mTOR
- [1]. Laplante M, et al. mTOR signaling in growth control and disease. Cell. 2012 Apr 13;149(2):274-93. [Content Brief]
- [2]. Panwar V, et al. Multifaceted role of mTOR (mammalian target of rapamycin) signaling pathway in human health and disease. Signal Transduct Target Ther. 2023 Oct 2;8(1):375. [Content Brief]
- [3]. Yong J, et al. Regulation of transcriptome plasticity by mTOR signaling pathway. Exp Mol Med. 2025 Aug;57(8):1623-1630. [Content Brief]
- [4]. Ballesteros-Álvarez J, et al. mTORC2: The other mTOR in autophagy regulation. Aging Cell. 2021 Aug;20(8):e13431. [Content Brief]
- [5]. Patel CH, et al. More TOR: The expanding role of mTOR in regulating immune responses. Immunity. 2025 Jul 8;58(7):1629-1645. [Content Brief]
- [6]. Dai DF, et al. The mTOR signaling pathway in cardiac aging. J Cardiovasc Aging. 2023;3(3):24. [Content Brief]
- [7]. Wang F, et al. Crosstalks between mTORC1 and mTORC2 variagate cytokine signaling to control NK maturation and effector function. Nat Commun. 2018 Nov 19;9(1):4874. [Content Brief]
- [8]. Schaub T, et al. mTORC1 and mTORC2 Differentially Regulate Cell Fate Programs to Coordinate Osteoblastic Differentiation in Mesenchymal Stromal Cells. Sci Rep. 2019 Dec 27;9(1):20071. [Content Brief]
- [9]. Mao B, et al. Overview of Research into mTOR Inhibitors. Molecules. 2022 Aug 19;27(16):5295. [Content Brief]
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mTOR Related Products (518)
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Antibodies (11)
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Phellodendrine chloride (Standard)
0 ImagesCat. No.: HY-N0735RCAS No.: 104112-82-5Phellodendrine chloride (Standard) is the analytical standard of Phellodendrine chloride (HY-N0735). Phellodendrine chloride is an orally active plant alkaloid. Phellodendrine chloride inhibits the proliferation of KRAS-mutated pancreatic cancer cells by suppressing macropinocytosis and glutamine metabolism, inducing ROS accumulation and mitochondrial apoptosis. Phellodendrine chloride promotes autophagy by activating the AMPK/mTOR pathway, alleviating intestinal damage in ulcerative colitis. Phellodendrine chloride can alleviate gouty arthritis by inhibiting the IL-6/STAT3 signaling pathway. Phellodendrine chloride suppresses allergic reactions by altering the conformation of MRGPRB3/MRGPRX2 protein, thereby inhibiting the activation of PKC and subsequent downstream MAPK and NF-κB signaling. Phellodendrine chloride inhibits the AKT/NF-κB pathway and down-regulates the expression of COX-2, thereby protecting zebrafish embryos from oxidative stress. Phellodendrine chloride has an anti-major depressive disorder (MDD) effect by down-regulating CHRM1, HTR1A, and the PI3K/Akt signaling pathway. -
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Mtor Rat Pre-designed siRNA Set A
0 ImagesCat. No.: HY-RS08812 -
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PT-88
0 ImagesCat. No.: HY-161509CAS No.: 2803307-04-0PT-88 is a highly selective inhibitor of mTOR (Mammalian target of rapamycin) (IC50=1.2 nM). PT-88 inhibits both mTORC1 and mTORC2 complexes, both of which are active forms of mTOR protein kinases and are closely associated with cell growth, proliferation, and survival. PT-88 can be used to study the role of mTOR in tumorigenesis and development, especially in the study of breast cancer. -
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DQ661
0 ImagesCat. No.: HY-170670CAS No.: 2027551-01-3DQ661 is a potent PPT1 inhibitor. DQ661 is a dimeric quinacrine autophagy inhibitor. DQ661 inhibits mTORC1 activity. DQ661 decreases the protein expression of pS6K T389, pS6 S240-244. DQ661 shows anticancer activity. -
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Thioether-cyclized helix B peptide, CHBP TFA
0 ImagesCat. No.: HY-P5984AThioether-cyclized helix B peptide, CHBP (TFA) is the TFA form of Thioether-cyclized helix B peptide, CHBP (HY-P5984). Thioether-cyclized helix B peptide, CHBP (TFA) can improve metabolic stability and renoprotective effect through inducing autophagy via inhibition of mTORC1 and activation of mTORC2. -
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CZ830
0 ImagesCat. No.: HY-117767CAS No.: 1333108-58-9 -
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Vernodalin
