Browse our latest Physiology articles

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    1. Neuroscience
    2. Physiology

    Exercise-Induced Hypoalgesia Following High- vs. Low-Intensity Aerobic Exercise in Fit Females

    Janne I Nold, Tahmine Fadai ... Christian Büchel
    Not revised
    Reviewed Preprint v1
    • Useful
    • Incomplete
    1. Cell Biology
    2. Physiology

    Cellular characterization of the mouse collecting lymphatic vessels reveals that lymphatic muscle cells are the innate pacemaker cells

    Scott D Zawieja, Grace A Pea ... Michael J Davis
    Lymphatic muscle cells, but not CD34+ adventitial cells, exhibited pacemaker behaviors including pressure-dependent depolarization, pressure-dependent calcium mobilization during diastole, and propagated contraction waves induced by focal, optogenetic depolarization via channel rhodopsin2.
    1. Cell Biology
    2. Physiology

    Lymphatic System: Closing in on pacemaker cells

    Pin-Ji Lei, Timothy P Padera
    Lymphatic muscle cells orchestrate the contraction of collecting lymphatic vessels in mice.
    Version of Record
    Insight
    1. Neuroscience
    2. Physiology

    TRPV4 activation by TGFβ2 enhances cellular contractility and drives ocular hypertension

    Christopher Nass Rudzitis, Monika Lakk ... David Krizaj
    The TRPV4 channel was identified as an obligatory regulator of physiological and pathological increases in intraocular pressure.
    1. Biochemistry and Chemical Biology
    2. Physiology

    SLC35G1 is a highly chloride-sensitive transporter responsible for the basolateral membrane transport in intestinal citrate absorption

    Yoshihisa Mimura, Tomoya Yasujima ... Hiroaki Yuasa
    SLC35G1 is the first highly chloride-sensitive transporter localized on the basolateral membrane of intestinal epithelial cells, responsible for citrate absorption.
    Version of Record
    Short Report
    • Important
    • Convincing
    1. Medicine
    2. Physiology

    Mechano-regulation of GLP-1 production by Piezo1 in intestinal L cells

    Yanling Huang, Haocong Mo ... Geyang Xu
    Experimental results suggest a previously unknown regulatory mechanism for GLP-1 production in L cells, which could offer new insights into diabetes treatments.