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首页> 外文期刊>Pharmaceutical research >Ability of doxorubicin-loaded nanoparticles to overcome multidrug resistance of tumor cells after their capture by macrophages.
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Ability of doxorubicin-loaded nanoparticles to overcome multidrug resistance of tumor cells after their capture by macrophages.

机译:载有阿霉素的纳米颗粒在被巨噬细胞捕获后克服肿瘤细胞的多药耐药性的能力。

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摘要

PURPOSE: Investigation of the ability of doxorubicin-loaded nanoparticles (NP/Dox) to overcome multidrug resistance (MDR) when they have first been taken up by macrophages. METHODS: The growth inhibition of P388 sensitive (P388) and resistant (P388/ADR) tumor cells was evaluated in a coculture system consisting of wells with two compartments. The tumor cells were seeded into the lower compartment, the macrophages were introduced into the upper part in which the drug preparations were also added. RESULTS: Doxorubicin exerted lower cytotoxicity on tumor cells in coculture compared with direct contact. In P388/ADR, NP/Dox cytotoxicity was far higher than that of free doxorubicin (Dox). Three different formulations of cyclosporin A (either free (CyA), loaded to nanoparticles (NP/CyA) or in a combined formulation with doxorubicin (NP/Dox-CyA)), were added to modulate doxorubicin efficacy. The addition of cyclosporin A to Dox increased drug cytotoxicity. Both CyA added to NP/Dox and NP/Dox-CyA were able to bypass drug resistance. CONCLUSIONS: Despite the barrier role of macrophages, NP/Dox remained far more cytotoxic than Dox against P388/ADR. Both NP/Dox + CyA and NP/Dox-CyA allowed to overcome MDR, but the last one should present greater advantage in vivo by confining both drugs in the same compartment, hence reducing the adverse effects.
机译:目的:研究负载阿霉素的纳米颗粒(NP / Dox)首次被巨噬细胞吸收时克服多药耐药性(MDR)的能力。方法:在共培养系统中,评估了对P388敏感(P388)和耐药(P388 / ADR)肿瘤细胞的生长抑制作用,该系统由两个间隔的孔组成。将肿瘤细胞接种到下部隔室中,将巨噬细胞引入上部,其中还加入了药物制剂。结果:与直接接触相比,阿霉素在共培养中对肿瘤细胞的细胞毒性较低。在P388 / ADR中,NP / Dox的细胞毒性远高于游离阿霉素(Dox)。加入三种不同的环孢菌素A制剂(游离(CyA),装载到纳米颗粒上(NP / CyA)或与阿霉素的组合制剂(NP / Dox-CyA))来调节阿霉素的功效。向Dox中添加环孢菌素A可增加药物的细胞毒性。加入NP / Dox的CyA和NP / Dox-CyA都能够绕过耐药性。结论:尽管有巨噬细胞的屏障作用,NP / Dox对P388 / ADR的细胞毒性仍然比Dox高。 NP / Dox + CyA和NP / Dox-CyA都可以克服MDR,但最后一种应在体内通过将两种药物限制在同一隔室中而表现出更大的优势,从而减少不良反应。

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