0 ImagesCat. No.: HY-N19029CAS No.: 21871-10-3Vernodalin is an orally active, cytotoxic sesquiterpene lactone with a Kd value of 9.55 μM for p38 MAPK. Vernodalin downregulates the expression of phosphorylated ERK, JNK, AKT, PI3K, mTOR, p38MAPK, FAK, MMP-2, MMP-9, and uPA, while upregulates the expression of TIMP-1 and TIMP-2. Vernodalin increases ROS production, upregulates the expression of Bax and caspase 3, downregulates the expression of Bcl-2, and induces apoptosis (apoptosis), oxidative stress response and cell cycle arrest. Vernodalin inhibits the proliferation, adhesion and metastasis of cancer cells. Vernodalin enhances the activity of VEGF-B, AMPK and eNOS signaling pathways. Vernodalin alleviates myocardial injury and restores hemodynamic parameters. Vernodalin inhibits the growth of Trypanosoma brucei rhodesiense. Vernodalin can be used in research related to various cancers including gastric cancer, colorectal cancer and lung cancer, as well as African human trypanosomiasis and myocardial infarction. -
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HYS-072
0 ImagesCat. No.: HY-172175HYS-072 is an orally active derivative of chrysin (HY-14589) with antitumor activity. HYS-072 induces apoptosis and autophagy by inhibiting the PI3K/AKT/mTOR signaling pathway and suppresses tumor growth in vivo in xenograft models by modulating autophagy-related pathways. HYS-072 can be used in the research of triple-negative breast cancer. -
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Anticancer agent 271
0 ImagesCat. No.: HY-173367Anticancer agent 271 (compound 5C) has antiproliferative activity against lung (A549), colon (Caco-2) cancer cell lines, and human lung fibroblast (WI38) with an IC50 value of 9.18 μM on A549 cells. Anticancer agent 271 downregulates PI3K and mTOR gene expression that can be used for cancer research. -
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PLS-123
0 ImagesCat. No.: HY-120406CAS No.: 1431727-04-6LPS-123 is a covalently irreversible BTK inhibitor with an IC50 of < 5 nM. LPS-123 simultaneously inhibits the catalytic activity of BTK at Tyr551 and its self-activation at Tyr223. LPS-123 inhibits phosphorylation of the AKT/mTOR and MAPK signaling pathways, activation of PLCγ2, ERK1/2, p38, AKT, and mTOR, and blocks the production of CCL3 and CCL4 chemokines. LPS-123 exhibits significant anti-proliferative activity against various B-cell lymphoma cell lines and effectively induces apoptosis via a caspase-dependent pathway. LPS-123 also demonstrates significant antitumor activity in the OCI-Ly7 xenograft model. LPS-123 can be used for lymphoma research. -
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RB-CO-PEG5-C2-CO-VH032
0 ImagesCat. No.: HY-161393RB-CO-PEG5-C2-CO-VH032 is a VHL-recruiting TRIM24 PROTAC degrader composed of an RB-derived short peptide SPRT, a PEG5-C2 linker, and the VHL ligand VH032. RB-CO-PEG5-C2-CO-VH032 recognizes proteins containing the FXXXV motif and recruits VHL to induce degradation of proteins such as TRIM24, thereby upregulating DUSP2, inhibiting ERK/mTOR signaling, and suppressing prostate cancer cell proliferation. RB-CO-PEG5-C2-CO-VH032 can be used for TRIM24 degradation and prostate cancer-related research. -
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- mTOR inhibitor-28
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COH-19
0 ImagesCat. No.: HY-184167COH-19 is a potent mTOR inhibitor. COH-19 binds to the ATP-binding pocket of mTOR, reduces mTOR protein levels, and suppresses the PI3K/Akt/mTOR signaling pathway. COH-19 induces apoptosis via the mitochondrial pathway. COH-19 causes G0/G1 phase cell cycle arrest and suppresses cancer cell proliferation. COH-19 can be used for the research of breast cancer. -
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Perfluoroundecanoic acid-13C7
