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Cited by in F6Publishing
For: Peng Q, Wu W, Wu K, Cao B, Qiang C, Li K, Sacks SH, Zhou W. The C5a/C5aR1 axis promotes progression of renal tubulointerstitial fibrosis in a mouse model of renal ischemia/reperfusion injury. Kidney International 2019;96:117-28. [DOI: 10.1016/j.kint.2019.01.039] [Cited by in Crossref: 15] [Cited by in F6Publishing: 14] [Article Influence: 5.0] [Reference Citation Analysis]
Number Citing Articles
1 Boudhabhay I, Poillerat V, Grunenwald A, Torset C, Leon J, Daugan MV, Lucibello F, El Karoui K, Ydee A, Chauvet S, Girardie P, Sacks S, Farrar CA, Garred P, Berthaud R, Le Quintrec M, Rabant M, de Lonlay P, Rambaud C, Gnemmi V, Fremeaux-Bacchi V, Frimat M, Roumenina LT. Complement activation is a crucial driver of acute kidney injury in rhabdomyolysis. Kidney Int 2021;99:581-97. [PMID: 33137339 DOI: 10.1016/j.kint.2020.09.033] [Cited by in Crossref: 10] [Cited by in F6Publishing: 9] [Article Influence: 5.0] [Reference Citation Analysis]
2 Zheng H, Zhang Y, He J, Yang Z, Zhang R, Li L, Luo Z, Ye Y, Sun Q. Hydroxychloroquine Inhibits Macrophage Activation and Attenuates Renal Fibrosis After Ischemia-Reperfusion Injury. Front Immunol 2021;12:645100. [PMID: 33936063 DOI: 10.3389/fimmu.2021.645100] [Reference Citation Analysis]
3 Yu SM, Bonventre JV. Acute kidney injury and maladaptive tubular repair leading to renal fibrosis. Curr Opin Nephrol Hypertens 2020;29:310-8. [PMID: 32205583 DOI: 10.1097/MNH.0000000000000605] [Cited by in Crossref: 10] [Cited by in F6Publishing: 9] [Article Influence: 10.0] [Reference Citation Analysis]
4 Qi R, Qin W. Role of Complement System in Kidney Transplantation: Stepping From Animal Models to Clinical Application. Front Immunol 2022;13:811696. [PMID: 35281019 DOI: 10.3389/fimmu.2022.811696] [Cited by in Crossref: 1] [Cited by in F6Publishing: 1] [Article Influence: 1.0] [Reference Citation Analysis]
5 Messerer DAC, Halbgebauer R, Nilsson B, Pavenstädt H, Radermacher P, Huber-Lang M. Immunopathophysiology of trauma-related acute kidney injury. Nat Rev Nephrol 2021;17:91-111. [PMID: 32958893 DOI: 10.1038/s41581-020-00344-9] [Cited by in Crossref: 8] [Cited by in F6Publishing: 8] [Article Influence: 4.0] [Reference Citation Analysis]
6 Zhang T, Wu KY, Ma N, Wei LL, Garstka M, Zhou W, Li K. The C5a/C5aR2 axis promotes renal inflammation and tissue damage. JCI Insight 2020;5:134081. [PMID: 32191644 DOI: 10.1172/jci.insight.134081] [Cited by in Crossref: 5] [Cited by in F6Publishing: 5] [Article Influence: 2.5] [Reference Citation Analysis]
7 Yang C, Chen Z, Yu H, Liu X. Inhibition of Disruptor of Telomeric Silencing 1-Like Alleviated Renal Ischemia and Reperfusion Injury-Induced Fibrosis by Blocking PI3K/AKT-Mediated Oxidative Stress. Drug Des Devel Ther 2019;13:4375-87. [PMID: 31920287 DOI: 10.2147/DDDT.S224909] [Cited by in Crossref: 4] [Cited by in F6Publishing: 3] [Article Influence: 1.3] [Reference Citation Analysis]
8 Witczak BJ, Pischke SE, Reisæter AV, Midtvedt K, Ludviksen JK, Heldal K, Jenssen T, Hartmann A, Åsberg A, Mollnes TE. Elevated Terminal C5b-9 Complement Complex 10 Weeks Post Kidney Transplantation Was Associated With Reduced Long-Term Patient and Kidney Graft Survival. Front Immunol 2021;12:738927. [PMID: 34759922 DOI: 10.3389/fimmu.2021.738927] [Reference Citation Analysis]
9 Min XY, Liu CF, Cao B, Zhang T, Yang X, Ma N, Wang N, Li K. Human CD3+CD56+NKT-like cells express a range of complement receptors and C3 activation has negative effects on these cell activity and effector function. Hum Immunol 2021;82:625-33. [PMID: 34134908 DOI: 10.1016/j.humimm.2021.06.001] [Reference Citation Analysis]
10 Sun J, Wang J, Lu W, Xie L, Lv J, Li H, Yang S. MiR-325-3p inhibits renal inflammation and fibrosis by targeting CCL19 in diabetic nephropathy. Clin Exp Pharmacol Physiol 2020;47:1850-60. [PMID: 32603491 DOI: 10.1111/1440-1681.13371] [Cited by in Crossref: 10] [Cited by in F6Publishing: 7] [Article Influence: 5.0] [Reference Citation Analysis]
