7ACC1
Based on 10 publication(s) in Google Scholar
7ACC1 (DEAC; Coumarin D 1421; D 1421) is a monocarboxylate transporter 1 (MCT-1)/MCT-4 specifc blocker. 7ACC1 attenuates renal cancer cell proliferation, migration, invasion and down-regulates the levels of MCT1/MCT4 expression and extracellular lactate. 7ACC1 is promising for research of cancers.
For research use only. We do not sell to patients.
- Purity : 99.94%
- CAS No.: 50995-74-9
- Formula: C14H15NO4
- Molecular Weight:261.27
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Storage:
4°C, protect from light
* In solvent : -80°C, 6 months; -20°C, 1 month (protect from light)
Publications Citing Use of MedChemExpress (MCE) 7ACC1
More- Cell Metab. 2021 Oct 5;33(10):2021-2039.e8. [Abstract]
- Microbiome. 2022 Dec 15;10(1):226. [Abstract]
- Cancer Cell Int. 2019 Jun 28:19:170. [Abstract]
- J Biol Chem. 2022 Feb;298(2):101554. [Abstract]
- Exp Cell Res. 2022 Mar 15;412(2):113044. [Abstract]
- Cancer Med. 2018 Sep;7(9):4690-4700. [Abstract]
- Aesthetic Plast Surg. 2024 Dec;48(23):5136-5146. [Abstract]
- bioRxiv. 2026 Mar 10.
- J Oncol. 2022 Sep 26;2022:3659714. [Abstract]
- Research Square Preprint. 2021 Aug.
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WB
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In Vivo Efficacy Study
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Cell Migration/Invasion Assay
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Cell Imaging/Staining
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WB
Biological Activity
Description
IC50 & Target
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MCT1 |
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| 4T1 | IC50 |
>100 μM
Compound: 7
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Antiproliferative activity against mouse 4T1 cells assessed as inhibition of cell proliferation by MTT assay
Antiproliferative activity against mouse 4T1 cells assessed as inhibition of cell proliferation by MTT assay
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[PMID: 34626786] |
| HepG2 | IC50 |
>100 μM
Compound: 10
|
Antiproliferative activity against human HepG2 cells after 48 hrs by MTT assay
Antiproliferative activity against human HepG2 cells after 48 hrs by MTT assay
|
[PMID: 28666736] |
| MCF-10A | IC50 |
>100 μM
Compound: 7
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Cytotoxicity against human MCF-10A cells assessed as inhibition of cell proliferation by MTT assay
Cytotoxicity against human MCF-10A cells assessed as inhibition of cell proliferation by MTT assay
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[PMID: 34626786] |
| MCF7 | IC50 |
>100 μM
Compound: 10
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Antiproliferative activity against human MCF7 cells after 48 hrs by MTT assay
Antiproliferative activity against human MCF7 cells after 48 hrs by MTT assay
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[PMID: 28666736] |
| MDA-MB-231 | IC50 |
>100 μM
Compound: 10
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Antiproliferative activity against human MDA-MB-231 cells after 48 hrs by MTT assay
Antiproliferative activity against human MDA-MB-231 cells after 48 hrs by MTT assay
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[PMID: 28666736] |
| MDA-MB-231 | IC50 |
>100 μM
Compound: 7
|
Antiproliferative activity against human MDA-MB-231 cells assessed as inhibition of cell proliferation by MTT assay
Antiproliferative activity against human MDA-MB-231 cells assessed as inhibition of cell proliferation by MTT assay
|
[PMID: 34626786] |
| MDA-MB-231 | IC50 |
>50 μM
Compound: 11
|
Antiproliferative activity against human MDA-MB-231 cells assessed as inhibition of cell growth measured after 48 hrs by MTT assay
Antiproliferative activity against human MDA-MB-231 cells assessed as inhibition of cell growth measured after 48 hrs by MTT assay
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[PMID: 37602711] |
| SiHa | EC50 |
1.8 μM
Compound: 17
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Cytotoxicity against human SiHa cells in lactate-containing medium after 72 hrs by MTT assay
Cytotoxicity against human SiHa cells in lactate-containing medium after 72 hrs by MTT assay
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[PMID: 24095010] |
| SiHa | IC50 |
0.86 μM
Compound: 17
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Inhibition of MCT4-mediated [14C]-lactate uptake in human SiHa cells in lactate-containing medium assessed as remaining lactate concentration in culture medium after 24 hrs by liquid scintillation counting
