Mehta R C, Hogan T F, Mardmomen S, Ma J K
School of Pharmacy, West Virginia University, Morgantown 26506.
J Chromatogr. 1988 Sep 9;430(2):341-9. doi: 10.1016/s0378-4347(00)83169-2.
Serum albumins and polylactic acid (PLA) have been used as bioerodable polymers in the preparation of drug-containing microspheres for parenteral drug delivery. The albumin microsphere may be prepared via either chemical cross-linking or heat denaturation of the protein. Heat-denatured albumin microspheres containing mitomycin C (MMC) have been used in pre-clinical and clinical investigations. Due to the high reactivity of MMC as a bifunctional alkylating agent, a study on the stability of MMC in the albumin and PLA microspheres has been carried out using a high-performance liquid chromatographic (HPLC) method. Human serum albumin (HSA) microspheres were prepared using an emulsion method via either heat denaturation at 120 or 170 degrees C or the use of 0.5 M biacetyl as a cross-linking agent. The PLA microspheres were prepared by an emulsion method at 55 degrees C. HPLC analysis of the HSA microspheres showed that about 37% of MMC was converted to 2,7-diaminomitosene derivatives in microspheres prepared by heat denaturation at 120 degrees C. The degradation increased to 82% when the microspheres were prepared with a denaturation temperature of 170 degrees C. The use of biacetyl as a cross-linking agent in the preparation of HSA microspheres resulted in a complete degradation of the incorporated MMC. Biacetyl was found to interact with MMC leading to the formation of 7-aminomitosene derivatives. In contrast to the albumin system, MMC may be incorporated into PLA microspheres without degradation.
血清白蛋白和聚乳酸(PLA)已被用作生物可蚀性聚合物,用于制备用于肠胃外给药的含药微球。白蛋白微球可以通过蛋白质的化学交联或热变性来制备。含有丝裂霉素C(MMC)的热变性白蛋白微球已用于临床前和临床研究。由于MMC作为双功能烷基化剂具有高反应活性,因此已使用高效液相色谱(HPLC)方法对MMC在白蛋白和PLA微球中的稳定性进行了研究。人血清白蛋白(HSA)微球通过乳液法制备,方法是在120或170摄氏度下进行热变性,或使用0.5 M双乙酰作为交联剂。PLA微球在55摄氏度下通过乳液法制备。对HSA微球的HPLC分析表明,在120摄氏度下通过热变性制备的微球中,约37%的MMC转化为2,7-二氨基丝裂霉素衍生物。当微球在170摄氏度的变性温度下制备时,降解率增加到82%。在制备HSA微球时使用双乙酰作为交联剂会导致掺入的MMC完全降解。发现双乙酰与MMC相互作用,导致形成7-氨基丝裂霉素衍生物。与白蛋白体系不同,MMC可以掺入PLA微球中而不发生降解。