Author:
Xu Junjie,Ma Shijiao,Zhang Wei,Jia Lina,Zheng Haolan,Bo Pang,Bai Xue,Sun Hongyan,Qi Lei,Zhang Tongwei,Chen Chuanfang,Li Feng,Arai Fumihito,Tian Jiesheng,Feng Lin
Abstract
Abstract
Background
Magnetosomes (BMPs) are organelles of magnetotactic bacteria (MTB) that are responsible for mineralizing iron to form magnetite. In addition, BMP is an ideal biomaterial that is widely used in bio- and nano-technological applications, such as drug delivery, tumor detection and therapy, and immunodetection. The use of BMPs to create multifunctional nanocomposites would further expand the range of their applications.
Results
In this study, we firstly demonstrate that the extracted BMP can remineralize in vitro when it is exposed to AgNO3 solution, the silver ions (Ag+) were transported into the BMP biomembrane (MM) and mineralized into a silver crystal on one crystal plane of Fe3O4. Resulting in the rapid synthesis of an Ag-Fe3O4 hybrid BMP (BMP-Ag). The synergy between the biomembrane, Fe3O4 crystal, and unmineralized iron enabled the remineralization of BMPs at an Ag+ concentration ≥ 1.0 mg mL−1. The BMP-Ag displayed good biocompatibility and antibacterial activity. At a concentration of 2.0 mg/mL, the BMP-Ag and biomembrane removed Ag-Fe3O4 NPs inhibited the growth of gram-negative and gram-positive bacteria. Thus using BMP-Ag as a wound dressing can effectively enhance the contraction of infected wounds.
Conclusions
This study represents the first successful attempt to remineralize organelles ex vivo, realizing the biosynthesis of hybrid BMP and providing an important advancement in the synthesis technology of multifunctional biological nanocomposites.
Graphical abstract
Funder
China Postdoctoral Science Foundation
National Natural Science Foundation of China
Key Project of Inter-Governmental International Scientific and Technological Innovation Cooperation
Critical Project of Inter-Governmental International Scientific and Technological Innovation Cooperation
Project for Extramural Scientists of State Key Laboratory of Agro-biotechnology
Publisher
Springer Science and Business Media LLC
Subject
Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering
Cited by
7 articles.
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