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Sidhu, H. S.

Publications and source records attributed to Sidhu, H. S..

2 recordsLinked to original sources

Binding to Albumin and Off-Target Toxicity Confound the Use of LRRC8/VRAC Channel Blockers in Cell Physiology Assays

Volume-regulated anion channels (VRACs), formed by leucine-rich repeat-containing 8 (LRRC8) proteins, are ubiquitously expressed chloride channels essential for cell volume regulation and implicated in diverse physiological and pathological processes. Small-molecule VRAC inhibitors have been reported to modulate paracrine signaling, proliferation, differentiation, migration, and apoptosis, and have been patented for potential therapeutic applications in stroke, cardiovascular and metabolic diseases, and cancer. However, growing evidence indicates that many commonly used VRAC blockers exert substantial off-target effects and frequently fail to reproduce phenotypes observed after deletion of the essential VRAC subunit LRRC8A. Here, we systematically compared effects of several widely used pharmacological VRAC inhibitors with outcomes of molecular downregulation of LRRC8A in limiting proliferation of malignant glioblastoma cells derived from surgical specimens. NIH/3T3 fibroblasts served as a non-malignant control. In serum-containing media, structurally diverse VRAC blockers (DCPIB, DIDS, carbenoxolone, phloretin, and bromadiolone) reduced proliferation in a non-uniform manner, with potencies that did not correlate with reported VRAC affinities and varied markedly among cell lines. Radiotracer-based measurements of VRAC activity indicated that these discrepancies were largely attributable to binding of inhibitors to serum albumin. When experiments were repeated under serum-free conditions, all inhibitors except DIDS and phloretin induced extensive death of both malignant and non-malignant cells, confirmed by microscopy and LDH release assays. This cytotoxicity was accompanied by a marked reduction in intracellular ATP levels, consistent with previously reported mitochondrial uncoupling effects. In contrast, LRRC8A knockdown reduced proliferation without substantial cell death. Together, these findings demonstrate that most commercially available VRAC blockers limit proliferation and viability predominantly through VRAC-independent mechanisms. Under standard culture conditions, serum albumin masks much of their intrinsic cytotoxicity. These results underscore the need for rigorous molecular controls in pharmacological studies and provide basis for developing more selective and less toxic VRAC-targeting agents.

pharmacology and toxicology↗

Crop-specific and microbially-mediated impacts of alternative agricultural amendments on plant performance

Rising fertilizer costs and dwindling freshwater supplies are driving interest in alternative agricultural amendments such as biosolids and reclaimed water. While these inputs can promote crop growth, they also contain persistent contaminants like PFAS, which may affect plants directly or indirectly via changes to plant-associated microbiomes. The extent and mechanisms of these effects remain poorly understood, particularly across crops with differing functional traits. We conducted two greenhouse experiments to evaluate the direct and microbially mediated effects of biosolid and reclaimed water amendments spiked with increasing contaminant concentrations on lettuce (Lactuca sativa), radish (Raphanus sativus), and green pea (Pisum sativum). Peas exhibited pronounced negative responses to biosolids, including reduced germination, survival, and biomass, which scaled with contaminant concentration and coincided with visible pathogen infection. Lettuce and radish showed minimal impact, suggesting that plant functional traits--such as symbiotic capacity and nutrient-dependent immune regulation--may mediate susceptibility to contaminant-induced stress. Soil microbiome diversity and composition were altered in a crop- and amendment-specific manner, but microbiomes shaped by prior exposure had limited effects on pea performance when transferred to new plants in the absence of ongoing stressors. These findings suggest that current soil conditions and active plant-microbiome interactions may outweigh legacy microbiome effects. Overall, our study provides a novel framework for evaluating the risks and benefits of wastewater-derived amendments, emphasizing the importance of functional trait variation in predicting plant responses to contaminants and guiding sustainable agricultural practices.

plant biology↗