首页> 外文期刊>Journal of biomedical materials research, Part A >Injectable chitosan-based hydrogel for implantable drug delivery: body response and induced variations of structure and composition.
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Injectable chitosan-based hydrogel for implantable drug delivery: body response and induced variations of structure and composition.

机译:用于可植入药物递送的基于壳聚糖的可注射水凝胶:身体反应以及结构和成分的诱导变化。

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摘要

Thermosensitive hydrogel composed of chitosan and glycerophosphate (CS/GP) is proposed to be the potential candidate of in situ gel-forming implant for long-term drug delivery. The present study was focused on the body response and induced structural and componential variations of the hydrogel, which were considered to impact on the drug delivery significantly but were scarcely reported. The body response was investigated by histological examination. It showed that the hydrogel caused an inflammatory response immediately after being implanted into Sprague-Dawley (SD) rats. The inflammatory response was mainly exhibited as inflammatory cell surrounding and infiltrating, tissue encapsulating, and vascularization in tissue. The effects of the inflammatory response on the structure and component of the CS/GP hydrogel were extensively explored through analyzing the hydrogel samples taken by surgery. The tissue encapsulation and osmotic pressure caused the water loss of the hydrogel and the compaction of the hydrogel network, and resulted in the porosity decreasing. The cell surrounding and infiltrating spawned big pores in the network and generated the subdivision of the network. All these structural and componential variations of the hydrogel in vivo were quite different from those in vitro and were supposed to exert significantly effects on drug release kinetics.
机译:壳聚糖和甘油磷酸酯(CS / GP)组成的热敏水凝胶被认为是原位凝胶形成植入物用于长期药物输送的潜在候选者。本研究的重点是人体反应以及水凝胶的结构和成分变化,这些变化被认为会显着影响药物的递送,但几乎没有报道。通过组织学检查调查身体反应。结果表明,水凝胶植入Sprague-Dawley(SD)大鼠后立即引起炎症反应。炎症反应主要表现为炎症细胞周围和浸润,组织包裹以及组织中的血管形成。通过分析手术采集的水凝胶样品,广泛探索了炎症反应对CS / GP水凝胶的结构和成分的影响。组织的包封和渗透压引起水凝胶的水损失和水凝胶网络的致密化,并导致孔隙率降低。围绕并浸润的细胞在网络中产生了大孔,并产生了网络的细分。体内水凝胶的所有这些结构和组成变化与体外变化完全不同,并且应该对药物释放动力学产生显着影响。

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