Inhibition of MCT4-mediated [14C]-lactate uptake in human SiHa cells in lactate-containing medium assessed as remaining lactate concentration in culture medium after 24 hrs by liquid scintillation counting
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[PMID: 24095010] |
| SiHa | IC50 |
250 nM
Compound: 17
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Inhibition of MCT4-mediated [14C]-lactate uptake in human SiHa cells in lactate-containing medium assessed as remaining lactate concentration in culture medium after 12 mins by liquid scintillation counting
Inhibition of MCT4-mediated [14C]-lactate uptake in human SiHa cells in lactate-containing medium assessed as remaining lactate concentration in culture medium after 12 mins by liquid scintillation counting
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[PMID: 24095010] |
| SK-HEP1 | IC50 |
>100 μM
Compound: 10
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Antiproliferative activity against human SKHEP1 cells after 48 hrs by MTT assay
Antiproliferative activity against human SKHEP1 cells after 48 hrs by MTT assay
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[PMID: 28666736] |
| WiDr | IC50 |
>100 μM
Compound: 7
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Antiproliferative activity against human WiDr cells assessed as inhibition of cell proliferation by MTT assay
Antiproliferative activity against human WiDr cells assessed as inhibition of cell proliferation by MTT assay
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[PMID: 34626786] |
In Vitro
7ACC1 (10 μM, 0-96 h) attenuates the viability, decreases cell migration and invasion in co-culturing conditions of 786-O cells and HUVECs[1].
7ACC1 (10 μM, 24 h) inhibits the protein expressions of MCT1 and MCT4, down-regulates the extracellular lactate levels in co-culturing conditions of 786-O cells and HUVECs[1].
7ACC1 (0-1 μM, 24 h) inhibit the influx but not the efflux of lactate in cancer cells[2].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:786-O cells and HUVECs
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Concentration:10 µM
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Incubation Time:24 h
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Result:Attenuated the protein expressions of MCT1 and MCT4 in co-culturing of 786-O cells and HUVECs.
In Vivo
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:mice bearing tumors, including cervix cancer SiHa xenografts but also tumors derived from human colon cancer cells HCT116 and bladder cancer cells UM-UC3[2]
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Dosage:3 mg/kg
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Administration:i.p., daily for 12 days
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Result:Led to significant SiHa and HCT116 tumor growth delays in mice bearing tumors.
Emission (Em)
445
Excitation (Ex)
345
Chemical Information
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CAS No. 50995-74-9
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Appearance Solid
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Molecular Weight 261.27
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Formula C14H15NO4
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Color Orange to red
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SMILES
O=C(C1=CC2=CC=C(N(CC)CC)C=C2OC1=O)O
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Synonyms
DEAC; Coumarin D 1421; D 1421
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
4°C, protect from light
* In solvent : -80°C, 6 months; -20°C, 1 month (protect from light)
Publications (10)
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Journal Impact Factor
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Most Recent
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Cell Metab
The thermogenic activity of adjacent adipocytes fuels the progression of ccRCC and compromises anti-tumor therapeutic efficacy. [Abstract]2021 Oct 5;33(10):2021-2039.e8. PMID: 34508696 -
Microbiome
Limosilactobacillus reuteri and caffeoylquinic acid synergistically promote adipose browning and ameliorate obesity-associated disorders. [Abstract]2022 Dec 15;10(1):226. PMID: 36517893
7ACC1 purchased from MedChemExpress. Usage Cited in: Microbiome. 2022 Dec 15;10(1):226. [Abstract]
In parallel, along with the absence of cold resistance and browning of iWAT by 7ACC1 intervention, the increasing trend of MCT1 expression was also diminished.
