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Desai, S. P.

Publications and source records attributed to Desai, S. P..

2 recordsLinked to original sources

Chronic Cadmium Exposures and Hyperglycemia Additively Drive Mitochondrial Dysfunction in Hepatic Cells: Key Implications for MASLD Etiopathogenesis

Effects of chronic heavy metal stress on hepatocellular pathophysiology remains ill-understood. Human livers are a long-term accumulative site for many toxic heavy metals (e.g., cadmium and arsenic) whose effects are unknown. In the current study, we studied effects of chronic, low-dose exposures of cadmium (CLEC) modulated by normoglycemic (5.6 mM) and hyperglycemic (15 mM) exposures, focusing on hepatocellular mitochondrial function. HepG2 and HUH7 cell lines were exposed to CLEC and glucose for 24 weeks, mimicking a chronic heavy metal exposure paradigm seen in normal and type II diabetic individuals. We observe that CLEC exposures significantly affect the long-term health of mitochondria, including decreased mitochondrial mass, increased superoxide production, and loss of mitochondrial membrane potential (MMP) in a CLEC and glucose-dependent manner. Furthermore, the Seahorse MitoStress assay revealed CLEC induced significant chronic oxidative stress. In particular, CLEC cells showed altered levels of basal and non-mitochondrial respiration, causing dysregulation in mitochondrial oxygen consumption rates (OCRs). Lastly, we identified significant impacts of CLEC and glucose exposures on the mitochondrial dynamics (fission/fusion) of the CLEC cells, which showed enhanced mitochondrial fragmentation and turnover rates. We also identified novel cell compensatory mechanisms that may mask the true extent of chronic Cd exposure induced damage in liver cells. CLEC and glucose work additively to damage hepatocellular mitochondrial function. New approach methodologies (NAMs), such as the current vitro toxicology study, establish the insidious effects of chronic heavy metal pollutant exposures on human hepatocellular function.

pharmacology and toxicology↗

Discovery of a new Myristica swamp in the Northern Western Ghats of India.

Myristica swamps are one of the worlds unique freshwater ecosystems. In recent years there has been an increase in the number of reports about their distribution along the western Ghats. In the current paper, we report a new distribution record for the occurrence of Myristica Swamp from the northern part of the western Ghats of Maharastra. The Myristica swamp is located within the Bhalandeshwar Sacred Grove of Kumbral Bagwadi, Dodamarg Maharastra, India. This forms a second report from the state of Maharastra. Frequent field visits were made to study and document the floral assemblage and biodiversity in the swamp from, November 2023 to January 2024. The swamp is dominated by Myristica magnifica Bedd. The swamp is a part of a sacred grove and it is protected by Villagers due to religious beliefs. The discovery of this swamp points towards the possibility of the occurrence of more swamps in this region. Hence there is a need for a systematic survey for documenting swamps in the different areas.

plant biology↗