a potential antiamoebic treatment for Acanthamoeba keratitis. Antimicrob Agents Chemother. 2015 Jul;59(7):4020-5. [Content Brief]
[3]. Liu Y, et al. Polo-like kinases inhibited by wortmannin. Labeling site and downstream effects. J Biol Chem. 2007 Jan 26;282(4):2505-11. [Content Brief]
[4]. Wu Q, et al. Wortmannin inhibits K562 leukemic cells by regulating PI3k/Akt channel in vitro. J Huazhong Univ Sci Technolog Med Sci. 2009 Aug;29(4):451-6. [Content Brief]
[5]. Lemke LE, et al. Wortmannin inhibits the growth of mammary tumors despite the existence of a novel wortmannin-insensitive phosphatidylinositol-3-kinase. Cancer Chemother Pharmacol. 1999;44(6):491-7. [Content Brief]
[6]. Liu Y, et al. Wortmannin, a widely used phosphoinositide 3-kinase inhibitor, also potently inhibits mammalianpolo-like kinase. Chem Biol. 2005 Jan;12(1):99-107. [Content Brief]
[7]. Pobbati AV, et al. A combat with the YAP/TAZ-TEAD oncoproteins for cancer therapy. Theranostics. 2020 Feb 18;10(8):3622-3635. [Content Brief]
Complete Stock Solution Preparation Table
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 2 years; -20°C, 1 year. When stored at -80°C, please use it within 2 years. When stored at -20°C, please use it within 1 year.
| Optional Solvent | Concentration Solvent Mass | 1 mg | 5 mg | 10 mg | 25 mg |
|---|---|---|---|---|---|
| DMSO | 1 mM | 2.3341 mL | 11.6705 mL | 23.3410 mL | 58.3526 mL |
| 5 mM | 0.4668 mL | 2.3341 mL | 4.6682 mL | 11.6705 mL | |
| 10 mM | 0.2334 mL | 1.1671 mL | 2.3341 mL | 5.8353 mL | |
| 15 mM | 0.1556 mL | 0.7780 mL | 1.5561 mL | 3.8902 mL | |
| 20 mM | 0.1167 mL | 0.5835 mL | 1.1671 mL | 2.9176 mL | |
| 25 mM | 0.0934 mL | 0.4668 mL | 0.9336 mL | 2.3341 mL | |
| 30 mM | 0.0778 mL | 0.3890 mL | 0.7780 mL | 1.9451 mL | |
| 40 mM | 0.0584 mL | 0.2918 mL | 0.5835 mL | 1.4588 mL | |
| 50 mM | 0.0467 mL | 0.2334 mL | 0.4668 mL | 1.1671 mL | |
| 60 mM | 0.0389 mL | 0.1945 mL | 0.3890 mL | 0.9725 mL | |
| 80 mM | 0.0292 mL | 0.1459 mL | 0.2918 mL | 0.7294 mL | |
| 100 mM | 0.0233 mL | 0.1167 mL | 0.2334 mL | 0.5835 mL |