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Patil, S. R.

Publications and source records attributed to Patil, S. R..

2 recordsLinked to original sources

Porosome reconstitution reverses Alzheimers in human brain organoids

A central challenge in overcoming diseases resulting from defects in the cellular nanoscale multiprotein porosome complexes, is the consequent alteration of other proteins within the complex. By exploiting the distinct porosomes present in different tissues, Porosome Therapeutics, Inc., has developed a clinically relevant approach to incorporate (reconstitute) functional wild type porosomes into the plasma membrane of diseased cells to overcome secretory defects. In a combinatorial strategy of reprogramming the neuronal secretory and metabolic components, we established a dual-target therapeutic framework that repairs synaptic and metabolic defects to counteract neurodegeneration in Alzheimers. Utilizing iPSC derived human brain organoids, as recommended by the NIH and FDA, we demonstrate both the morphological and functional reversal of Alzheimers following porosome-apigenin treatment. Using the UHD-CMOS-MEA System developed jointly by Sony Semiconductor Solutions (Sony), SCREEN Holdings (SCREEN) and VitroVo, we were able to monitor thousands of neuronal firing in the brain organoids, helping in assessing the restoration of neuronal function in Alzheimers following porosome-apigenin therapy.

neuroscience↗

Mechanism of clinically relevant neurosecretory and metabolic impairment in Alzheimers and identification of engineered nanotherapy

A central challenge in Alzheimers disease is understanding the mechanism of neuronal secretory dysfunction. By exploiting AI, we reveal how beta-amyloid disrupts key protein interactions within the neuronal secretory machinery. In a combinatorial strategy of reprogramming the neuronal secretory and metabolic components, we established a dual-target therapeutic framework that repairs synaptic and mitochondrial defects to counteract neurodegeneration in Alzheimers.

neuroscience↗