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Liposomes Co-encapsulating Anticancer Drugs in Synergistic Ratios as an Approach to Promote Increased Efficacy and Greater Safety

机译:脂质体共同包封抗癌药物在协同比例中作为一种促进疗效和更高安全性的方法

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The era of chemotherapy began in the 1940s, but it was in the 1960s that it was seen as really promising when the first patients with childhood acute lymphoblastic leukemia were cured with combination chemotherapy. Today, it is known that due to resistance to single agents, combination therapy is essential for tumor eradication and cure. In the last decade, studies have shown that anticancer drug combinations can act synergistically or antagonistically against tumor cells in vitro, depending on the ratios of the individual drugs forming the combination. From this observation and facing the possibility of maintaining the in vivo synergistic ratio of combinations came the idea of co-encapsulating anticancer agents in nanosystems. In vivo studies validated this idea by showing that the co-encapsulation of anticancer agents in liposomes allows the maintenance of drug ratios in the plasma and the delivery of fixed drug ratios directly to tumor tissue, leading to a better efficacy compared to the administration of the free drugs combination. Liposomes co-encapsulating irinotecan/floxuridine are now in Phase II trial, and liposomes co-encapsulating cytarabine/daunorubicin were recently approved by the FDA for treatment of patients with acute myeloid leukemia.
机译:在20世纪40年代开始化疗的时代,但它在20世纪60年代,当第一个儿童急性淋巴细胞白血病患者用组合化疗来治愈时,它被认为是真正有希望的。今天,众所周知,由于对单一药剂的抗性,联合治疗对于肿瘤根除和治愈至关重要。在过去的十年中,研究表明,抗癌药物组合可以在体外协同或对抗肿瘤细胞进行协同作用,这取决于形成组合的个体药物的比例。从这种观察结果,面对维持组合的体内协同比的可能性是纳米系统共同包封抗癌剂的想法。体内研究通过表明脂质体中的抗癌剂的共同封装允许维持血浆中的药物比率和将固定药物比直接递送到肿瘤组织,导致与给药相比更好的疗效免费药物组合。共同包封伊立替康/氟脲的脂质体现在处于II期试验中,并且最近通过FDA批准了共同包封的血糖素/大生霉素的脂质体用于治疗急性髓鞘性白血病患者。

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