7ACC1 purchased from MedChemExpress. Usage Cited in: Microbiome. 2022 Dec 15;10(1):226. [Abstract]
In parallel, along with the absence of cold resistance and browning of iWAT by 7ACC1 intervention, the increasing trend of MCT1 expression was also diminished.
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Cancer Cell Int
Monocarboxylate transporter 1 and monocarboxylate transporter 4 in cancer-endothelial co-culturing microenvironments promote proliferation, migration, and invasion of renal cancer cells. [Abstract]2019 Jun 28:19:170. PMID: 31297034
7ACC1 purchased from MedChemExpress. Usage Cited in: Cancer Cell Int. 2019 Jun 28:19:170. [Abstract]
At 24 h after culturing, both 786-O cells and HUVECs showed better healing in co-culturing mode than that in single-culturing mode. Blocking MCT1 and MCT4 by supplementation of 7ACC1 (10 μM) in the culture medium markedly decreased migration of both 786-O cells and HUVECs in co-culturing mode, but it did not affect migration of cells in the single-culturing mode.
7ACC1 purchased from MedChemExpress. Usage Cited in: Cancer Cell Int. 2019 Jun 28:19:170. [Abstract]
In the transwell chamber invasion assay, 786-O cells at a density of 1 × 104 cells/well were seeded in the upper chamber in serum-free medium supplemented with or without 10 µM 7ACC1, while 786-O cells or HUVECs at a density of 4 × 104 cells/well were seeded in the lower chamber in complete culture medium. 24 h after culturing, the 786-O cells that penetrated the membrane were counted under a microscope. Representative images show the membrane-invaded 786-O cells (magnification of ×200).
7ACC1 purchased from MedChemExpress. Usage Cited in: Cancer Cell Int. 2019 Jun 28:19:170. [Abstract]
At 24 h after incubation with the MCTs blocker 7ACC1 (10 μM), the protein expressions of MCT1 and MCT4 were attenuated to the similar levels as that in single culturing condition.
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J Biol Chem
Mitochondrial pyruvate carrier inhibitors improve metabolic parameters in diet-induced obese mice. [Abstract]2022 Feb;298(2):101554. PMID: 34973337 -
Exp Cell Res
ZEB1 induces ROS generation through directly promoting MCT4 transcription to facilitate breast cancer. [Abstract]2022 Mar 15;412(2):113044. PMID: 35093305 -
Cancer Med
Downregulation of MCT4 for lactate exchange promotes the cytotoxicity of NK cells in breast carcinoma. [Abstract]2018 Sep;7(9):4690-4700. PMID: 30051648
7ACC1 purchased from MedChemExpress. Usage Cited in: Cancer Med. 2018 Sep;7(9):4690-4700. [Abstract]
The protein expression of MCT4 in the murine breast cancer cell line 4T1 treated with 7ACC1 (0.1 mM) or transfected with different ShMCT4 vectors.
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Aesthetic Plast Surg
Poly-L-Lactic Acid Reduces the Volume of Dermal Adipose Tissue Through its Metabolite Lactate. [Abstract]2024 Dec;48(23):5136-5146. PMID: 39060798 -
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J Oncol
2022 Sep 26;2022:3659714. PMID: 36199799 -
Solvent & Solubility
In Vitro:
DMSO : 33.33 mg/mL (127.57 mM; Need ultrasonic; Hygroscopic DMSO has a significant impact on the solubility of product, please use newly opened DMSO)
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, 6 months; -20°C, 1 month (protect from light). When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
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, 6 months; -20°C, 1 month (protect from light). When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
Protocols
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RNA extraction experimental
By lysing cells, releasing RNA, and removing impurities such as proteins and DNA, high-purity RNA products are finally obtained. The commonly used traditional method is the guanidine isothiocyanate/phenol/chloroform method (Trizol), which is suitable for a variety of animal materials including animal tissues, microorganisms, cultured cells, etc., and most plant materials.
