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MicroRNA-34a Encapsulated in Hyaluronic Acid Nanoparticles Induces Epigenetic Changes with Altered Mitochondrial Bioenergetics and Apoptosis in Non-Small-Cell Lung Cancer Cells. | LitMetric

AI Article Synopsis

  • Therapies targeting epigenetic changes for cancer are being tested in early trials, focusing mainly on nuclear DNA, but new findings suggest mitochondrial DNA also plays a role due to methylation marks that affect cancer progression.* -
  • MicroRNA-34a is capable of impacting mitochondrial functions by depleting antioxidant levels and activating apoptotic pathways, leading to reduced glycolysis and increased cell death in lung cancer cells.* -
  • The researchers delivered microRNA-34a using Hyaluronic-Acid nanoparticles, leading to changes in energy metabolism and gene expression in mitochondrial DNA, which shows potential for a new treatment strategy targeting mitochondrial bioenergetics in cancer cells.*

Article Abstract

Therapies targeting epigenetic changes for cancer treatment are in Phase I/II trials; however, all of these target only nuclear DNA. Emerging evidence suggests presence of methylation marks on mitochondrial DNA (mtDNA); but their contribution in cancer is unidentified. Expression of genes encoded on mtDNA are altered in cancer cells, along with increased glycolytic flux. Such glycolytic flux and elevated reactive oxygen species is supported by increased antioxidant; glutathione. MicroRNA-34a can translocate to mitochondria, mediate downstream apoptotic effects of tumor suppressor P53, and inhibit the antioxidant response element Nrf-2, resulting in depleted glutathione levels. Based on such strong rationale, we encapsulated microRNA-34a in our well-established Hyaluronic-Acid nanoparticles and delivered to cisplatin-sensitive and cisplatin-resistant A549-lung adenocarcinoma cells. Successful delivery and uptake in cells resulted in altered ATP levels, decreased glycolytic flux, Nrf-2 and glutathione levels, ultimately resulting in caspase-3 activation and apoptosis. Most important were the concurrent underlying molecular changes in epigenetic status of D-loop on the mtDNA and transcription of mtDNA-encoded genes. Although preliminary, we provide a novel therapeutic approach in form of altered mitochondrial bioenergetics and redox status of cancer cells with underlying changes in epigenetic status of mtDNA that can subsequently results in induction of cancer cell apoptosis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5473901PMC
http://dx.doi.org/10.1038/s41598-017-02816-8DOI Listing

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