荧光光谱分析评估经皮生物分布的荧光纳米粒凝胶配方。

IF 2.1 4区 生物学 Q4 CELL BIOLOGY
Enrica Cappellozza, Federico Boschi, Maddalena Sguizzato, Elisabetta Esposito, Rita Cortesi, Manuela Malatesta, Laura Calderan
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引用次数: 5

摘要

通过荧光团关联和生物成像技术(即光学体内成像或共聚焦和多光子显微镜)的跟踪,可以相对简化为体内治疗分子运输而设计的药物输送系统的吸收研究。然而,当荧光信号从皮肤中发出时,它的特异性检测可能会有问题。皮肤高自身荧光可以阻碍观察外源性荧光团结合到药物输送系统,使其更具有挑战性的检测其生物分布。在本研究中,我们开发了一种基于皮肤样本荧光光谱分析的方法,以区分来自背景中施用荧光分子的荧光信号。此外,我们给出了信号强度的半定量评价。因此,我们区分了两种装载荧光团罗丹明B的凝胶配方(称为gel RHO和gel SLN-RHO)。将两种凝胶制剂(其中一种含有固体脂质纳米颗粒(GEL RHO-SLN))施用于生物反应器中培养的皮肤外植体上,并在不同时间点(2和6小时)评估其渗透效果。用共聚焦激光扫描显微镜观察皮肤样本的低温切片,并进行荧光光谱分析。用SLN-RHO凝胶处理的样品的信号强度明显更高,在毛球中有优先积累。6小时后到达毛干的更深层,固体脂质纳米颗粒被聚合物增厚,代表了一种适合经皮给药的药物传递系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A spectrofluorometric analysis to evaluate transcutaneous biodistribution of fluorescent nanoparticulate gel formulations.

A spectrofluorometric analysis to evaluate transcutaneous biodistribution of fluorescent nanoparticulate gel formulations.

A spectrofluorometric analysis to evaluate transcutaneous biodistribution of fluorescent nanoparticulate gel formulations.

A spectrofluorometric analysis to evaluate transcutaneous biodistribution of fluorescent nanoparticulate gel formulations.

The investigation of the absorption of drug delivery systems, designed for the transport of therapeutic molecules inside the body, could be relatively simplified by the fluorophore association and tracking by means of bio-imaging techniques (i.e., optical in vivo imaging or confocal and multiphoton microscopy). However, when a fluorescence signal comes out from the skin, its specific detection can be problematic. Skin high autofluorescence can hinder the observation of administered exogenous fluorophores conjugated to drug delivery systems, making it more challenging to detect their biodistribution. In the present study, we have developed a method based on the spectrofluorometric analysis of skin samples to discriminate the fluorescent signal coming from administered fluorescent molecules from the background. Moreover, we gave a semi-quantitative evaluation of the signal intensity. Thus, we distinguished two gel formulations loading the fluorophore rhodamine B (called GEL RHO and GEL SLN-RHO). The two formulations of gels, one of which containing solid lipid nanoparticles (GEL RHO-SLN), were administered on skin explants incubated in a bioreactor, and the penetration was evaluated at different time points (2 and 6 hours). Cryostatic sections of skin samples were observed with confocal laser scanning microscopy, and a spectrofluorometric analysis was performed. Significantly higher signal intensity in the samples administered with SLN-RHO GEL, with a preferential accumulation in the hair bulbs, was found. Reaching also the deeper layers of the hair shaft after 6 hours, the solid lipid nanoparticles thickened with polymer represent a suitable drug delivery system for transcutaneous administration.

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来源期刊
European Journal of Histochemistry
European Journal of Histochemistry 生物-细胞生物学
CiteScore
3.70
自引率
5.00%
发文量
47
审稿时长
3 months
期刊介绍: The Journal publishes original papers concerning investigations by histochemical and immunohistochemical methods, and performed with the aid of light, super-resolution and electron microscopy, cytometry and imaging techniques. Coverage extends to: functional cell and tissue biology in animals and plants; cell differentiation and death; cell-cell interaction and molecular trafficking; biology of cell development and senescence; nerve and muscle cell biology; cellular basis of diseases. The histochemical approach is nowadays essentially aimed at locating molecules in the very place where they exert their biological roles, and at describing dynamically specific chemical activities in living cells. Basic research on cell functional organization is essential for understanding the mechanisms underlying major biological processes such as differentiation, the control of tissue homeostasis, and the regulation of normal and tumor cell growth. Even more than in the past, the European Journal of Histochemistry, as a journal of functional cytology, represents the venue where cell scientists may present and discuss their original results, technical improvements and theories.
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