[33] |
Friedemann M, Kalbitzer L, Franz S, et al. Instructing human macrophage polarization by stiffness and glycosaminoglycan functionalization in 3D collagen networks[J]. Adv Healthc Mater,2017,6(7):1600967.
|
[34] |
Geng J, Shi Y, Zhang J, et al. TLR4 signalling via Piezo1 engages and enhances the macrophage mediated host response during bacterial infection[J]. Nat Commun,2021,12(1):3519.
|
[35] |
Solis AG, Bielecki P, Steach HR, et al. Mechanosensation of cyclical force by PIEZO1 is essential for innate immunity[J].Nature,2019,573(7772):69-74.
|
[36] |
Atcha H, Jairaman A, Holt JR, et al. Mechanically activated ion channel Piezo1 modulates macrophage polarization and stiffness sensing[J]. Nat Commun,2021,12(1):3256.
|
[37] |
Lim TS, Mortellaro A, Lim CT, et al. Mechanical interactions between dendritic cells and T cells correlate with T cell responsiveness[J]. J Immunol,2011,187(1):258-265.
|
[38] |
Blumenthal D, Chandra V, Avery L, et al. Mouse T cell priming is enhanced by maturation-dependent stiffening of the dendritic cell cortex[J]. Elife,2020,9:e55995.
|
[39] |
Hope JM, Dombroski JA, Pereles RS, et al. Fluid shear stress enhances T cell activation through Piezo1[J]. BMC Biol,2022,20(1):61.
|
[40] |
Le Borgne M, Raju S, Zinselmeyer BH, et al. Real-time analysis of calcium signals during the early phase of T cell activation using a genetically encoded calcium biosensor[J]. J Immunol,2016,196(4):1471-1479.
|
[41] |
Liu X, Berry CT, Ruthel G, et al. T cell receptor-induced nuclear factor kappaB (NF-kappaB) signaling and transcriptional activation are regulated by STIM1- and Orai1-mediated calcium entry[J]. J Biol Chem,2016,291(16):8440-8452.
|
[42] |
Feske S, Giltnane J, Dolmetsch R, et al. Gene regulation mediated by calcium signals in T lymphocytes[J]. Nat Immunol,2001,2(4):316-324.
|
[43] |
Fehr T, Lucas CL, Kurtz J, et al. A CD8 T cell-intrinsic role for the calcineurin-NFAT pathway for tolerance induction in vivo[J].Blood,2010,115(6):1280-1287.
|
[44] |
Vaeth M, Feske S. NFAT control of immune function:New frontiers for an abiding trooper[J]. F1000Res,2018,7:260.
|
[45] |
Liu CSC, Raychaudhuri D, Paul B, et al. Cutting edge:Piezo1 mechanosensors optimize human T cell activation[J]. J Immunol,2018,200(4):1255-1260.
|
[46] |
Torres A, Cilloniz C, Niederman MS, et al. Pneumonia[J]. Nat Rev Dis Primers,2021,7(1):25.
|
[47] |
Lin C, Zheng X, Lin S, et al. Mechanotransduction regulates the interplays between alveolar epithelial and vascular endothelial cells in lung[J]. Front Physiol,2022,13:818394.
|
[48] |
Diem K, Fauler M, Fois G, et al. Mechanical stretch activates piezo1 in caveolae of alveolar type Ⅰ cells to trigger ATP release and paracrine stimulation of surfactant secretion from alveolar type Ⅱ cells[J]. FASEB J,2020,34(9):12785-12804.
|
[49] |
Zhong M, Wu W, Kang H, et al. Alveolar stretch activation of endothelial Piezo1 protects adherens junctions and lung vascular barrier[J]. Am J Respir Cell Mol Biol,2020,62(2):168-177.
|
[50] |
Chen J, Rodriguez M, Miao J, et al. Mechanosensitive channel Piezo1 is required for pulmonary artery smooth muscle cell proliferation[J].Am J Physiol Lung Cell Mol Physiol,2022,322(5):L737-L760.