11 Yang K, Li W, Bai T, Xiao Y, Yu W, Luo P, Cheng F. Mindin deficiency alleviates renal fibrosis through inhibiting NF-κB and TGF-β/Smad pathways. J Cell Mol Med 2020;24:5740-50. [PMID: 32253812 DOI: 10.1111/jcmm.15236] [Cited by in Crossref: 1] [Cited by in F6Publishing: 2] [Article Influence: 0.5] [Reference Citation Analysis]
12 Toyama C, Maeda A, Kogata S, Takase K, Kodama T, Masahata K, Ueno T, Kamiyama M, Tazuke Y, Eguchi H, Matsunami K, Miyagawa S, Okuyama H. Effect of a C5a receptor antagonist on macrophage function in an intestinal transplant rat model. Transplant Immunology 2022. [DOI: 10.1016/j.trim.2022.101559] [Reference Citation Analysis]
13 Zhang Z, Qiu M, Du H, Li Q, Yu C, Gan W, Peng H, Xia B, Xiong X, Song X, Yang L, Hu C, Chen J, Yang C, Jiang X. Small RNA sequencing reveals miRNAs important for hypoxic adaptation in the Tibetan chicken. Br Poult Sci 2020;61:632-9. [PMID: 32631087 DOI: 10.1080/00071668.2020.1792835] [Cited by in F6Publishing: 1] [Reference Citation Analysis]
14 Cui CS, Kumar V, Gorman DM, Clark RJ, Lee JD, Woodruff TM. In Vivo Pharmacodynamic Method to Assess Complement C5a Receptor Antagonist Efficacy. ACS Pharmacol Transl Sci 2022;5:41-51. [PMID: 35059568 DOI: 10.1021/acsptsci.1c00227] [Cited by in Crossref: 1] [Cited by in F6Publishing: 1] [Article Influence: 1.0] [Reference Citation Analysis]
15 Llorián-Salvador M, Byrne EM, Szczepan M, Little K, Chen M, Xu H. Complement activation contributes to subretinal fibrosis through the induction of epithelial-to-mesenchymal transition (EMT) in retinal pigment epithelial cells. J Neuroinflammation 2022;19:182. [PMID: 35831910 DOI: 10.1186/s12974-022-02546-3] [Reference Citation Analysis]
16 Chen Q, Ding F, Zhang S, Li Q, Liu X, Song H, Zuo X, Fan C, Mou S, Ge Z. Sequential Therapy of Acute Kidney Injury with a DNA Nanodevice. Nano Lett 2021;21:4394-402. [PMID: 33998787 DOI: 10.1021/acs.nanolett.1c01044] [Cited by in Crossref: 1] [Article Influence: 1.0] [Reference Citation Analysis]
17 Zhou S, Guo J, Zhao L, Liao Y, Zhou Q, Cui Y, Hu W, Chen J, Ren X, Wei Q, Jiang S, Zheng Y, Li L, Wilcox CS, Persson PB, Patzak A, Tian J, Yin Lai E. ADAMTS13 inhibits oxidative stress and ameliorates progressive chronic kidney disease following ischaemia/reperfusion injury. Acta Physiol (Oxf) 2021;231:e13586. [PMID: 33226724 DOI: 10.1111/apha.13586] [Cited by in Crossref: 4] [Cited by in F6Publishing: 4] [Article Influence: 4.0] [Reference Citation Analysis]
18 Luo L, Deng S, Tang W, Hu X, Yin F, Ge H, Tang J, Liao Z, Li X, Feng J. Recruitment of IL-1β-producing intermediate monocytes enhanced by C5a contributes to the development of malignant pleural effusion. Thorac Cancer 2022. [PMID: 35137541 DOI: 10.1111/1759-7714.14324] [Cited by in Crossref: 1] [Cited by in F6Publishing: 1] [Article Influence: 1.0] [Reference Citation Analysis]
19 Kusakabe J, Hata K, Tamaki I, Tajima T, Miyauchi H, Wang Y, Nigmet Y, Okamura Y, Kubota T, Tanaka H, Tsuruyama T, Uemoto S. Complement 5 Inhibition Ameliorates Hepatic Ischemia/reperfusion Injury in Mice, Dominantly via the C5a-mediated Cascade. Transplantation 2020;104:2065-77. [PMID: 32384381 DOI: 10.1097/TP.0000000000003302] [Cited by in Crossref: 3] [Cited by in F6Publishing: 2] [Article Influence: 3.0] [Reference Citation Analysis]
20 Hu X, Xu Y, Zhang Z, Tang Z, Zhang J, Luo Y, Deng W, Dong Z, Zhao Y, Na N. TSC1 Affects the Process of Renal Ischemia-Reperfusion Injury by Controlling Macrophage Polarization. Front Immunol 2021;12:637335. [PMID: 33767704 DOI: 10.3389/fimmu.2021.637335] [Reference Citation Analysis]
21 Jiang L, Yao F, Zhang E, Yu Q, Yu C, Chen Z, Chen J, Yue Z, Che P, Li J, Sun H. Combined treatment of xyloglucan derivative hydrogel and anti-C5a receptor antibody in preventing peritoneal adhesion. Acta Biomaterialia 2022. [DOI: 10.1016/j.actbio.2022.08.001] [Reference Citation Analysis]