bioRxiv Science⌕ Search

Biology subjects

Hernandez-Moreno, A.

Publications and source records attributed to Hernandez-Moreno, A..

2 recordsLinked to original sources

Cell Death Induced by Homoisoflavonoid Brazilin and its Semi-synthetic Derivates on MDA-MB-231 and MCF7 Breast Cancer Cell Lines

Flavonoids are naturally occurring polyphenolic compounds that have been extensively explored as scaffolds for drug development due to their diverse biological activities. Brazilin, a homoisoflavonoid with reported antitumoral properties, does not fully meet pharmaceutical criteria, and chemical modification of natural compounds is often required to enhance bioactivity and efficacy. Here, we evaluated the pro-apoptotic activity of Brazilin and its semi-synthesized methoxylated (OMe)3 and acetylated (OAc)3 derivatives in triple-negative MDA-MB-231 and luminal A MCF7 breast cancer cell lines. We assessed cell viability, proliferation, oxidative stress, and mitochondrial integrity, and analyzed apoptotic features using confocal microscopy, western blotting, and RT-qPCR. In addition, RNA sequencing was performed to characterize transcriptomic changes in MDA-MB-231 cells following treatment with unmodified Brazilin or its derivatives. Brazilin and Brazilin-(OAc)3 significantly reduced cell viability and proliferation in MDA-MB-231 cells, whereas MCF7 cells exhibited increased viability and growth in response to Brazilin-(OMe)3. In MDA-MB-231 cells, treatment with Brazilin and Brazilin-(OAc)3 induced apoptosis-associated features, including chromatin condensation, {gamma}H2AX accumulation, and PARP cleavage. These effects were accompanied by a modest increase in mitochondrial oxidative stress and loss of mitochondrial membrane potential. Notably, no cytotoxic or apoptotic features were detected in non-tumorigenic MCF10A cells. Transcriptomic analysis revealed that Brazilin treatment upregulated genes associated with endoplasmic reticulum stress, including ATF3, in MDA-MB-231 cells. Collectively, our results indicate that Brazilin and its acetylated derivative selectively induce mitochondrial stress and cell death in triple-negative breast cancer cells, potentially involving ER stress pathways.

cancer biology↗

The isoflavonoid brazilin inhibits viability and cell migration in breast cancer cells

Breast cancer is the most common neoplasm diagnosed in women and is the leading cause of cancer death worldwide. In recent years, compounds isolated from natural sources have been proposed as potential molecules in therapy for breast cancer. In this regard, brazilin has been evaluated in various biological sceneries and has shown pharmacological functions, including anticancer and anti-inflammatory activities. Brazilin was obtained from Haematoxylum brasiletto. The chemical structure was confirmed by spectroscopic data (1H-NMR, 13C-NMR). Concerning biological activity, by MTT assays, brazilin showed cytotoxic effects on MCF7 and MDA-MB-231 breast cancer cell lines. Interestingly, brazilin was not toxic in MCF10A non-tumorigenic breast epithelial cells. We also observed morphological changes to a rounded phenotype associated with apoptosis in breast cancer cell lines and decreased cell migration in a dose and time-dependent manner. By in silico analysis, we found that brazilin interacts with JAK1, JAK2, and iNOS, essential molecules driven cell migration and metastasis in cancer. These data suggest that brazilin can potentially be used as an anti-cancer agent in the future.

cancer biology↗