scholarly journals Platelet membrane-camouflaged silver metal-organic framework drug system against infections caused by methicillin-resistant Staphylococcus aureus

2021 ◽  
Vol 19 (1) ◽  
Author(s):  
Rong Huang ◽  
Guang-Qing Cai ◽  
Jian Li ◽  
Xi-Sheng Li ◽  
Hai-Ting Liu ◽  
...  

Abstract Background Due to the intelligent survival strategy and self-preservation of methicillin-resistant Staphylococcus aureus (MRSA), many antibiotics are ineffective in treating MRSA infections. Nano-drug delivery systems have emerged as a new method to overcome this barrier. The aim of this study was to construct a novel nano-drug delivery system for the treatment of MRSA infection, and to evaluate the therapeutic effect and biotoxicity of this system. We prepared a nano silver metal-organic framework using 2-methylimidazole as ligand and silver nitrate as ion provider. Vancomycin (Vanc) was loaded with Ag-MOF, and nano-sized platelet vesicles were prepared to encapsulate Ag-MOF-Vanc, thus forming the novel platelet membrane-camouflaged nanoparticles PLT@Ag-MOF-Vanc. Results The synthesized Ag-MOF particles had uniform size and shape of radiating corona. The mean nanoparticle size and zeta potential of PLT@Ag-MOF-Vanc were 148 nm and − 25.6 mV, respectively. The encapsulation efficiency (EE) and loading efficiency (LE) of vancomycin were 81.0 and 64.7 %, respectively. PLT@Ag-MOF-Vanc was shown to be a pH-responsive nano-drug delivery system with good biocompatibility. Ag-MOF had a good inhibitory effect on the growth of three common clinical strains (Escherichia coli, Pseudomonas aeruginosa, and S. aureus). PLT@Ag-MOF-Vanc showed better antibacterial activity against common clinical strains in vitro than free vancomycin. PLT@Ag-MOF-Vanc killed MRSA through multiple approaches, including interfering with the metabolism of bacteria, catalyzing reactive oxygen species production, destroying the integrity of cell membrane, and inhibiting biofilm formation. Due to the encapsulation of the platelet membrane, PLT@Ag-MOF-Vanc can bind to the surface of the MRSA bacteria and the sites of MRSA infection. PLT@Ag-MOF-Vanc had a good anti-infective effect in mouse MRSA pneumonia model, which was significantly superior to free vancomycin, and has no obvious toxicity. Conclusions PLT@Ag-MOF-Vanc is a novel effective targeted drug delivery system, which is expected to be used safely in anti-infective therapy of MRSA. Graphic abstract

Nanoscale ◽  
2015 ◽  
Vol 7 (38) ◽  
pp. 16061-16070 ◽  
Author(s):  
Xiao-Gang Wang ◽  
Zhi-Yue Dong ◽  
Hong Cheng ◽  
Shuang-Shuang Wan ◽  
Wei-Hai Chen ◽  
...  

2018 ◽  
Vol 6 (47) ◽  
pp. 7898-7907 ◽  
Author(s):  
Qiu-ge Zhao ◽  
Jing Wang ◽  
Yu-peng Zhang ◽  
Jing Zhang ◽  
An-na Tang ◽  
...  

A ZnO-gated porMOF-AS1411 nanosystem was prepared and successfully used for drug delivery and synergistic bimodal cancer therapy.


Author(s):  
Leire Celaya Azcoaga ◽  
Arkaitz Fidalgo-Marijuan ◽  
Roberto Fernández de Luis

Sare metal-organikoetan (MOF, metal-organic framework ingelesez) oinarritutako farmakoen liberazio kontrolaturako erabiltzen diren sistemak (DDS, drug delivery system ingelesez) orain arte erabilitako sistema tradizionalek aurkezten dituzten mugak gainditzeko gai dira. Izan ere, haien izaera hibridoa dela eta, bai sistema ezorganiko tradizionalek zein organikoek aurkezten dituzten abantailak batzeko gai dira, hauen desabantailak murriztuz. Lan honetan, DDSak sortzeko kontuan hartu beharreko ezaugarriak azaldu eta gero, MOF sareek DDS gisa erabiltzeko aurkezten dituzten ezaugarri nabarmengarrienak aipatuko dira. Azkenik, MOF egituretan biomolekulen atxikipen eta/edo askapen kontrolatua lortzeko erabiltzen diren bost funtzionalizazio estrategia nagusiak aztertuko dira.


2013 ◽  
Vol 829 ◽  
pp. 247-250 ◽  
Author(s):  
Negar Motakef-Kazemi ◽  
Seyed Abbas Shojaosadati ◽  
Ali Morsali

Porous metal organic framework (MOF) {Zn2(1,4-bdc)2(dabco)}n synthesized under solvothermal conditions. The MOF was used as the carrier matrices for drug delivery system. The ibuprofen as analgesic and anti-inflammatory drug with 0.6 nm molecule size as a model was entrapped into this new carrier with pores distribution of 1.85 nm. The ibuprofen loading efficiency was obtained by thermogravimetric analysis. The ibuprofen loading efficiency of 22% (w/w) was obtained for this MOF. The entrapped ibuprofen was released over several days by soaking the sample in the simulated body fluid (pH 7.4) at 37 °C. The ibuprofen concentrations were analyzed using UV-vis Spectrophotometer at a wavelength of 260 nm. The result of release reveals that this {Zn2(1,4-bdc)2(dabco)}n is suitable as drug delivery system.


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