0 ImagesCat. No.: HY-W142432SPerfluoroundecanoic acid-13C7 is the 13C-labeled Perfluoroundecanoic acid (HY-W142432). Perfluoroundecanoic acid is a perfluoroalkyl substance (PFAS). Perfluoroundecanoic acid is an orally active oxidative stress inducer. Perfluoroundecanoic acid promotes macrophage M2 polarization, activates Wnt/β-catenin signaling and enhances β-catenin nuclear accumulation. Perfluoroundecanoic acid -induced M2 phenotype macrophage accelerates tumor progression in vitro and in vivo. Perfluoroundecanoic acid induces DNA damage, reproductive and pathophysiological dysfunctions via oxidative stress in male Swiss mice. Perfluoroundecanoic acid inhibits Leydig cell development in pubertal male rats via inducing oxidative stress and autophagy. Perfluoroundecanoic acid accelerates insulitis development in a mouse model of type 1 diabetes. Perfluoroundecanoic acid can be used for the study of ovarian cancer, type 1 diabetes and inflammation. -
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AKT-IN-24
0 ImagesCat. No.: HY-169407CAS No.: 3114773-24-6KT-IN-24 (Compound M17) is a AKT allosteric inhibitor with anti-tumor activity. KT-IN-24 can target the AKT/mTOR and MEK/ERK signaling pathways and inhibit epithelial-mesenchymal transition, which has a synergistic suppressive effect on TNBC, promoting cell apoptosis while inhibiting proliferation and migration when used in combination with Trametinib (HY-10999). -
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Nic-15
0 ImagesCat. No.: HY-159577CAS No.: 2896739-91-4Nic-15 (compound 4n) is an anti-constrictive agent used to antagonize the hypovascularity of pancreatic tumors. The hypovascularity allows cancer cells to adapt to the nutrient-deficient tumor microenvironment and develop drug resistance. Nic-15 can regulate the PI3K/Akt/mTOR pathway and alleviate ER stress induced by Gemcitabine (HY-17026). Nic-15 can significantly inhibit the migration and colony formation of MIA PaCa-2 and PANC-1 pancreatic cancer cells. The combination of Nic-15 and Gemcitabine can effectively solve the problem of pancreatic tumor resistance. In an in vivo xenograft model, Nic-15 can significantly enhance the efficacy of Gemcitabine. -
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Meranzin (Standard)
0 ImagesCat. No.: HY-N3298RCAS No.: 23971-42-8Meranzin (Standard) is the analytical standard of Meranzin (HY-N3298). This product is intended for research and analytical applications. Meranzin is an orally active antidepressant and GHSR modulator. Meranzin significantly upregulates the expression levels of brain-derived neurotrophic factor and p-mTOR in the hippocampus via the ghrelin-growth hormone secretagogue receptor pathway. Meranzin regulates blood oxygen level-dependent signals in the hippocampus-thalamus-basal ganglia circuit, attenuates reward system activation, and promotes the normalization of related hormone levels. Meranzin effectively ameliorates depression-like behaviors and gastrointestinal hypomotility, and can be used in research related to depression and major depressive disorder. -
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Panulisib
0 ImagesCat. No.: HY-16769CAS No.: 1356033-60-7Synonyms: P7170; AK151761Panulisib (P7170; AK151761) is an orally active inhibitor of PI3K (IC50 = 2.2 nM) and mTOR (IC50 = 4.4 nM). Panulisib inhibits ALK1 and DNA-PK, two enzymes that respectively participate in angiogenesis and DNA repair, with IC50 values of 47 nM and 1.5 nM respectively. Panulisib inhibits cell proliferation and apoptosis. Panulisib can be used for research on breast cancer and non-small cell lung cancer. -
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Mitochondrial complex I-IN-1
0 ImagesCat. No.: HY-184282Mitochondrial complex I-IN-1 is a Mitochondrial complex I inhibitor. Mitochondrial complex I-IN-1 activates the AMPK signaling pathway, inhibits the downstream mTOR/S6 axis, induces Apoptosis and triggers Autophagy. Mitochondrial complex I-IN-1 can be used for the research of non-small cell lung cancer. -
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WH23
0 ImagesCat. No.: HY-181670WH23 is a dehydrogenase/reductase SDR family member 11 (DHRS11) inhibitor with IC50 values of 0.037 μM. WH23 binds to DHRS11, forming a hydrogen bond with the enzyme’s His210 residue. WH23 suppresses androgen receptor mRNA and protein expression, reduces c-Myc expression, and inhibits cancer cell proliferation. WH23 inhibits PI3K/AKT signaling by reducing phosphorylation of PDK1, AKT, mTOR, and ERK. WH23 enhances Capivasertib (HY-15431)-induced cytotoxicity and apoptosis. WH23 can be used for the research of luminal androgen receptor-positive triple-negative breast cancer. -
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