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BrdU Incorporation Assay
Bromodeoxyuridine (BrdU) incorporation assay is based on the principle that BrdU, a thymidine analog, is incorporated into newly synthesized DNA during the S phase of the cell cycle, thereby serving as a marker of DNA replication and cellular proliferation. Incorporated BrdU can be detected using anti-BrdU antibodies following DNA denaturation, enabling visualization or quantification of proliferating cells through immunochemical detection methods such as immunofluorescence or immunohistochemistry.
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Cell migration
Cell migration is a method that plays an important role in wound healing, cell differentiation, embryonic development, etc.
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Somatic Cell Culture
A method of simulating the in vivo environment in vitro to maintain the cell growth, differentation and main functions.
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CFSE Dye Dilution Proliferation Assay
The CFSE (carboxyfluorescein diacetate succinimidyl ester) dye dilution proliferation assay is based on the covalent labeling of intracellular proteins by a cell-permeant fluorescent dye that becomes fluorescent upon intracellular ester cleavage and then is stably retained within cells. As labeled cells divide, the dye is partitioned equally between daughter cells, resulting in a stepwise halving of fluorescence intensity that can be quantified by flow cytometry to determine the number of cell divisions undergone by each cell population. This fluorescence dilution approach enables quantitative tracking of lymphocyte proliferation at the single-cell level over multiple rounds of division. CFSE-based proliferation analysis has been widely applied to measure antigen-driven lymphocyte expansion in vitro, where discrete fluorescence peaks correspond to successive cell divisions and allow reconstruction of proliferative history within heterogeneous populations.
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Dye-dilution cell tracking and proliferation staining
Dye-dilution cell tracking assays quantify cell proliferation by covalently labeling intracellular proteins with a stable fluorescent dye that is equally partitioned between daughter cells during mitosis, resulting in stepwise halving of fluorescence intensity with each cell division as measured by flow cytometry histograms. Carboxyfluorescein diacetate succinimidyl ester (CFSE) is a prototypical dye that diffuses into cells, is enzymatically converted into a fluorescent compound, and then covalently binds intracellular amine groups, producing long-lived fluorescence suitable for tracking multiple rounds of division in vitro and in vivo. Successive generations of dividing cells form discrete peaks of decreasing fluorescence intensity, enabling estimation of proliferation history, precursor frequency, and division index within heterogeneous populations. Alternative dyes such as CellTrace Violet (CTV) and far-red membrane dyes (e. g. , PKH26) follow the same dilution principle but differ
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CCK-8/WST-8 Cell Proliferation Assay
The CCK-8/WST-8 assay is based on the reduction of the water-soluble tetrazolium salt WST-8 to a water-soluble formazan product by cellular dehydrogenases in metabolically active cells, where the generated formazan amount is proportional to the number of living cells and is quantified by measuring absorbance in the visible range, providing a colorimetric readout for cell viability and proliferation assessment. This class of tetrazolium-based assays improves upon earlier MTT-based systems by producing a water-soluble formazan, eliminating the need for organic solubilization steps and enabling direct spectrophotometric measurement in culture medium.
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Protocol for Cell Cycle
Cell-cycle analysis by flow cytometry measures DNA content in single cells to estimate the fraction of cells in G0/G1, S, and G2/M phases. Propidium iodide intercalates into DNA, and after RNA removal with RNase, fluorescence intensity reflects cellular DNA content: 2N cells are assigned to G0/G1, cells between 2N and 4N to S phase, and 4N cells to G2/M. DNA-content analysis alone cannot reliably separate G0 from G1 or G2 from M. Ki-67 can distinguish quiescent G0 cells from cycling cells, EdU or BrdU incorporation marks active DNA synthesis in S phase, and phospho-histone H3 staining identifies mitotic cells within the 4N population.
