首页> 外文期刊>International Journal of Pharmaceutics >Release profiles and morphological characterization by atomic force microscopy and photon correlation spectroscopy of 99mTechnetium-fluconazole nanocapsules.
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Release profiles and morphological characterization by atomic force microscopy and photon correlation spectroscopy of 99mTechnetium-fluconazole nanocapsules.

机译:99mTechnetium-fluconazole纳米胶囊的释放曲线和通过原子力显微镜和光子相关光谱的形态表征。

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摘要

Several classes of antifungal have been employed in candidiasis treatment, but patients with advanced immunodeficiency can present unsatisfactory results after therapy. In these cases, high doses of drugs or the use of multiple agents are sometimes used, and hence increasing the risk of serious side effects. Considering theses difficulties, the encapsulation of antifungal agents in nanoparticulate carriers has been used with the objective of modifying the pharmacokinetic of drugs resulting in more efficient treatments with less side effects. The purpose of this work was the preparation, characterization and the investigation of the release profiles of radiolabeled fluconazole nanocapsules. The size, homogeneity and zeta potential of NC preparations were determined with a Zetasizer 3000HS. The morphology and the structural organization were evaluated by atomic force microscopy (AFM). The release study in vitro of NC was evaluated in physiologic solution with or without 70% mouse plasma. The labeling yield of fluconazole with 99mTc was 94% and the radiolabeled drug was stable within 24h period. The encapsulation percentage of 99mTc-fluconazole in PLA-POLOX NC and PLA-PEG NC was approximately of 30%. The average diameter calculated by photon correlation spectroscopy (PCS) varied from 236 to 356 nm, while the average diameter determined by AFM varied from 238 to 411 nm. The diameter/height relation decreased significantly when 25% glutaraldehyde was used for NC fixation on mica. The zeta potential varied from -55 to -69 nm and surface-modified NC showed lower absolute values than conventional NC. The in vitro release of 99mTc-fluconazole in plasma medium of the conventional and surface-modified NC was greater than in saline. The drug release in plasma medium from conventional NC was faster than for surface-modified NC. The results obtained in this work suggest that the nanocapsules containing fluconazole could be used to identify infectious foci, due to the properties, such as size, zeta potential and controlled release of (99m)Tc-fluconazole. The surface-modified nanocapsules could constitute a long-circulating intravenous formulation of fluconazole for treating sepsis caused by disseminated form of candidiasis. However, in vivo studies should be considered and are under investigation.
机译:几种类型的抗真菌药已用于念珠菌病治疗,但晚期免疫缺陷患者在治疗后可能会出现令人不满意的结果。在这些情况下,有时会使用高剂量药物或使用多种药物,因此会增加出现严重副作用的风险。考虑到这些困难,已使用抗真菌剂在纳米颗粒载体中的包封,目的是改变药物的药代动力学,从而产生更有效的治疗且副作用更少。这项工作的目的是放射性标记的氟康唑纳米胶囊的制备,表征和释放曲线的研究。用Zetasizer 3000HS测定NC制剂的大小,均质性和Zeta电位。通过原子力显微镜(AFM)评估其形态和结构组织。在有或没有70%小鼠血浆的生理溶液中评估了NC的体外释放研究。氟康唑在99mTc上的标记收率为94%,放射性标记药物在24h内稳定。 99mTc-氟康唑在PLA-POLOX NC和PLA-PEG NC中的包封率约为30%。通过光子相关光谱法(PCS)计算的平均直径在236至356 nm之间变化,而通过AFM测定的平均直径在238至411 nm之间变化。当使用25%戊二醛将NC固定在云母上时,直径/高度关系显着下降。 Zeta电位在-55至-69 nm之间变化,表面改性的NC显示出比常规NC低的绝对值。传统的和表面修饰的NC血浆介质中99mTc-氟康唑的体外释放大于盐水中的释放。常规NC在血浆介质中的药物释放比表面修饰的NC更快。在这项工作中获得的结果表明,由于具有诸如(99m)Tc-氟康唑的大小,ζ电势和控制释放等特性,含有氟康唑的纳米胶囊可用于鉴定感染源。经表面修饰的纳米胶囊可构成氟康唑的长效静脉内制剂,用于治疗由念珠菌的散布形式引起的败血症。但是,应考虑进行体内研究并且正在研究中。

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