非病毒基因治疗中细胞相容性金属有机框架的探索:沸石咪唑酸框架的相关性[j]

Q3 Biochemistry, Genetics and Molecular Biology
A. Poddar , S. Pyreddy , S.A. Polash , C.M. Doherty , R. Shukla
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引用次数: 4

摘要

金属有机框架(mof)是一种新兴的纳米材料,在生物医学基因治疗中得到了成功的应用。最常见的生物相容性mof是锌基zif、锆基uio和铁基mil。然而,尽管应用越来越多,但缺乏比较研究来强调确定此类mof有效传递基因的关键因素。在此,我们评估了UiO-66、MIL-88B和ZIF-8在基因治疗递送方面的潜力;揭示了ZIF-8的相对重要性。细胞毒性试验不足以选择理想的基因传递载体。从材料选择的角度来看,MOF支架在原位合成过程中包裹基因的能力、洗涤等后处理以及基因装载效率等合成条件是决定MOF优劣的关键因素。在生理条件下快速原位合成、成功的基因装载和低浓度要求使ZIF mof成为基因传递载体。对细胞生理、代谢和结构的影响揭示了传递系统的中性;对促炎和抗炎细胞因子的相关影响提示免疫调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A quest for cytocompatible metal organic frameworks in non-viral gene therapy: Relevance of zeolitic imidazolate framework-8

A quest for cytocompatible metal organic frameworks in non-viral gene therapy: Relevance of zeolitic imidazolate framework-8

A quest for cytocompatible metal organic frameworks in non-viral gene therapy: Relevance of zeolitic imidazolate framework-8

A quest for cytocompatible metal organic frameworks in non-viral gene therapy: Relevance of zeolitic imidazolate framework-8

Metal-organic frameworks (MOFs) are an emerging group of nanomaterials for successful biomedical applications in gene therapy. The most commonly biocompatible MOFs are zinc-based ZIFs, zirconium-based UiOs, and iron-based MILs. However, despite increasing applications, a comparative study to underscore the critical factors for determining effective gene delivery by such MOFs is lacking. Herein, we evaluate the potential of UiO-66 and MIL-88B and ZIF-8 for gene therapeutics delivery; revealing the comparative importance of ZIF-8. Cytotoxicity assays proved insufficient for selecting the ideal gene delivery MOF vehicle. Synthesis conditions such as ability of the MOF scaffold to envelop the gene during in-situ synthesis, post-treatment such as washing, and gene loading efficiency proved to be the critical factors in determining the favourable MOF from the material selection perspective. Rapid in-situ synthesis under physiological conditions, successful gene loading, and low concentration requirements favour ZIF MOFs as gene delivery vehicles. Impact on cellular physiology, metabolism, and architecture revealed neutrality of the delivery system; and relative effects on pro-inflammatory and anti-inflammatory cytokines suggest immunomodulatory impact.

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