Benita S, Fickat R, Benoît J P, Bonnemain B, Samaille J P, Madoulé P
Laboratoire de Pharmacie Galénique et de Biopharmacie, Université de Paris XI, Chatenay Malabry, France.
J Microencapsul. 1984 Oct-Dec;1(4):317-27. doi: 10.3109/02652048409031544.
The interfacial polymerization process used in the present study produced individual cross-linked albumin microcapsules, the particle size of which depended on the emulsification stirring rate. The variation in cross-linking agent concentration altered the microcapsule wall properties. As shown by SEM observations, microcapsules prepared with low acyl chloride concentrations presented rippled surfaces, while the surfaces of the microcapsules prepared with high acyl chloride concentrations were smooth. It was then suggested that the membranes of the weakly cross-linked microcapsules consisted of cross-linked and denatured albumin. Embolization experiments in the dog kidney showed that the weakly cross-linked microcapsules were biodegradable within 7 days, whereas the highly cross-linked microcapsules were degraded over more than 14 days and led to prolonged ischaemia. The results of the histological experiments carried out on a further eight dogs supported the previous findings yielded by the angiographical experiments. Moreover, they indicated that no foreign body reaction occurred. The lack of this inflammatory granuloma should be attributed to the rapid biodegradation of the microcapsules which produced reversible ischaemic lesions.
本研究中使用的界面聚合过程产生了单个交联白蛋白微胶囊,其粒径取决于乳化搅拌速率。交联剂浓度的变化改变了微胶囊壁的性质。扫描电子显微镜观察表明,用低酰氯浓度制备的微胶囊表面呈波纹状,而用高酰氯浓度制备的微胶囊表面光滑。由此推测,弱交联微胶囊的膜由交联和变性的白蛋白组成。犬肾栓塞实验表明,弱交联微胶囊在7天内可生物降解,而高度交联微胶囊在14天以上降解,并导致缺血时间延长。对另外8只犬进行的组织学实验结果支持了血管造影实验的先前发现。此外,结果表明未发生异物反应。这种炎性肉芽肿的缺乏应归因于微胶囊的快速生物降解,其产生了可逆的缺血性病变。