|
[51] |
Liang GP, Xu J, Cao LL, et al. Piezo1 induced apoptosis of type Ⅱpneumocytes during ARDS[J]. Respir Res,2019,20(1):118.
|
[52] |
Sato Y, Tansho-Nagakawa S, Ubagai T, et al. Analysis of immune responses in Acinetobacter baumannii-infected Klotho knockout mice:A mouse model of Acinetobacter baumannii infection in aged hosts[J]. Front Immunol,2020,11:601614.
|
[53] |
Mukhopadhyay A, Tsukasaki Y, Chan WC, et al. trans-Endothelial neutrophil migration activates bactericidal function via Piezo1 mechanosensing[J]. Immunity,2024,57(1):52-67. e10.
|
[54] |
Yang K, Liu S, Yan H, et al. SARS-CoV-2 spike protein receptorbinding domain perturbates intracellular calcium homeostasis and impairs pulmonary vascular endothelial cells[J]. Signal Transduct Target Ther,2023,8(1):276.
|
[55] |
Zhang M, Wang Q R, Hou X, et al. Blockage of mechanosensitive Piezo1 channel alleviates the severity of experimental malariaassociated acute lung injury[J]. Parasit Vectors,2024,17(1):46.
|
[56] |
Lin GL, McGinley JP, Drysdale SB, et al. Epidemiology and immune pathogenesis of viral sepsis[J]. Front Immunol,2018,9:2147.
|
[57] |
Font MD, Thyagarajan B, Khanna AK. Sepsis and septic shockbasics of diagnosis, pathophysiology and clinical decision making[J].Med Clin North Am,2020,104(4):573-585.
|
[58] |
Angus DC, van der Poll T. Severe sepsis and septic shock[J]. N Engl J Med,2013,369(9):840-851.
|
[59] |
Aykut B, Chen R, Kim JI, et al. Targeting Piezo1 unleashes innate immunity against cancer and infectious disease[J]. Sci Immunol,2020,5(50):eabb5168.
|
[60] |
Raia L, Zafrani L. Endothelial activation and microcirculatory disorders in sepsis[J]. Front Med (Lausanne),2022,9:907992.
|
[61] |
Ince C, Sinaasappel M. Microcirculatory oxygenation and shunting in sepsis and shock[J]. Crit Care Med,1999,27(7):1369-1377.
|
[62] |
Rong S, Zhang L, Wang J, et al. Regulatory role of Piezo1 channel in endothelium-dependent hyperpolarization-mediated vasorelaxation of small resistance vessels and its anti-inflammatory action[J]. Life Sci,2024,336:122326.
|
[63] |
Zhu W, Guo S, Homilius M, et al. PIEZO1 mediates a mechanothrombotic pathway in diabetes[J]. Sci Transl Med,2022,14(626):eabk1707.
|
[64] |
Assimakopoulos SF, Triantos C, Thomopoulos K, et al. Gut-origin sepsis in the critically ill patient:pathophysiology and treatment[J].Infection,2018,46(6):751-760.
|
[65] |
Peterson LW, Artis D. Intestinal epithelial cells:regulators of barrier function and immune homeostasis[J]. Nat Rev Immunol,2014,14(3):141-153.
|
[66] |
Yoseph BP, Klingensmith NJ, Liang Z, et al. Mechanisms of intestinal barrier dysfunction in sepsis[J]. Shock,2016,46(1):52-59.
|
[67] |
Yan Z, Niu L, Wang S, et al. Intestinal Piezo1 aggravates intestinal barrier dysfunction during sepsis by mediating Ca(2+) influx[J]. J Transl Med,2024,22(1):332.
|
[68] |
Ebel ER, Kuypers FA, Lin C, et al. Common host variation drives malaria parasite fitness in healthy human red cells[J]. Elife,2021,10:e69808.
|
[69] |
Nguetse CN, Purington N, Ebel ER, et al. A common polymorphism in the mechanosensitive ion channel PIEZO1 is associated with protection from severe malaria in humans[J]. Proc Natl Acad Sci USA,2020,117(16):9074-9081.
