Sandor Maryellen, Harris Joshua, Mathiowitz Edith
Department of Molecular Pharmacology, Physiology, and Biotechnology, Brown University, Providence, RI 02912, USA.
Biomaterials. 2002 Nov;23(22):4413-23. doi: 10.1016/s0142-9612(02)00183-7.
Polymer microspheres (0.5-5.0 microm) are difficult to characterize in vivo because they degrade, migrate, and are endocytosed. A novel polyethylene mesh pouch containing microspheres allowed for retrieval of degraded polymeric products from rats without affecting the rate of degradation. Pouches containing poly(lactic-co-glycolic acid) (PLGA) or poly(fumaric-co-sebacic acid) (P(FASA)) microspheres were implanted intramuscularly, subcutaneously, and intraperitoneally and analyzed after 3, 7, 14, and 28 days. In vivo, subcutaneous or intraperitoneal implants experienced an immediate mass loss and a delayed decrease in molecular weight (Mw). Intramuscular implants behaved similarly to in vitro samples, decreasing in Mw immediately and lagging in mass loss. These results suggest that mass loss, which is usually dependent on Mw loss in vitro, may be directly due to enzymatic, rather than hydrolytic, degradation subcutaneously and intraperitoneally, while intramuscular implants appear to be mostly dependent on hydrolytic cleavage. This observation is further supported by histology. Additional experiments on pouches loaded with PLGA microspheres encapsulating osteoprotegerin, a protein drug used to prevent bone resorption, revealed that use of the device prevented the artifactual polymer compression inherent to microsphere centrifugation during release studies and allowed for the extraction of active protein from microspheres implanted for 3 days in vivo.
聚合物微球(0.5 - 5.0微米)在体内难以表征,因为它们会降解、迁移并被内吞。一种新型的含有微球的聚乙烯网袋能够从大鼠体内取出降解的聚合物产物,且不影响降解速率。将含有聚(乳酸 - 乙醇酸)(PLGA)或聚(富马酸 - 癸二酸)(P(FASA))微球的网袋分别进行肌肉内、皮下和腹腔内植入,并在3天、7天、14天和28天后进行分析。在体内,皮下或腹腔内植入物会立即出现质量损失,分子量(Mw)则延迟下降。肌肉内植入物的表现与体外样品相似,Mw立即下降,质量损失滞后。这些结果表明,通常在体外依赖于Mw损失的质量损失,在皮下和腹腔内可能直接归因于酶促降解而非水解降解,而肌肉内植入物似乎主要依赖于水解裂解。组织学进一步支持了这一观察结果。对装载有包裹骨保护素(一种用于预防骨吸收的蛋白质药物)的PLGA微球的网袋进行的额外实验表明,使用该装置可防止在释放研究期间微球离心过程中固有的人为聚合物压缩,并允许从体内植入3天的微球中提取活性蛋白。