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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response
Published on: August 2, 2024
Obesity and cancer: Relevance of DNA damage response
Bhavana Deshmukh1, Amrendra Kumar Ajay2, Manoj Kumar Bhat1
1Biotechnology Research and Innovation Council - National Centre for Cell Science (BRIC-NCCS), Savitribai Phule Pune University Campus, Ganeshkhind, Pune 411 007, India.
Abstract:
Obesity is a non-communicable, multifactorial disorder that has steadily emerged as one of the major global health concerns. It significantly increases the risk of diabetes, cardiovascular diseases and cancer. In obesity, the accumulation of excess fat causes increase in the circulatory levels of adipose tissue-specific hormones (adipokines) and exacerbates carbohydrate-fuelled metabolic stress. These factors promote oxidative and genotoxic stress, resulting in chronic inflammation. Moreover, obesity-related factors contribute to increase in DNA damage and disrupt the DNA Damage Response (DDR), thereby promoting genomic instability. Consequently, obesity may facilitate a complex, multi-step process of cellular transformation and cancer progression. However, the mechanisms linking obesity-associated DDR alterations to cancer progression are active areas of investigation. Therefore, elucidating these aspects of DDR in obesity could enhance our understanding of the risk assessment and facilitate advancement in treatment strategies for patients with cancers and obesity.
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