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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Physicochemical parameters affecting liposomal bisphosphonates bioactivity for restenosis therapy: Internalization, cell inhibition, activation of cytokines and complement, and mechanism of cell death
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Physicochemical parameters affecting liposomal bisphosphonates bioactivity for restenosis therapy: Internalization, cell inhibition, activation of cytokines and complement, and mechanism of cell death

机译:影响二膦酸脂质体生物活性用于再狭窄治疗的理化参数:内在化,细胞抑制,细胞因子和补体的活化以及细胞死亡的机制

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Partial inactivation and transient depletion of monocytes/macrophages by liposomal bisphosphonates (LIP-BPs) is widely experimented in various inflammatory disorders including restenosis. Previous studies on activation of cytokines by LIP-BPs are limited to certain cell lines. Moreover, the correlation between in vitro and in vivo studies and complement (C) activation has not been reported. We report here a comprehensive study on the bioactivity of LIP-BPs on various cells' internalization and proliferation, mechanism of cell death, cytokines (in vitro and in vivo) and C activation (in the rat, rabbit and pig). The role of the following parameters has been determined i) drug type (clodronate/alendronate); ii) vesicles size (60-800. nm); iii) charge (neutralegative/ positive); and iv) cell culture type (various cell lines and primary cultures). It was found that monocyte/macrophage inhibition and cytokine activation depend on the cell type, with a limited correlation to the bioactivity obtained in the rat and rabbit models of restenosis. Negatively charged liposomes (85 ± 20 nm) effectively depleted rabbit's monocytes (67% depletion), with a minor activation of cytokines and no C activation. It is concluded that cell culture studies are insufficient for assessing cytokine activation, and that by controlling LIP-BP properties (size, charge and drug type) optimal bioactivity could be achieved.
机译:脂质体双膦酸盐(LIP-BPs)对单核细胞/巨噬细胞的部分失活和瞬时耗竭已在包括再狭窄在内的各种炎症中进行了广泛的实验。先前关于通过LIP-BP激活细胞因子的研究仅限于某些细胞系。而且,尚未报道体外和体内研究与补体(C)活化之间的相关性。我们在这里报告有关LIP-BPs对各种细胞的内在化和增殖,细胞死亡,细胞因子(体外和体内)和C活化(在大鼠,兔和猪中)的生物活性的全面研究。已确定以下参数的作用:i)药物类型(氯膦酸盐/阿仑膦酸盐); ii)囊泡大小(60-800。nm); iii)充电(中性/负性/正性); iv)细胞培养类型(各种细胞系和原代培养)。已发现单核细胞/巨噬细胞抑制和细胞因子激活取决于细胞类型,与在再狭窄的大鼠和兔子模型中获得的生物活性具有有限的相关性。带负电荷的脂质体(85±20 nm)有效地耗尽了兔子的单核细胞(消耗了67%),而细胞因子的激活很小,而C没有激活。结论是,细胞培养研究不足以评估细胞因子的活化,并且通过控制LIP-BP特性(大小,电荷和药物类型)可以实现最佳的生物活性。

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