The potential mechanisms and treatment effects of stem cell-derived exosomes in cardiac reengineering

被引:0
作者
Wang, Yibin [1 ]
Shi, Xiulian [2 ]
机构
[1] Hangzhou Ninth Peoples Hosp, Dept Cardiol, Hangzhou 311225, Peoples R China
[2] Chunan First Peoples Hosp, Emergency Dept, Hangzhou 311700, Peoples R China
关键词
exosome; extracellular vesicles; stem cells; cardiac regeneration; MYOCARDIAL-INFARCTION; ENDOTHELIAL-CELLS; CARDIOMYOCYTE APOPTOSIS; PHYSICOCHEMICAL PROPERTIES; DRUG-DELIVERY; ANGIOGENESIS; PROTEIN; PROLIFERATION; STRATEGIES; PRESERVE;
D O I
10.1088/1361-6528/ad53d1
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Exosomes are extracellular vesicles of diverse compositions that are secreted by numerous cell types. Exosomes contain significant bioactive components, including lipids, proteins, mRNA, and miRNA. Exosomes play an important role in regulating cellular signaling and trafficking under both normal physiological and pathological circumstances. A multitude of factors, including thermal stress, ribosomal stress, endoplasmic reticulum stress, and oxidative stress influence the concentrations of exosomal mRNA, miRNA, proteins, and lipids. It has been stated that exosomes derived from stem cells (SCs) modulate a range of stresses by preventing or fostering cell balance. Exosomes derived from SCs facilitate recovery by facilitating cross-cellular communication via the transmission of information in the form of proteins, lipids, and other components. For this reason, exosomes are used as biomarkers to diagnose a wide variety of diseases. The focus of this review is the bioengineering of artificial exosomal cargoes. This process encompasses the control and transportation of particular exosomal cargoes, including but not limited to small molecules, recombinant proteins, immune modulators, and therapeutic medications. Therapeutic approaches of this nature have the potential to deliver therapeutic medications precisely to the intended site for the cure of a variety of disorders. Notably, our attention has been directed towards the therapeutic implementations of exosomes derived from SCs in the cure of cardiovascular ailments, including but not limited to ischemic heart disease, myocardial infarction, sepsis, heart failure, cardiomyopathy, and cardiac fibrosis. In general, researchers employ two methodologies when it comes to exosomal bioengineering. This review aims to explain the function of exosomes derived from SCs in the regulation of stress and present a novel therapeutic approach for cardiovascular disorders.
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页数:14
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共 125 条
  • [1] Bio-Inspired Nanocarriers Derived from Stem Cells and Their Extracellular Vesicles for Targeted Drug Delivery
    Abudurexiti, Munire
    Zhao, Yue
    Wang, Xiaoling
    Han, Lu
    Liu, Tianqing
    Wang, Chengwei
    Yuan, Zhixiang
    [J]. PHARMACEUTICS, 2023, 15 (07)
  • [2] Delivery of siRNA to the mouse brain by systemic injection of targeted exosomes
    Alvarez-Erviti, Lydia
    Seow, Yiqi
    Yin, HaiFang
    Betts, Corinne
    Lakhal, Samira
    Wood, Matthew J. A.
    [J]. NATURE BIOTECHNOLOGY, 2011, 29 (04) : 341 - U179
  • [3] Systemic Infusion of Expanded CD133+ Cells and Expanded CD133+ Cell-Derived EVs for the Treatment of Ischemic Cardiomyopathy in a Rat Model of AMI
    Angulski, Addeli B. B.
    Capriglione, Luiz Guilherme A.
    Barchiki, Fabiane
    Brofman, Paulo
    Stiumamiglio, Marco A.
    Senegaglia, Alexandra C.
    Correa, Alejandro
    [J]. STEM CELLS INTERNATIONAL, 2019, 2019
  • [4] Cardiac fibroblast-derived microRNA passenger strand-enriched exosomes mediate cardiomyocyte hypertrophy
    Bang, Claudia
    Batkai, Sandor
    Dangwal, Seema
    Gupta, Shashi Kumar
    Foinquinos, Ariana
    Holzmann, Angelika
    Just, Annette
    Remke, Janet
    Zimmer, Karina
    Zeug, Andre
    Ponimaskin, Evgeni
    Schmiedl, Andreas
    Yin, Xiaoke
    Mayr, Manuel
    Halder, Rashi
    Fischer, Andre
    Engelhardt, Stefan
    Wei, Yuanyuan
    Schober, Andreas
    Fiedler, Jan
    Thum, Thomas
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2014, 124 (05) : 2136 - 2146
  • [5] Bone-a-Petite: Engineering Exosomes towards Bone, Osteochondral, and Cartilage Repair
    Bei, Ho Pan
    Hung, Pak Ming
    Yeung, Hau Lam
    Wang, Shuqi
    Zhao, Xin
    [J]. SMALL, 2021, 17 (50)
  • [6] Trehalose prevents aggregation of exosomes and cryodamage
    Bosch, Steffi
    de Beaurepaire, Laurence
    Allard, Marie
    Mosser, Mathilde
    Heichette, Claire
    Chretien, Denis
    Jegou, Dominique
    Bach, Jean-Marie
    [J]. SCIENTIFIC REPORTS, 2016, 6
  • [7] LKB1, a protein kinase regulating cell proliferation and polarity
    Boudeau, J
    Sapkota, G
    Alessi, DR
    [J]. FEBS LETTERS, 2003, 546 (01) : 159 - 165
  • [8] Activated CD4+ T cells-derived exosomal miR-142-3p boosts post-ischemic ventricular remodeling by activating myofibrobiast
    Cai, Lidong
    Chao, Gong
    Li, Weifeng
    Zhu, Jumo
    Li, Fangfang
    Qi, Baozhen
    Wei, Yong
    Chen, Songwen
    Zhou, Genqing
    Lu, Xiaofeng
    Xu, Juan
    Wu, Xiaoyu
    Fan, Guangjian
    Li, Jun
    Liu, Shaowen
    [J]. AGING-US, 2020, 12 (08): : 7380 - 7396
  • [9] Current concepts on endothelial stem cells definition, location, and markers
    Chambers, Sarah E. J.
    Pathak, Varun
    Pedrini, Edoardo
    Soret, Lou
    Gendron, Nicolas
    Guerin, Coralie L.
    Stitt, Alan W.
    Smadja, David M.
    Medina, Reinhold J.
    [J]. STEM CELLS TRANSLATIONAL MEDICINE, 2021, 10 : S54 - S61
  • [10] Preservation of exosomes at room temperature using lyophilization
    Charoenviriyakul, Chonlada
    Takahashi, Yuki
    Nishikawa, Makiya
    Takakura, Yoshinobu
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2018, 553 (1-2) : 1 - 7