|
[70] |
Ma S, Cahalan S, LaMonte G, et al. Common PIEZO1 Allele in African populations causes RBC dehydration and attenuates plasmodium infection[J]. Cell,2018,173(2):443-55. e12.
|
[71] |
Glushakova S, Bezrukov L, Waters H, et al. PIEZO1-dependent erythrocyte dehydration as the mechanism for selection of an allele protecting from severe malaria[Z]. 2022.10.1101/2022.03.31.486604
|
[72] |
Lohia R, Allegrini B, Berry L, et al. Pharmacological activation of PIEZO1 in human red blood cells prevents Plasmodium falciparum invasion[J]. Cell Mol Life Sci,2023,80(5):124.
|
[73] |
Lin YC, Guo YR, Miyagi A, et al. Force-induced conformational changes in PIEZO1[J]. Nature,2019,573(7773):230-234.
|
[74] |
Fermo E, Bogdanova A, Petkova-Kirova P, et al. Gardos Channelopathy’:a variant of hereditary Stomatocytosis with complex molecular regulation[J]. Sci Rep,2017,7(1):1744.
|
[75] |
Yui K, Inoue SI. Host-pathogen interaction in the tissue environment during Plasmodium blood-stage infection[J]. Parasite Immunol,2021,43(2):e12763.
|
[1] |
Barzegari A, Omidi Y, Ostadrahimi A, et al. The role of Piezo proteins and cellular mechanosensing in tuning the fate of transplanted stem cells[J]. Cell Tissue Res,2020,381(1):1-12.
|
[2] |
Li J, Hou B, Tumova S, et al. Piezo1 integration of vascular architecture with physiological force[J]. Nature,2014,515(7526):279-282.
|
[3] |
Velasco-Estevez M, Rolle SO, Mampay M, et al. Piezo1 regulates calcium oscillations and cytokine release from astrocytes[J].Glia,2020,68(1):145-160.
|
[4] |
Retailleau K, Duprat F, Arhatte M, et al. Piezo1 in smooth muscle cells is involved in hypertension-dependent arterial remodeling[J].Cell Rep,2015,13(6):1161-1171.
|
[5] |
Romac JM, Shahid RA, Swain SM, et al. Piezo1 is a mechanically activated ion channel and mediates pressure induced pancreatitis[J].Nat Commun,2018,9(1):1715.
|
[6] |
Cahalan SM, Lukacs V, Ranade SS, et al. Piezo1 links mechanical forces to red blood cell volume[J]. Elife,2015,4:e07370.
|
[7] |
Hatem A, Poussereau G, Gachenot M, et al. Dual action of Dooku1 on PIEZO1 channel in human red blood cells[J]. Front Physiol,2023,14:1222983.
|
[8] |
Li J, Chang Z. Case Report:A spinal infection with bilateral psoas abscesses was treated with NPWT to enhance the local infection by increasing the infiltration of neutrophil cells and draining the pus[J].Front Cell Infect Microbiol,2023,13:1228376.
|
[9] |
Xing W, Yang Y, Bai Y, et al. A comparison of negative pressure and conventional therapy in spine infections:A single-center retrospective study[J]. J Pers Med,2023,13(2):162.
|
[10] |
Coste B, Mathur J, Schmidt M, et al. Piezo1 and Piezo2 are essential components of distinct mechanically activated cation channels[J].Science,2010,330(6000):55-60.
|
[11] |
Xu X, Liu S, Liu H, et al. Piezo channels:awesome mechanosensitive structures in cellular mechanotransduction and their role in bone[J].Int J Mol Sci,2021,22(12):6429.
|
[12] |
Zhao Q, Zhou H, Chi S, et al. Structure and mechanogating mechanism of the Piezo1 channel[J]. Nature,2018,554(7693):487-492.
|
[13] |
Syeda R, Florendo MN, Cox CD, et al. Piezo1 channels are inherently mechanosensitive[J]. Cell Rep,2016,17(7):1739-1746.
|
[14] |
Jiang F, Yin K, Wu K, et al. The mechanosensitive Piezo1 channel mediates heart mechano-chemo transduction [J]. Nat Commun,2021,12(1):869.
