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一种用于骨关节炎治疗的新型生物相容性透明质酸-壳聚糖混合水凝胶。

A novel biocompatible hyaluronic acid-chitosan hybrid hydrogel for osteoarthrosis therapy.

作者信息

Kaderli S, Boulocher C, Pillet E, Watrelot-Virieux D, Rougemont A L, Roger T, Viguier E, Gurny R, Scapozza L, Jordan O

机构信息

School of Pharmaceutical Sciences, University of Geneva and University of Lausanne, Quai Ernest-Ansermet 30, 1211 Geneva, Switzerland.

UPSP ICE 2011.03.101, University of Lyon, VetAgro Sup, Campus Vétérinaire de Lyon 69280 Marcy l'Etoile, Lyon, France.

出版信息

Int J Pharm. 2015 Apr 10;483(1-2):158-68. doi: 10.1016/j.ijpharm.2015.01.052. Epub 2015 Feb 7.

Abstract

A conventional therapy for the treatment of osteoarthrosis is intra-articular injection of hyaluronic acid, which requires repeated, frequent injections. To extend the viscosupplementation effect of hyaluronic acid, we propose to associate it with another biopolymer in the form of a hybrid hydrogel. Chitosan was chosen because of its structural similarity to synovial glycosaminoglycans, its anti-inflammatory effects and its ability to promote cartilage growth. To avoid polyelectrolyte aggregation and obtain transparent, homogeneous gels, chitosan was reacetylated to a 50% degree, and different salts and formulation buffers were investigated. The biocompatibility of the hybrid gels was tested in vitro on human arthrosic synoviocytes, and in vivo assessments were made 1 week after subcutaneous injection in rats and 1 month after intra-articular injection in rabbits. Hyaluronic acid-chitosan polyelectrolyte complexes were prevented by cationic complexation of the negative charges of hyaluronic acid. The different salts tested were found to alter the viscosity and thermal degradation of the gels. Good biocompatibility was observed in rats, although the calcium-containing formulation induced calcium deposits after 1 week. The sodium chloride formulation was further tested in rabbits and did not show acute clinical signs of pain or inflammation. Hybrid HA-Cs hydrogels may be a valuable alternative viscosupplementation agent.

摘要

骨关节炎的一种传统治疗方法是关节内注射透明质酸,这需要反复频繁注射。为了延长透明质酸的黏弹性补充效果,我们建议将其与另一种生物聚合物以混合水凝胶的形式结合。选择壳聚糖是因为它与滑膜糖胺聚糖结构相似、具有抗炎作用且能够促进软骨生长。为了避免聚电解质聚集并获得透明、均匀的凝胶,壳聚糖被重新乙酰化至50%的程度,并对不同的盐和配方缓冲液进行了研究。在人关节滑膜细胞上对混合凝胶的生物相容性进行了体外测试,并在大鼠皮下注射1周后和兔关节内注射1个月后进行了体内评估。通过对透明质酸的负电荷进行阳离子络合来防止透明质酸 - 壳聚糖聚电解质复合物的形成。发现所测试的不同盐会改变凝胶的粘度和热降解。在大鼠中观察到良好的生物相容性,尽管含钙配方在1周后诱导了钙沉积。氯化钠配方在兔中进一步测试,未显示出疼痛或炎症的急性临床症状。混合HA - Cs水凝胶可能是一种有价值的替代黏弹性补充剂。

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