Criado J J, Macias R I, Medarde M, Monte M J, Serrano M A, Marin J J
Department of Inorganic Chemistry, University of Salamanca, Spain.
Bioconjug Chem. 1997 Jul-Aug;8(4):453-8. doi: 10.1021/bc970061v.
Owing to the high efficiency of hepatocytes to take up bile acids, these endogenous compounds or their analogues can be considered as potential shuttles for delivering drugs to the liver. With the aim of using this strategy to target platinum(II)-related cytostatic drugs toward the hepatobiliary system, a cholylglycinate (CG) derivative of cis-diammineplatinum(II) has been synthesized by treatment of cis-diammineplatinum(II) dichloride with sodium cholylglycinate. The complex, named Bamet-R2, was characterized by spectroscopy and elemental analysis. Results obtained in these studies together with conductivity measurements, which pointed to nonelectrolyte behavior, allowed the structure of the complex to be identified as C26H48N3O6ClPt. The compound was found to be soluble (up to 3 mM) in water and was highly soluble (more than 10 mM) in ethanol, methanol, and dimethyl sulfoxide. Its stability in solution was monitored by HPLC analysis. In deionized water, the compound remains > 90% pure in solution for up to 7 days and > 80% for up to 28 days. However, in 150 mM NaCl it remains as > 90% pure compound in solution for only 1 day. By contrast with the parent compound CG, Bamet-R2 was found to significantly inhibit the growth of rat hepatocytes in primary culture and L1210 murine leukemia cells, although in a less marked way than that observed for cisplatin. The cytostatic effect of Bamet-R2 was particularly strong against human colon adenocarcinoma LS174T cells. The results point to the potential usefulness of Bamet-R2 in the antitumoral therapy of enterohepatic-derived neoplasias.
由于肝细胞摄取胆汁酸的效率很高,这些内源性化合物或其类似物可被视为将药物输送到肝脏的潜在载体。为了利用这一策略将铂(II)相关的细胞毒性药物靶向肝胆系统,通过用胆酰甘氨酸钠处理二氯二氨铂(II)合成了顺式二氨铂(II)的胆酰甘氨酸(CG)衍生物。该配合物命名为Bamet-R2,通过光谱学和元素分析进行了表征。这些研究获得的结果以及表明非电解质行为的电导率测量结果,使得该配合物的结构被鉴定为C26H48N3O6ClPt。发现该化合物在水中可溶(高达3 mM),在乙醇、甲醇和二甲基亚砜中高度可溶(超过10 mM)。通过HPLC分析监测其在溶液中的稳定性。在去离子水中,该化合物在溶液中7天内纯度保持>90%,28天内保持>80%。然而,在150 mM NaCl中,它在溶液中仅1天就保持>90%的纯化合物。与母体化合物CG相比,发现Bamet-R2能显著抑制原代培养的大鼠肝细胞和L1210小鼠白血病细胞的生长,尽管其抑制程度不如顺铂明显。Bamet-R2的细胞毒性作用对人结肠腺癌LS174T细胞尤为强烈。结果表明Bamet-R2在肠肝源性肿瘤的抗肿瘤治疗中具有潜在的应用价值。