Inhibition of chemokine receptor CXCR2 attenuates postoperative peritoneal adhesion formation.
Su S, Hou C, Tang Q.
Surgery. 2024 Apr;175(4):1081-1088. doi: 10.1016/j.surg.2023.12.018. Epub 2024 Jan 27.
PMID:38281854
Pathophysiology and prevention of postoperative peritoneal adhesions.
Arung W, Meurisse M, Detry O.
World J Gastroenterol. 2011 Nov 7;17(41):4545-53. doi: 10.3748/wjg.v17.i41.4545.
PMID:22147959
Sodium aescinate significantly suppress postoperative peritoneal adhesion by inhibiting the RhoA/ROCK signaling pathway.
Liu W, Qin F, Wu F, Feng H, Yang Q, Hou L, Peng M, Zhou B, Tang L, Hou C.
Phytomedicine. 2020 Apr;69:153193. doi: 10.1016/j.phymed.2020.153193. Epub 2020 Feb 22.
PMID:32120245
Biocompatible and biodegradable chitin-based hydrogels crosslinked by BDDE with excellent mechanical properties for effective prevention of postoperative peritoneal adhesion.
Zou Y, Yue P, Cao H, Wu L, Xu L, Liu Z, Wu S, Ye Q.
Platelet-rich fibrin promotes mesothelial cell proliferation and peritoneal repair by up-regulating calretinin to prevent postoperative intestinal adhesion.
Li X, Guo Y, Wang Z, Guo X, Wang J, Zhang J, Zhang T, Wang J, Li T, Zhou J, Zhang N, Amin B, Zhu B.
Int J Med Sci. 2025 Feb 18;22(6):1254-1268. doi: 10.7150/ijms.105523. eCollection 2025.
PMID:40084247
Plasma-activated solutions prevent peritoneal adhesion formation by regulating eNOS expression in mesothelial cells.
Ma Y, Sun T, Ren K, Ma R, Min T, Wang X, Yuan Y, Xie X, Zhang B, Deng X, Peng Y, Liu Y, Nan Y, Wang W, Zhou Z, Xu G, Li K, Zhu K, Hao N, Dang C, Zhang G, Zhang H.