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高度纯化的贻贝粘附蛋白,以确保体内应用的生物安全性。

Highly purified mussel adhesive protein to secure biosafety for in vivo applications.

作者信息

Choi Bong-Hyuk, Cheong Hogyun, Jo Yun Kee, Bahn So Yeong, Seo Jeong Hyun, Cha Hyung Joon

机构信息

Department of Chemical Engineering, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

Microb Cell Fact. 2014 Apr 11;13(1):52. doi: 10.1186/1475-2859-13-52.

Abstract

BACKGROUND

Unique adhesive and biocompatibility properties of mussel adhesive proteins (MAPs) are known for their great potential in many tissue engineering and biomedical applications. Previously, it was successfully demonstrated that redesigned hybrid type MAP, fp-151, mass-produced in Gram-negative bacterium Escherichia coli, could be utilized as a promising adhesive biomaterial. However, purification of recombinant fp-151 has been unsatisfactory due to its adhesive nature and polarity which make separation of contaminants (especially, lipopolysaccharide, a toxic Gram-negative cell membrane component) very difficult.

RESULTS

In the present work, we devised a high resolution purification approach to secure safety standards of recombinant fp-151 for the successful use in in vivo applications. Undesirable impurities were remarkably eliminated as going through sequential steps including treatment with multivalent ion and chelating agent for cell membrane washing, mechanical cell disruption, non-ionic surfactant treatment for isolated inclusion body washing, acid extraction of washed inclusion body, and ion exchange chromatography purification of acid extracted sample. Through various analyses, such as high performance liquid chromatographic purity assay, limulus amoebocyte lysate endotoxin assay, and in vitro mouse macrophage cell tests on inflammation, viability, cytotoxicity, and apoptosis, we confirmed the biological safety of bacterial-derived purified recombinant fp-151.

CONCLUSIONS

Through this purification design, recombinant fp-151 achieved 99.90% protein purity and 99.91% endotoxin reduction that nearly no inflammation response was observed in in vitro experiments. Thus, the highly purified recombinant MAP would be successfully used as a safety-secured in vivo bioadhesive for tissue engineering and biomedical applications.

摘要

背景

贻贝粘附蛋白(MAPs)独特的粘附和生物相容性特性在许多组织工程和生物医学应用中具有巨大潜力。此前,已成功证明在革兰氏阴性细菌大肠杆菌中大量生产的重新设计的杂合型MAP,即fp-151,可作为一种有前景的粘附生物材料。然而,由于其粘附性质和极性,重组fp-151的纯化一直不尽人意,这使得污染物(尤其是脂多糖,一种有毒的革兰氏阴性细胞膜成分)的分离非常困难。

结果

在本研究中,我们设计了一种高分辨率纯化方法,以确保重组fp-151的安全标准,从而成功用于体内应用。通过多价离子和螯合剂处理进行细胞膜洗涤、机械细胞破碎、非离子表面活性剂处理用于分离的包涵体洗涤、洗涤后的包涵体酸提取以及酸提取样品的离子交换色谱纯化等一系列步骤,显著去除了不良杂质。通过各种分析,如高效液相色谱纯度测定、鲎试剂内毒素测定以及体外小鼠巨噬细胞的炎症、活力、细胞毒性和凋亡测试,我们证实了细菌来源的纯化重组fp-151的生物安全性。

结论

通过这种纯化设计,重组fp-151的蛋白质纯度达到99.90%,内毒素减少99.91%,在体外实验中几乎未观察到炎症反应。因此,高度纯化的重组MAP将成功用作组织工程和生物医学应用中安全可靠的体内生物粘合剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e9c/3989845/cda44bb24b3d/1475-2859-13-52-1.jpg

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