Self‐assembled dextrin nanogel as protein carrier: Controlled release and biological activity of IL‐10

纳米凝胶 生物相容性 化学 体内 糊精 乳酸脱氢酶 细胞毒性 控制释放 生物物理学 生物化学 药物输送 体外 药理学 生物 有机化学 淀粉 生物技术
作者
Vera Carvalho,Pedro Castanheira,Pedro Madureira,Sílvia A. Ferreira,Carla Costa,João Paulo Teixeira,Carlos Faro,Manuel Vilanova,Miguel Gama
出处
期刊:Biotechnology and Bioengineering [Wiley]
卷期号:108 (8): 1977-1986 被引量:22
标识
DOI:10.1002/bit.23125
摘要

Abstract Interleukin‐10 (IL‐10) is an anti‐inflammatory cytokine, which active form is a non‐covalent homodimer. Given the potential of IL‐10 for application in various medical conditions, it is essential to develop systems for its effective delivery. In previous work, it has been shown that a dextrin nanogel effectively incorporated and stabilized rIL‐10, enabling its release over time. In this work, the delivery system based on dextrin nanogels was further analyzed. The biocompatibility of the nanogel was comprehensively analyzed, through cytotoxicity (lactate dehydrogenase (LDH) release, MTS, Live, and Dead) and genotoxicity (comet) assays. The release profile of rIL‐10 and its biological activity were evaluated in vivo, using C57BL/6 mice. Although able to maintain a stable concentration of IL‐10 for at least 4 h in mice serum, the amount of protein released was rather low. Despite this, the amount of rIL‐10 released from the complex was biologically active inhibiting TNF‐α production, in vivo, by LPS‐challenged mice. In spite of the significant stabilization achieved using the nanogel, rIL‐10 still denatures rather quickly. An additional effort is thus necessary to develop an effective delivery system for this cytokine, able to release active protein over longer periods of time. Nevertheless, the good biocompatibility, the protein stabilization effect and the ability to perform as a carrier with controlled release suggest that self‐assembled dextrin nanogels may be useful protein delivery systems. Biotechnol. Bioeng. 2011; 108:1977–1986. © 2011 Wiley Periodicals, Inc.
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