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基于树枝状大分子的泊沙康唑纳米平台用于抗真菌治疗。

Dendrimer-based posaconazole nanoplatform for antifungal therapy.

机构信息

Department of Internal Medicine, Division of Allergy, Michigan Nanotechnology Institute for Medicine and Biological Sciences, University of Michigan, Ann Arbor, MI, USA.

出版信息

Drug Deliv. 2021 Dec;28(1):2150-2159. doi: 10.1080/10717544.2021.1986605.

Abstract

We examined formulating a new antifungal agent, posaconazole (POS) and its derivatives, with different molecular vehicles. Several combinations of drug and carrier molecules were synthesized, and their antifungal activities were evaluated against . Posaconazole and four of its derivatives were conjugated to either generation 5 (G5) dendrimers or partially modified G5 dendrimers. The antifungal activities of these compounds suggest that conjugates with specific chemical linkages showed better fungistatic activity than direct conjugates to POS. In particular, a polyethylene glycol (PEG)-imidazole modified G5 dendrimer demonstrated improved antifungal efficacy relative to the parent G5 molecule. Further studies were then conducted with POS derived molecules coupled to PEG-imidazole modified G5 dendrimers to achieve a highly soluble and active conjugate of POS. This conjugated macromolecule averaged 23 POS molecules per G5 and had a high solubility with 50 mg/mL, which improved the molar solubility of POS from less than 0.03 mg/mL to as high as 16 mg/mL in water. The primary release profile of the drug in human plasma was extended to over 72 h, which is reflected in the inhibition of growth of over 96 h. These POS-polymer conjugates appear to be novel and efficient antifungal agents.

摘要

我们研究了用不同的分子载体来配方一种新的抗真菌药物——泊沙康唑(POS)及其衍生物。合成了几种药物和载体分子的组合,并评估了它们对 的抗真菌活性。泊沙康唑及其四种衍生物分别与第五代(G5)树枝状大分子或部分修饰的 G5 树枝状大分子连接。这些化合物的抗真菌活性表明,具有特定化学连接的缀合物比直接与 POS 缀合具有更好的抑菌活性。特别是,聚乙二醇(PEG)-咪唑修饰的 G5 树枝状大分子显示出比母体 G5 分子更高的抗真菌功效。然后,进一步用与 PEG-咪唑修饰的 G5 树枝状大分子偶联的 POS 衍生分子进行研究,以获得具有高溶解性和活性的 POS 缀合物。该缀合大分子平均每个 G5 分子有 23 个 POS 分子,具有 50mg/mL 的高溶解性,将 POS 的摩尔溶解度从低于 0.03mg/mL 提高到高达 16mg/mL 的水中。药物在人血浆中的主要释放曲线延长至超过 72 小时,这反映在超过 96 小时的 生长抑制上。这些 POS-聚合物缀合物似乎是新型有效的抗真菌药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a9d/8510609/3d8d521da1f2/IDRD_A_1986605_SCH0001_B.jpg

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