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Fabrication Principles and Their Contribution to the Superior In Vivo Therapeutic Efficacy of Nano-Liposomes Remote Loaded with Glucocorticoids

机译:远程负载糖皮质激素的纳米脂质体的制备原理及其对超强体内治疗功效的贡献

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摘要

We report here the design, development and performance of a novel formulation of liposome- encapsulated glucocorticoids (GCs). A highly efficient (>90%) and stable GC encapsulation was obtained based on a transmembrane calcium acetate gradient driving the active accumulation of an amphipathic weak acid GC pro-drug into the intraliposome aqueous compartment, where it forms a GC-calcium precipitate. We demonstrate fabrication principles that derive from the physicochemical properties of the GC and the liposomal lipids, which play a crucial role in GC release rate and kinetics. These principles allow fabrication of formulations that exhibit either a fast, second-order (t1/2 ∼1 h), or a slow, zero-order release rate (t1/2 ∼ 50 h) kinetics. A high therapeutic efficacy was found in murine models of experimental autoimmune encephalomyelitis (EAE) and hematological malignancies.
机译:我们在这里报告脂质体包裹的糖皮质激素(GCs)的新型制剂的设计,开发和性能。基于跨膜醋酸钙梯度驱动两亲性弱酸GC前药在脂质体内水溶液腔室中的主动积累,从而获得了高效(> 90%)且稳定的GC包封,在其中它形成了GC-钙沉淀。我们展示了从GC和脂质体脂质的理化性质衍生的制造原理,它们在GC释放速率和动力学中起着至关重要的作用。这些原理使得可以制备出表现出快速的二级动力学(t1 / 2〜1h)或缓慢的零级释放速率(t1 / 2〜50h)动力学的制剂。在实验性自身免疫性脑脊髓炎(EAE)和血液系统恶性肿瘤的小鼠模型中发现了很高的治疗功效。

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