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Cell Counting-Based Growth Curve Assay
Cell counting-based growth curve assays quantify cell proliferation by directly measuring changes in viable cell number over time using manual or automated counting methods such as hemocytometer-based counting or instrument-assisted cell enumeration, enabling construction of growth curves that reflect population expansion dynamics in response to culture conditions. A widely used approach is trypan blue exclusion with hemocytometer counting, where membrane-compromised (non-viable) cells take up the dye, allowing discrimination between viable and non-viable cells while simultaneously enabling total cell number quantification. Repeated sampling across time points allows estimation of proliferation rate, growth phases, and comparative growth kinetics between experimental conditions.
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Colony Formation (Clonogenic) Assay
The clonogenic (colony formation) assay measures the ability of a single cell to retain reproductive viability and form a macroscopic colony, typically defined as a cluster derived from one progenitor cell after a defined growth period. This assay is widely used to evaluate cell survival after exposure to ionizing radiation or cytotoxic treatments and is considered a standard method in radiation biology for generating dose-response relationships of reproductive cell death. Colony formation reflects long-term proliferative capacity rather than short-term metabolic activity, and survival is quantified by comparing treated versus untreated conditions based on colony number and derived survival fractions.
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Cell Viability Determination by MTT Colorimetric Assay
The following protocol uses the MTT colorimetric assay as a classic literature-established method for assessing cell viability/metabolic activity in cultured mammalian cells. MTT[3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] is reduced by metabolically active cells to a colored formazan product; the amount of formazan is quantified spectrophotometrically and provides an indirect measure of metabolically active viable cells. Importantly, MTT reduction reflects cellular oxidoreductase/metabolic activity rather than an absolute direct count of living cells, so changes in cellular metabolism can alter the signal independently of cell number.
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EdU Incorporation Assay (Click Chemistry-Based DNA Synthesis Measurement)
The EdU incorporation assay measures DNA synthesis by adding the thymidine analog 5-ethynyl-2′-deoxyuridine to cells or tissues, where it is incorporated into newly synthesized DNA during S phase. Incorporated EdU is detected by copper-catalyzed azide-alkyne cycloaddition, in which a fluorescent azide covalently reacts with the ethynyl group on EdU, allowing S-phase cells to be detected by fluorescence microscopy, flow cytometry, or high-content imaging. EdU detection does not require DNA denaturation or anti-BrdU antibody access, which preserves sample structure and improves compatibility with immunostaining and multiparameter cytometry compared with BrdU-based detection. EdU can be cytotoxic in a cell-type- and exposure-dependent manner, so pulse duration, concentration, and continuous-labeling designs should be validated for each cell type.
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Ki-67 Immunostaining Proliferation Assay
Ki-67 immunostaining measures the growth fraction of a cell population by detecting Ki-67, a nuclear antigen present in proliferating cells and absent in quiescent G0 cells. The readout is the percentage of Ki-67-positive nuclei among total counted cells, commonly called the Ki-67 labeling index or proliferation index.
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PCNA Immunodetection Proliferation Assay
PCNA immunodetection measures proliferative activity by detecting proliferating cell nuclear antigen, a nuclear protein associated with DNA polymerase δ function and DNA replication. The assay readout is the proportion of PCNA-positive nuclei among total counted cells, but PCNA labeling is not identical to BrdU labeling because PCNA can mark late G1/early S-associated replication competence and may persist beyond active DNA synthesis depending on fixation and extraction conditions.
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Protocol for Cell Counting and Cell Density Analysis
Cell counting and cell-density analysis estimate the number of cells in a known volume or field area. Manual hemocytometer counting uses a chamber of defined geometry to convert counted cells into cells/mL, while automated counters and image-analysis workflows detect cell objects from optical, brightfield, fluorescence, impedance, or digital-image features. Trypan blue viability counting is based on dye exclusion: viable cells with intact membranes exclude dye, while non-viable cells with compromised membranes stain blue. The readout is total cell density, viable-cell density, dead-cell density, and percent viability. Cell density can also be estimated from microscopy images by counting objects per image area, from flow cytometry using calibrated volume or reference particles, or from in situ microscopy in bioreactors after calibration against reference methods such as hemocytometer or flow cytometry.
