Division of Wound Healing and Regenerative Medicine, Department of Surgery, New York University School of Medicine, New York, NY 10016, USA.
Biomaterials. 2011 Jan;32(3):890-8. doi: 10.1016/j.biomaterials.2010.09.053. Epub 2010 Oct 13.
An in situ gelable and biodegradable triple-interpenetrating network (3XN) hydrogel, completely devoid of potentially cytotoxic extraneous small molecule crosslinkers, is formulated from partially oxidized dextran (Odex), teleostean and N-carboxyethyl chitosan (CEC). Both the rheological profile and mechanical strength of the 3XN hydrogel approximate the combined characteristics of the three individual hydrogels composed of the binary partial formulations (i.e., Odex/CEC, Odex/teleostean, and CEC/teleostean). The 3XN hydrogel is considerably more resistant to fibroblast-mediated degradation compared to each partial formulation in cell culture models; this is attributable to the interpenetrating triple-network structure. The presence of teleostean in the 3XN hydrogel imparts cell affinity, constituting an environment amenable to fibroblast growth. in vivo subdermal injection into mouse model shows that the 3XN hydrogel does not induce extensive inflammatory response nor is there any evidence of tissue necrosis, further confirming the non-cytotoxicity of the hydrogel and its degradation byproducts. Importantly, the capability of the 3XN hydrogel to serve as a sustained drug delivery vehicle is confirmed using rosiglitazone as a model drug. The presence of rosiglitazone profoundly changes the cell/tissue interactions with the subdermally injected 3XN hydrogel. Rosiglitazone suppresses both the inflammatory response and tissue repair in a dose-dependent manner and considerably moderated the hydrogel degradation.
一种原位凝胶化和可生物降解的三重互穿网络(3XN)水凝胶,完全不含潜在细胞毒性的外源小分子交联剂,由部分氧化的葡聚糖(Odex)、硬骨鱼和 N-羧乙基壳聚糖(CEC)组成。3XN 水凝胶的流变特性和力学强度都接近由二元部分配方(即 Odex/CEC、Odex/硬骨鱼和 CEC/硬骨鱼)组成的三个单独水凝胶的综合特性。与细胞培养模型中的每个部分配方相比,3XN 水凝胶对成纤维细胞介导的降解具有更高的抗性;这归因于互穿的三重网络结构。硬骨鱼在 3XN 水凝胶中的存在赋予了细胞亲和力,构成了有利于成纤维细胞生长的环境。体内皮下注射到小鼠模型中表明,3XN 水凝胶不会引起广泛的炎症反应,也没有组织坏死的证据,进一步证实了水凝胶及其降解产物的非细胞毒性。重要的是,使用罗格列酮作为模型药物证实了 3XN 水凝胶作为持续药物递送载体的能力。罗格列酮的存在极大地改变了皮下注射 3XN 水凝胶后细胞/组织的相互作用。罗格列酮以剂量依赖的方式抑制炎症反应和组织修复,并显著减缓水凝胶的降解。