分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Adhesive cryogel particles for bridging confined and irregular tissue defects

Xue Yao-Ting, Chen Ming-Yu, Cao Jia-Sheng, Wang Lei, Hu Jia-Hao, Li Si-Yang, Shen Ji-Liang, Li Xin-Ge, Zhang Kai-Hang, Hao Shu-Qiang, Juengpanich Sarun, Cheng Si-Bo, Wong Tuck-Whye, Yang Xu-Xu, Li Ti

Journal:Military Medical Research

IF:21.1

DOI:10.1186/s40779-023-00451-1

PMID:

Published:2023-03-23

research field:外科材料生物材料生物医学工程组织工程伤口愈合

Abstract

Background Reconstruction of damaged tissues requires both surface hemostasis and tissue bridging. Tissues with damage resulting from physical trauma or surgical treatments may have arbitrary surface topographies, making tissue bridging challenging. Methods This study proposes a tissue adhesive in the form of adhesive cryogel particles (ACPs) made from chitosan, acrylic acid, 1-Ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC) and N-hydroxysuccinimide (NHS). The adhesion performance was examined by the 180-degree peel test to a collection of tissues including porcine heart, intestine, liver, muscle, and stomach. Cytotoxicity of ACPs was evaluated by cell proliferation of human normal liver cells (LO2) and human intestinal epithelial cells (Caco-2). The degree of inflammation and biodegradability were examined in dorsal subcutaneous rat models. The ability of ACPs to bridge irregular tissue defects was assessed using porcine heart, liver, and kidney as the ex vivo models. Furthermore, a model of repairing liver rupture in rats and an intestinal anastomosis in rabbits were established to verify the effectiveness, biocompatibility, and applicability in clinical surgery. Results ACPs are applicable to confined and irregular tissue defects, such as deep herringbone grooves in the parenchyma organs and annular sections in the cavernous organs. ACPs formed tough adhesion between tissues [(670.9 ± 50.1) J/m^2 for the heart, (607.6 ± 30.0) J/m^2 for the intestine, (473.7 ± 37.0) J/m^2 for the liver, (186.1 ± 13.3) J/m^2 for muscle, and (579.3 ± 32.3) J/m^2 for the stomach]. ACPs showed considerable cytocompatibility in vitro study, with a high level of cell viability for 3 d [(98.8 ± 1.2) % for LO2 and (98.3 ± 1.6) % for Caco-2].

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