Liu Jiang, Meisner Dale, Kwong Elizabeth, Wu Xiao Y, Johnston Michael R
Institute of Medical Science and Department of Surgery, Faculty of Medicine, University of Toronto, Toronto, Ont., Canada.
Biomaterials. 2007 Jul;28(21):3236-44. doi: 10.1016/j.biomaterials.2007.03.022. Epub 2007 Mar 24.
A translymphatic drug delivery system which incorporates poly-lactide-co-glycolide-paclitaxel (PLGA-PTX) or PLGA-rhodamine microspheres into gelatin sponge matrix is described. The system combines the sustained release properties of PLGA-PTX with the structural advantages of gelatin matrix that can be implanted directly to the lymphatic site for both therapeutic and prophylactic purposes. The PLGA microspheres were prepared using spray drying technique. The particles were in the size range of 1-8 microm, suitable for intraperitoneal and intrapleural lymphatic targeting delivery. Scanning electron microscopy revealed the homogeneous distribution of PLGA microspheres in the porous sponge network. The release of PTX was mainly controlled by the degradation of the PLGA. Crosslinking gelatin using carbodiimide reduced the biodegradation of the sponge and thereby delayed the release of the PLGA in vitro. In vivo lymphatic delivery was assessed in both healthy rats and rats bearing orthotopic lung cancer. Intraperitoneal and intrapleural implantation of the sponge impregnated with PLGA microspheres resulted in spontaneous absorption of the particles in the lymphatic system. It is concluded that the system provides great potential for targeted delivery of therapeutic agent to the lymphatic system especially for the control of lymphatic metastasis in cancer.
描述了一种经淋巴给药系统,该系统将聚丙交酯-乙交酯-紫杉醇(PLGA-PTX)或PLGA-罗丹明微球整合到明胶海绵基质中。该系统结合了PLGA-PTX的缓释特性和明胶基质的结构优势,可直接植入淋巴部位用于治疗和预防目的。PLGA微球采用喷雾干燥技术制备。颗粒大小在1-8微米范围内,适用于腹腔和胸腔内淋巴靶向递送。扫描电子显微镜显示PLGA微球在多孔海绵网络中均匀分布。PTX的释放主要受PLGA降解的控制。使用碳二亚胺交联明胶可降低海绵的生物降解,从而在体外延迟PLGA的释放。在健康大鼠和原位肺癌大鼠中评估了体内淋巴递送。腹腔和胸腔内植入浸渍有PLGA微球的海绵导致颗粒在淋巴系统中自发吸收。结论是该系统为将治疗剂靶向递送至淋巴系统提供了巨大潜力,特别是对于控制癌症中的淋巴转移。