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Antileishmanial drug targeting through glycosylated polymers specifically internalized by macrophage membrane lectins.

机译:抗利什曼肽药物通过巨噬细胞膜凝集素特异内化的糖基化聚合物靶向。

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摘要

Antileishmanial chemotherapy is hampered by the location of the parasite within the phagolysosome of the macrophage, which restricts the bioavailability of many potentially useful antileishmanial drugs. In this study, the possibility of using antileishmanial drugs targeted to the infected macrophages by means of a chemical linkage to a neutral mannose-substituted poly-L-lysine carrier molecule was explored. The study was performed in an in vitro model with Leishmania donovani-infected murine macrophages. The antileishmanial activities of various synthetic constructs were compared with those of the free drugs and the pentavalent antimonial Pentostam, which was used as the positive control. The 50% effective dose of allopurinol riboside linked to the mannosylated poly-L-lysine was below 7.5 x 10(-6) M, while it was up to 3 x 10(-4) M for the free drug, indicating that the drug bound to the polymer was 50 times more active than the free drug. Control experiments with other constructs (e.g., allopurinol riboside linked to the mannose-free polymer) confirmed that the enhancement of activity was indeed achieved by means of the mannose homing device.
机译:寄生虫在巨噬细胞吞噬溶酶体内的位置阻碍了抗利什曼化学疗法的使用,这限制了许多潜在有用的抗利什曼肽药物的生物利用度。在这项研究中,探索了通过与中性甘露糖取代的聚-L-赖氨酸载体分子的化学键合使用靶向被感染的巨噬细胞的抗衰老药物的可能性。该研究是在体外模型中用利什曼原虫感染的鼠巨噬细胞进行的。将各种合成构建体的抗排菌活性与游离药物和用作阳性对照的五价锑戊喷坦进行了比较。与甘露糖基化的聚-L-赖氨酸相连的别嘌醇核糖苷的50%有效剂量低于7.5 x 10(-6)M,而游离药物则高达3 x 10(-4)M,表明该药物与聚合物结合的活性是游离药物的50倍。使用其他构建体(例如,与无甘露糖聚合物连接的别嘌呤醇核糖苷)的对照实验证实,确实通过甘露糖归巢装置实现了活性增强。

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