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基于氧化果胶和明胶的多功能水凝胶,用于改善伤口愈合。

Multifunctional hydrogels based on oxidized pectin and gelatin for wound healing improvement.

机构信息

L.P.M.A.M.P.M, Dépt. Génie des Procédés, Fac. Technologie, Univ. Ferhat Abbas-Sétif1, Sétif 19000, Algeria.

L.P.M.A.M.P.M, Dépt. Génie des Procédés, Fac. Technologie, Univ. Ferhat Abbas-Sétif1, Sétif 19000, Algeria.

出版信息

Int J Biol Macromol. 2022 Jul 1;212:248-256. doi: 10.1016/j.ijbiomac.2022.05.082. Epub 2022 May 13.

DOI:10.1016/j.ijbiomac.2022.05.082
PMID:35577187
Abstract

Gelatin (G) cross-linked with oxidized pectin (OP) was studied as a potential scaffold material for tissue engineering. The effect of oxidation on the chemical properties of pectin was investigated by determining the carbonyl and carboxyl amounts. The OP treatment led to a significant decrease of all values (Mn, Mw, [η] and Rh) determined by size exclusion chromatography (SEC) coupled on line with multiangle light scattering and viscometer detectors. Cross-linking parameters were elucidated by FTIR and TNBS assay. In general, the degree of crosslinking increased with the oxidation of pectin. It was found that the presence of the crosslinking agents caused a reduction in swelling and in the gelatin release which was determined by the BCA kit assay. From the hemolysis test, the membrane of red blood cells was not disrupted by the contact of films and the rate of release of hemoglobin was lower than 5%. The coagulation properties were evaluated by the dynamic blood clotting test. The G/OP hydrogels manifested a good activity of wound healing in the albino rats' model. Moreover, the films did not produce any unwilling symptoms. So, it was concluded that studied films have the potentiality to be used as wound healing biomaterials.

摘要

明胶(G)与氧化果胶(OP)交联被研究为组织工程的潜在支架材料。通过测定羰基和羧基的含量来研究氧化对果胶化学性质的影响。OP 处理导致通过尺寸排阻色谱(SEC)与多角度光散射和粘度计检测器在线耦合测定的所有值(Mn、Mw、[η]和 Rh)显著降低。通过傅里叶变换红外光谱(FTIR)和三硝基苯磺酸(TNBS)测定交联参数。一般来说,随着果胶的氧化,交联程度增加。结果发现,交联剂的存在导致溶胀和明胶释放减少,这是通过 BCA 试剂盒测定的。从溶血试验来看,红细胞膜没有因与薄膜的接触而破裂,血红蛋白的释放率低于 5%。通过动态血凝试验评估凝血特性。G/OP 水凝胶在白化大鼠模型中表现出良好的伤口愈合活性。此外,这些薄膜没有产生任何不适症状。因此,可以得出结论,所研究的薄膜有可能被用作伤口愈合生物材料。

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