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Titlebook: Mechanobiology; Proceedings of the 4 Boris Martinac,Charles D. Cox,Daryan Kempe Conference proceedings 2024 Australian Society for Mechanob

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书目名称Mechanobiology
副标题Proceedings of the 4
编辑Boris Martinac,Charles D. Cox,Daryan Kempe
视频video
概述Includes the most recent research on Mechanobiology.Presents a selection of articles written by leading experts in the field.Reflects the diverse and multidisciplinary nature of mechanobiology researc
丛书名称Springer Series in Biophysics
图书封面Titlebook: Mechanobiology; Proceedings of the 4 Boris Martinac,Charles D. Cox,Daryan Kempe Conference proceedings 2024 Australian Society for Mechanob
描述.The 4th International Symposium on Mechanobiology (ISMB) organized by the Australian Society for Mechanobiology (AuSMB) took place at the Sydney Nanoscience Hub at the University of Sydney, Australia, from the 6th to the 9th of November 2022... ..This conference started in 2011 with the founding of the Society in Shanghai, China, and has occurred every three years also visiting Okayama (2014) and more recently Singapore (2017). This is the first time this conference was held in Australia...The primary purpose of the 4th International Symposium on Mechanobiology (ISMB) was to act as a forum for dissemination of cutting-edge research and innovation in the field of mechanobiology. It brought together 200+ delegates from both the Australian and International communities (students, scientists, clinicians, engineers and stakeholders from academia, industry and other organisations) working in the broader field of mechanobiology to discuss new and exciting advances in the field. This collection reflects the diverse and multidisciplinary nature of mechanobiology research spanning length scales and organ systems...Chapter 4 is available open access under a Creative Commons Attribution 4.0 I
出版日期Conference proceedings 2024
关键词Force Sensing Proteins; Cellular Mechanotransduction; Tissue Mechanics; Ion Channels; Bioengineering; Sin
版次1
doihttps://doi.org/10.1007/978-3-031-45379-3
isbn_softcover978-3-031-45378-6
isbn_ebook978-3-031-45379-3Series ISSN 0932-2353 Series E-ISSN 1868-2561
issn_series 0932-2353
copyrightAustralian Society for Mechanobiology 2024
The information of publication is updating

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,Mechanically-Evoked TRPV4-Mediated Currents Are Modulated by Activated Integrin β1, technique to apply mechanical stimuli directly at cell-substrate connections. We found that TRPV4-mediated currents were sensitised when integrin β1 was activated using the functional anti-integrin β1 [12G10] antibody. However, activation of integrin β1 using fibronectin-coated substrates only lead
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,Shear Force Activation of Epithelial Na+ Channel (ENaC) Is Modulated by N-Glycans of the β ENaC Subs..The replacement of individual extracellular glycosylated N of γ ENaC did not affect ENaC’s ability to respond to shear force. In β ENaC two asparagines were identified that affected the shear force-activated current. Replacement of N99 and N378 did result in channels that providing a stronger she
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Fueling Biologically Relevant Next-Generation Microvasculature-on-a-Chip Platforms with Mechanobiolo address the development of specific disease models, careful consideration should be given to the biological implications of the selected cell types, ECM, micro-fabrication method, and biophysical and mechanobiological cues to ensure that artificial microvessels most accurately capture biologically
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The Physical Factors Involved in Cancer Progression,educed stiffness and loss of rigidity sensing ability in cancer cells, leading to uncontrolled cell proliferation. In order to reestablish homeostasis, cancer cells continue to grow, secrete growth factors, cytokines, and deposit ECM. Cancer-associated fibroblasts (CAFs) assist in ECM secretion and
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The Molecular Basis of the Frank-Starling Law of the Heart: A Possible Role for PIEZO1?,activate the sarcoplasmic reticulum to release more Ca. causing a cascade of events resulting in contraction. In ., stretch of the heart chamber wall is sensed by . in the ., which is directly connected to . molecules that activate . at their S1-S2 via ..
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