Search results for "CANCER CELLS"

showing 8 items of 98 documents

A SUMOylation-defective MITF germline mutation predisposes to melanoma and renal carcinoma

2011

International audience; So far, no common environmental and/or phenotypic factor has been associated with melanoma and renal cell carcinoma (RCC). The known risk factors for melanoma include sun exposure, pigmentation and nevus phenotypes; risk factors associated with RCC include smoking, obesity and hypertension. A recent study of coexisting melanoma and RCC in the same patients supports a genetic predisposition underlying the association between these two cancers. The microphthalmia-associated transcription factor (MITF) has been proposed to act as a melanoma oncogene; it also stimulates the transcription of hypoxia inducible factor (HIF1A), the pathway of which is targeted by kidney canc…

multidisciplinary sciencesMESH : Germ-Line MutationSUMO proteinurologic and male genital diseasesmedicine.disease_causeMESH : Neoplasm Invasiveness[ SDV.CAN ] Life Sciences [q-bio]/CancerMESH : Carcinoma Renal Cell0302 clinical medicineGene FrequencyCell MovementMESH: Germ-Line MutationMESH : Cell MovementMESH : Gene FrequencyMESH: Cell MovementComputingMilieux_MISCELLANEOUSGenetics0303 health sciencesMultidisciplinaryMESH: SumoylationMelanomaMESH : SumoylationMESH: Genetic Predisposition to Diseaserenal carcinomaMESH: Carcinoma Renal CellMicrophthalmia-associated transcription factorMESH : Microphthalmia-Associated Transcription Factor3. Good healthgermline mutation030220 oncology & carcinogenesisMESH: Microphthalmia-Associated Transcription Factorscience and technologyMESH: MelanomasumoMESH : Melanoma[SDV.CAN]Life Sciences [q-bio]/CancerBiology03 medical and health sciencesGermline mutationmelanomaMESH: Gene FrequencyGenetic predispositionmedicineHumansGenetic Predisposition to DiseaseNeoplasm InvasivenessCarcinoma Renal CellneoplasmsTranscription factorGerm-Line Mutation030304 developmental biologyMicrophthalmia-Associated Transcription FactorMESH: HumansMESH : HumansSumoylationMESH: Neoplasm Invasivenessmedicine.diseaseHIF1Acancer cellsCancer researchMESH : Genetic Predisposition to DiseaseCarcinogenesis
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SICILIAN MANGO PEEL INDUCES CELLULAR STRESS ACCOMPANIED TO MITOCHONDRIAL DYSFUNCTION IN COLON CANCER CELLS

2021

Currently, cellular stresses as the oxidative, metabolic and genotoxic stress are considered the cause of many different human pathologies as neurodegenerative diseases (e.g.,Alzheimer’s, Parkinson’s, amyotrophic lateral sclerosis), alcoholic liver disease, chronic obstructive pulmonary disease, and also cancer. Although the role of cellular stress has been largely debated in cancer, nowadays some therapies aim to target the intracellular pro-oxidant/anti-oxidant balance triggering the tumor commitment to cell death. Therefore, it has become more necessary an improved understanding of cancer response to cellular stress that could be advantageous to develop cancer tailored therapies. In this…

oxidative stress colon cancer cells mitochondria.
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p38 MAPK in cadmium-treated MDA-MB231 breast cancer cells

2008

p38 MAPK cadmium breast cancer cellsSettore BIO/06 - Anatomia Comparata E Citologia
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Hepatocellular cancer cell lines, Hep-3B and Hep-G2 display the pleiotropic response to resveratrol and berberine

2022

Purpose Human carcinoma cells with different p53 status exposed to a combination of bioactive substances, resveratrol and berberine, revealed different responses in cell viability via p53-dependant apoptosis pathway activation. Materials and methods Using 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium (MTS) assay, we investigated various and opposing effects in hepatocellular carcinoma cells, Hep-G2 and Hep-3B with different p53-status. Results Cells decreased in viability after treatment with dose-dependent concentrations of resveratrol and berberine. Hep-3B p53 mutants were more sensitive in comparison to the p53 wild type Hep-G2 cell line. A syne…

p53 statusViability isobologramBerberine and resveratrol treatmentsHuman hepatocellular cancer cellsHep-G2 and Hep-3B cell LinesAdvances in Medical Sciences
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The Anti-Cancer Effect of

2019

Ethanolic extracts from Mangifera indica L. have been proved to possess anti-tumor properties in many cancer systems. However, although most effects have been demonstrated with fruit pulp extract, the underlying molecular mechanisms of mango peel are still unclear. This study was designed to explore the effects of mango peel extract (MPE) on colon cancer cell lines. MPE affected cell viability and inhibited the colony formation trend of tumor cells, while no effects were observed in human dermal fibroblasts used as a non-cancerous cell line model. These events were a consequence of the induction of apoptosis associated to reactive oxygen species (ROS) production, activation of players of th…

reactive oxygen speciesmangoapoptosiscolon cancer cellsγH2AXArticleAntioxidants (Basel, Switzerland)
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Inhibition of Hsp60 expression by doxorubicin and replicative senescence instauration in mucoepidermoid carcinoma cells

2014

replicative senescenceHsp60cancer cells; replicative senescence; Hsp60cancer cell
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The synergistic effect exerted by the HDAC inhibitor SAHA and the sesquiterpene lactone parthenolide on triple negative breast canc er cells

2014

Triple-negative breast cancer (TNBC) is a subtype o f breast cancer, insensitive to endocrine therapy. Chemotherapy is the main form of treatment, but is accompanied by a high rate of recidivism. The sesquiterpene lactone Parthenolide (PN) exerts a cy totoxic effect on MDA-MB231 cells, a TNBC cell line (1), but was ineffective at low doses (2-5μM). This repr esents an obstacle for a therapeutic utilization of PN. We supposed, in line with other authors (2), that PN c auses a protective response, which at low doses pre vails on the cytotoxic effect. With the aim of inhibiting this protective effect we have shown that pre-trea tment of MDA-MB231 cells with SAHA (2-5μM), an histone deace tylat…

triple negative breast cancer cells parthenolide istone deacetylates inhibitor apoptosis
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Analysis of molecular mechanisms and anti-tumoral effects of zoledronic acid in breast cancer cells

2012

Background: Zoledronic acid (ZOL) is the most potent nitrogen-containing bisphosphonate (N-BPs) that strongly binds to bone mineral and acts as a powerful inhibitor of bone resorption, already clinically available for the treatment of patients with osteolytic metastases. Recent data also suggest that ZOL, used in breast cancer, may provide more than just supportive care modifying the course of the disease, though the possible molecular mechanism of action is still unclear. Aims: Since breast cancer is one of the primary tumors with high propensity to metastasize to the bone, we investigated, for the first time, differential gene expression profile on MCF-7 breast cancer cells treated with l…

zoledronic acidSettore MED/06 - Oncologia Medicacancer cellsanti-tumoral
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