Development and novel design of clustery graphene oxide formed Conductive Silk hydrogel cell vesicle to repair and routine care of myocardial infarction: Investigation of its biological activity for cell delivery applications

2020 ◽  
Vol 60 ◽  
pp. 102001
Author(s):  
Zhongxia Yuan ◽  
Qingmei Qin ◽  
Min Yuan ◽  
Haixia Wang ◽  
Rui Li
2020 ◽  
Author(s):  
Rui Li ◽  
Na Duan ◽  
Jingjing Guo

Abstract Cell delivery therapy is a talented and hopeful strategic approach to repair the damaged cardiac tissues after myocardial infarction. The biocompatible injectable hydrogel with bioactive nanomaterials with effective self-healing capability has been highly required for the cell delivery and regeneration therapy. In the present study, we have developed the biopolymeric and biocompatible self-healing silk protein hydrogel matrix with graphene oxide nanoformulations as cell delivery vehicles for the treatment of myocardial infarction regeneration. The materials combinations, structural interactions, thermal stability and morphology of the designed hydrogel were investigated and elaborated. To improve therapeutic potential of the hydrogel matrix, growth factor was loaded and investigated its biological activity such as cell survival and cell proliferations properties by using endothelial progenitor cells. Collected, these developed materials are excellent vesicle for cell therapy in myocardial infarction.


2021 ◽  
Author(s):  
Naeime Salandari-Jolge ◽  
Ali A. Ensafi ◽  
Behzad Rezaei

Dipyridamole is a prescribed medication used to treat cardiovascular diseases, angina pectoris, imaging tests for heart patients, and myocardial infarction. Therefore, high selectivity and sensitivity, low cost, and high-performance speed...


2020 ◽  
Vol 229 ◽  
pp. 115516 ◽  
Author(s):  
Xiao Ke ◽  
Mingyan Li ◽  
Xiaoqing Wang ◽  
Jiawen Liang ◽  
Xing Wang ◽  
...  

2020 ◽  
Vol 26 (1) ◽  
pp. 88-99
Author(s):  
Vasileios Sousonis ◽  
Titika Sfakianaki ◽  
Argirios Ntalianis ◽  
Ioannis Nanas ◽  
Christos Kontogiannis ◽  
...  

Background: Allogeneic cardiosphere-derived cells (CDCs) exert cardioprotective effects when administered intracoronarily after reperfusion in animal models of acute myocardial infarction (AMI). The “no-reflow” phenomenon develops rapidly post-reperfusion and may undermine the efficacy of cell therapy, due to poor cell delivery in areas of microvascular obstruction (MVO). We hypothesized that CDC-induced cardioprotection would be enhanced by cell administration prior to reperfusion, when microvasculature is still relatively intact, to facilitate widespread cell delivery within the ischemic area. Methods and Results: We studied 81 farm pigs; 55 completed the specified protocols. A dose-optimization study in infarcted pigs demonstrated that the doses of 5 million and 10 million CDCs are the maximum safe doses that can be administered intracoronarily at 5 minutes prior to and at 5 minutes post-reperfusion, respectively, without aggravating MVO. Quantification of acute cell retention by polymerase chain reaction demonstrated that cell delivery prior to reperfusion resulted in higher cardiac cell retention compared to delivery post-reperfusion. We then performed a randomized, placebo-controlled study to assess the long-term efficacy of intracoronary infusion of 5 million allogeneic CDCs, delivered at 5 minutes prior to reperfusion, in a porcine model of AMI. The CDC therapy resulted in decreased scar size, improved regional systolic function, and attenuation of adverse cardiac remodeling (manifested as preserved global systolic function, preserved end-systolic volume, and decreased interstitial fibrosis) compared to placebo at 30 days post-MI. Conclusions: Dose-optimized intracoronary infusion of allogeneic CDCs prior to reperfusion in a porcine model of AMI is feasible, safe and confers long-term benefits.


RSC Advances ◽  
2019 ◽  
Vol 9 (61) ◽  
pp. 35463-35472 ◽  
Author(s):  
Balaji B. Mulik ◽  
Sambhaji T. Dhumal ◽  
Vijay S. Sapner ◽  
Naziya N. M. A. Rehman ◽  
Prashant P. Dixit ◽  
...  

Electrochemical oxidative activation of ethionamide (ETO) on GO (∼500 nm) confirmed by HRMS and FTIR analysis. The ETO-O (oxidized form) showed enhancement in activity over ETO against Gram negative pathogens (E. aerogenes, S. abony, S. boydii, E. coli).


JAMA ◽  
2014 ◽  
Vol 311 (3) ◽  
pp. 301 ◽  
Author(s):  
Jay H. Traverse ◽  
Timothy D. Henry ◽  
Carl J. Pepine ◽  
James T. Willerson ◽  
Stephen G. Ellis

2009 ◽  
Vol 15 (1) ◽  
pp. 1-14 ◽  
Author(s):  
Heming Wei ◽  
Ting Huay Ooi ◽  
Genevieve Tan ◽  
Sze Yun Lim ◽  
Ling Qian ◽  
...  

2017 ◽  
Vol 5 (1) ◽  
Author(s):  
Todorka G Vladkova ◽  
Iliana A Ivanova ◽  
Anna D Staneva ◽  
Madalina G Albu ◽  
Ahmed S A Shalaby ◽  
...  

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