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Cell invasion
Cell invasion is the ability of cells to migrate from one area to another via the extracellular matrix. Cell invasion is the response of normal and cancer cells to chemical and mechanical stimuli. Before migrating to a new region, the extracellular matrix is degraded by proteases within the cell. Cell invasion often occurs during wound repair, vascularization and inflammation, abnormal tissue invasion, and tumor cell metastasis.
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MTT Cell Proliferation Assay
The MTT assay is a colorimetric endpoint assay for estimating viable cell number, cell growth, cytotoxicity, or cell activation in cultured mammalian cells. Living cells reduce the yellow tetrazolium salt MTT into purple/blue formazan, while dead cells do not generate the same signal; the resulting color can be quantified with a multiwell spectrophotometer. MTT reduction is commonly interpreted as a readout of metabolic activity that often correlates with viable cell number, but it should not be treated as a direct cell-counting method unless the assay is optimized for the cell type and experimental condition. Studies show that MTT reduction can involve mitochondrial and non-mitochondrial reducing systems, and formazan may accumulate in intracellular lipid droplets rather than simply marking mitochondria.
Purity & Documentation
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Data Sheet (276 KB)
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SDS (393 KB)
- English - EN (393 KB)
- Français - FR (393 KB)
- Deutsch - DE (393 KB)
- Norwegian - NO (393 KB)
- Español - ES (393 KB)
- Swedish - SV (393 KB)
- Italian - IT (393 KB)
- Korean - KR (393 KB)
- Portuguese - PT (393 KB)
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Handling Instructions (2659 KB)
References
[1]. Guo C, et al. Monocarboxylate transporter 1 and monocarboxylate transporter 4 in cancer-endothelial co-culturing microenvironments promote proliferation, migration, and invasion of renal cancer cells. Cancer Cell Int. 2019 Jun 28;19:170. [Content Brief]
[2]. Draoui N, et al. Antitumor activity of 7-aminocarboxycoumarin derivatives, a new class of potent inhibitors of lactate influx but not efflux. Mol Cancer Ther. 2014 Jun;13(6):1410-8. [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, 6 months; -20°C, 1 month (protect from light). When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
| Optional Solvent | Concentration Solvent Mass | 1 mg | 5 mg | 10 mg | 25 mg |
|---|---|---|---|---|---|
| DMSO | 1 mM | 3.8275 mL | 19.1373 mL | 38.2746 mL | 95.6865 mL |
| 5 mM | 0.7655 mL | 3.8275 mL | 7.6549 mL | 19.1373 mL | |
| 10 mM | 0.3827 mL | 1.9137 mL | 3.8275 mL | 9.5686 mL | |
| 15 mM | 0.2552 mL | 1.2758 mL | 2.5516 mL | 6.3791 mL | |
| 20 mM | 0.1914 mL | 0.9569 mL | 1.9137 mL | 4.7843 mL | |
| 25 mM | 0.1531 mL | 0.7655 mL | 1.5310 mL | 3.8275 mL | |
| 30 mM | 0.1276 mL | 0.6379 mL | 1.2758 mL | 3.1895 mL | |
| 40 mM | 0.0957 mL | 0.4784 mL | 0.9569 mL | 2.3922 mL | |
| 50 mM | 0.0765 mL | 0.3827 mL | 0.7655 mL | 1.9137 mL | |
| 60 mM | 0.0638 mL | 0.3190 mL | 0.6379 mL | 1.5948 mL | |
| 80 mM | 0.0478 mL | 0.2392 mL | 0.4784 mL | 1.1961 mL | |
| 100 mM | 0.0383 mL | 0.1914 mL | 0.3827 mL | 0.9569 mL |