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载纳曲酮的聚[La-(Glc-Leu)]聚合物微球治疗酒精依赖:体外特性表征和体内生物相容性评价。

Naltrexone-loaded poly[La-(Glc-Leu)] polymeric microspheres for the treatment of alcohol dependence: in vitro characterization and in vivo biocompatibility assessment.

机构信息

Department of Pharmaceutical Sciences and Technology, Institute of Chemical Technology, University under Section 3 of UGC Act- 1956, Elite Status & Centre of Excellence - Govt. of Maharashtra , TEQIP Phase II Funded, Matunga, Mumbai, Maharashtra , India.

出版信息

Pharm Dev Technol. 2014 Jun;19(4):385-94. doi: 10.3109/10837450.2013.784334. Epub 2013 Apr 16.

DOI:10.3109/10837450.2013.784334
PMID:23590187
Abstract

The poly[La-(Glc-Leu)] copolymer was applied in the present investigation as polymeric carrier to fabricate naltrexone (NTX)-loaded poly[La-(Glc-Leu)] microspheres in the single emulsion solvent evaporation technique for the long-term treatment of alcohol dependence. Newly synthesized poly[La-(Glc-Leu)] copolymer exhibited diminished crystallanity, good biocompatibility and favorable biodegradability to be explored for drug delivery application. Scanning Electron Microscopy study revealed smooth and spherical-shaped NTX-loaded polymeric microspheres with a mean size of 10-90 µm. Influence of various decisive formulation variables such as amount of polymer, stabilizer concentration, homogenization speed, homogenization time, drug loading and organic-to-aqueous phase ratio on particle size, and entrapment efficiency was studied. Differential scanning calorimeter and X-ray diffractometry study confirmed the drug entrapment within polymer matrix into the microsphere environment. In vitro drug release showed the sustained drug release of formulation for the period of 28 d giving biphasic release pattern. Histological examination of NTX-loaded poly[La-(Glc-Leu)] microspheres injected intramuscularly into the thigh muscle of Wistar rats showed minimal inflammatory reaction, demonstrating that NTX-loaded microspheres were biocompatible. Insignificant increase in the serum creatine phosphokinase level (p < 0.05) as compared with the normal value revealed good muscle compatibility of the poly[La-(Glc-Leu)] microsphere system. Biocompatible nature and sustained drug-release action of poly[La-(Glc-Leu)] microspheres may have potential application in depot therapy.

摘要

聚[La-(Glc-Leu)]共聚物在本研究中用作聚合物载体,通过单乳液溶剂蒸发技术制备载有纳曲酮(NTX)的聚[La-(Glc-Leu)]微球,用于长期治疗酒精依赖。新合成的聚[La-(Glc-Leu)]共聚物表现出结晶度降低、良好的生物相容性和良好的可生物降解性,可用于药物输送应用。扫描电子显微镜研究表明,载有 NTX 的聚合物微球呈光滑的球形,平均粒径为 10-90μm。研究了各种决定性制剂变量(如聚合物用量、稳定剂浓度、均质速度、均质时间、载药量和有机相与水相比例)对粒径和包封效率的影响。差示扫描量热法和 X 射线衍射研究证实了药物在聚合物基质内的包封进入微球环境。体外药物释放显示制剂在 28 天内的药物持续释放,呈现两相释放模式。将载有 NTX 的聚[La-(Glc-Leu)]微球肌肉内注射到 Wistar 大鼠大腿肌肉中的组织学检查显示出最小的炎症反应,表明载有 NTX 的微球具有生物相容性。与正常值相比,血清肌酸磷酸激酶水平的显著升高(p<0.05)表明聚[La-(Glc-Leu)]微球系统具有良好的肌肉相容性。聚[La-(Glc-Leu)]微球的生物相容性和持续的药物释放作用可能具有在储存疗法中的潜在应用。

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