|
[15] |
Miyamoto T, Mochizuki T, Nakagomi H, et al. Functional role for Piezo1 in stretch-evoked Ca²+ influx and ATP release in urothelial cell cultures[J]. J Biol Chem,2014,289(23):16565-16575.
|
[16] |
Faucherre A, Kissa K, Nargeot J, et al. Piezo1 plays a role in erythrocyte volume homeostasis[J]. Haematologica,2014,99(1):70-75.
|
[17] |
Cinar E, Zhou S, DeCourcey J, et al. Piezo1 regulates mechanotransductive release of ATP from human RBCs[J]. Proc Natl Acad Sci USA,2015,112(38):11783-11788.
|
[18] |
Botello-Smith WM, Jiang W, Zhang H, et al. A mechanism for the activation of the mechanosensitive Piezo1 channel by the small molecule Yoda1[J]. Nat Commun,2019,10(1):4503.
|
[19] |
Wang Y, Chi S, Guo H, et al. A lever-like transduction pathway for long-distance chemical- and mechano-gating of the mechanosensitive Piezo1 channel[J]. Nat Commun,2018,9(1):1300.
|
[20] |
Bae C, Sachs F, Gottlieb P A. The mechanosensitive ion channel Piezo1 is inhibited by the peptide GsMTx4[J]. Biochemistry,2011,50(29):6295-6300.
|
[21] |
Beqja D, Haidar S, Nikolaev M, et al. Transgenic Tarantula Toxin:A novel tool to study mechanosensitive ion channels in Drosophila[J]. J Insect Physiol,2020,127:104116.
|
[22] |
Gnanasambandam R, Ghatak C, Yasmann A, et al. GsMTx4:Mechanism of inhibiting mechanosensitive ion channels[J]. Biophys J,2017,112(1):31-45.
|
[23] |
Suchyna TM. Piezo channels and GsMTx4:Two milestones in our understanding of excitatory mechanosensitive channels and their role in pathology[J]. Prog Biophys Mol Biol,2017,130(Pt B):244-253.
|
[24] |
Blythe NM, Muraki K, Ludlow MJ, et al. Mechanically activated Piezo1 channels of cardiac fibroblasts stimulate p38 mitogenactivated protein kinase activity and interleukin-6 secretion[J]. J Biol Chem,2019,294(46):17395-17408.
|
[25] |
De Felice D, Alaimo A. Mechanosensitive piezo channels in cancer:focus on altered calcium signaling in cancer cells and in tumor progression[J]. Cancers (Basel),2020,12(7):1780.
|
[26] |
Coste B, Xiao B, Santos JS, et al. Piezo proteins are pore-forming subunits of mechanically activated channels[J]. Nature,2012,483(7388):176-181.
|
[27] |
Suchyna TM, Johnson JH, Hamer K, et al. Identification of a peptide toxin from Grammostola spatulata spider venom that blocks cation-selective stretch-activated channels[J]. J Gen Physiol,2000,115(5):583-598.
|
[28] |
Evans EL, Cuthbertson K, Endesh N, et al. Yoda1 analogue (Dooku1)which antagonizes Yoda1-evoked activation of Piezo1 and aortic relaxation[J]. Br J Pharmacol,2018,175(10):1744-1759.
|
[29] |
Liu S, Pan X, Cheng W, et al. Tubeimoside Ⅰ antagonizes Yoda1-evoked Piezo1 channel activation[J]. Front Pharmacol,2020,11:768.
|
[30] |
Saika S, Veldhuis N, Krizaj D, et al. Editorial:new insights into mechanotransduction by immune cells in physiological and pathological conditions[J]. Front Immunol,2022,13:930362.
|
[31] |
Yan J, Horng T. Lipid metabolism in regulation of macrophage functions[J]. Trends Cell Biol,2020,30(12):979-989.
|
[32] |
Gruber EJ, Leifer CA. Molecular regulation of TLR signaling in health and disease:mechano-regulation of macrophages and TLR signaling[J]. Innate Immun,2020,26(1):15-25.
|