Integrating Vascular Phenotypic and Proteomic Analysis in an Open Microfluidic Platform

在开放微流体平台中整合血管表型和蛋白质组学分析

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作者:Sangmin Jung, Sunghun Cheong, Yoonho Lee, Jungseub Lee, Jihye Lee, Min-Seok Kwon, Young Sun Oh, Taewan Kim, Sungjae Ha, Sung Jae Kim, Dong Hyun Jo, Jihoon Ko, Noo Li Jeon2

Abstract

This research introduces a vascular phenotypic and proteomic analysis (VPT) platform designed to perform high-throughput experiments on vascular development. The VPT platform utilizes an open-channel configuration that facilitates angiogenesis by precise alignment of endothelial cells, allowing for a 3D morphological examination and protein analysis. We study the effects of antiangiogenic agents─bevacizumab, ramucirumab, cabozantinib, regorafenib, wortmannin, chloroquine, and paclitaxel─on cytoskeletal integrity and angiogenic sprouting, observing an approximately 50% reduction in sprouting at higher drug concentrations. Precise LC-MS/MS analyses reveal global protein expression changes in response to four of these drugs, providing insights into the signaling pathways related to the cell cycle, cytoskeleton, cellular senescence, and angiogenesis. Our findings emphasize the intricate relationship between cytoskeletal alterations and angiogenic responses, underlining the significance of integrating morphological and proteomic data for a comprehensive understanding of angiogenesis. The VPT platform not only advances our understanding of drug impacts on vascular biology but also offers a versatile tool for analyzing proteome and morphological features across various models beyond blood vessels.

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