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结合纳米材料与发育途径以设计心脏再生新疗法:先进疗法的搏动之心

Combining Nanomaterials and Developmental Pathways to Design New Treatments for Cardiac Regeneration: The Pulsing Heart of Advanced Therapies.

作者信息

Cassani Marco, Fernandes Soraia, Vrbsky Jan, Ergir Ece, Cavalieri Francesca, Forte Giancarlo

机构信息

International Clinical Research Center, St Anne's University Hospital, Brno, Czechia.

Faculty of Technical Chemistry, Institute of Applied Synthetic Chemistry and Institute of Chemical Technologies and Analytics, Vienna University of Technology, Vienna, Austria.

出版信息

Front Bioeng Biotechnol. 2020 Apr 24;8:323. doi: 10.3389/fbioe.2020.00323. eCollection 2020.

Abstract

The research for heart therapies is challenged by the limited intrinsic regenerative capacity of the adult heart. Moreover, it has been hampered by the poor results obtained by tissue engineering and regenerative medicine attempts at generating functional beating constructs able to integrate with the host tissue. For this reason, organ transplantation remains the elective treatment for end-stage heart failure, while novel strategies aiming to promote cardiac regeneration or repair lag behind. The recent discovery that adult cardiomyocytes can be ectopically induced to enter the cell cycle and proliferate by a combination of microRNAs and cardioprotective drugs, like anti-oxidant, anti-inflammatory, anti-coagulants and anti-platelets agents, fueled the quest for new strategies suited to foster cardiac repair. While proposing a revolutionary approach for heart regeneration, these studies raised serious issues regarding the efficient controlled delivery of the therapeutic cargo, as well as its timely removal or metabolic inactivation from the site of action. Especially, there is need for innovative treatment because of evidence of severe side effects caused by pleiotropic drugs. Biocompatible nanoparticles possess unique physico-chemical properties that have been extensively exploited for overcoming the limitations of standard medical therapies. Researchers have put great efforts into the optimization of the nanoparticles synthesis and functionalization, to control their interactions with the biological milieu and use as a viable alternative to traditional approaches. Nanoparticles can be used for diagnosis and deliver therapies in a personalized and targeted fashion. Regarding the treatment of cardiovascular diseases, nanoparticles-based strategies have provided very promising outcomes, in preclinical studies, during the last years. Efficient encapsulation of a large variety of cargos, specific release at the desired site and improvement of cardiac function are some of the main achievements reached so far by nanoparticle-based treatments in animal models. This work offers an overview on the recent nanomedical applications for cardiac regeneration and highlights how the versatility of nanomaterials can be combined with the newest molecular biology discoveries to advance cardiac regeneration therapies.

摘要

成人心脏固有的再生能力有限,这给心脏治疗研究带来了挑战。此外,组织工程和再生医学在生成能够与宿主组织整合的功能性搏动结构方面取得的效果不佳,也阻碍了该领域的发展。因此,器官移植仍然是终末期心力衰竭的首选治疗方法,而旨在促进心脏再生或修复的新策略则相对滞后。最近有研究发现,通过 microRNA 与心脏保护药物(如抗氧化剂、抗炎药、抗凝血剂和抗血小板药物)联合使用,可以异位诱导成人心肌细胞进入细胞周期并增殖,这激发了人们对适合促进心脏修复的新策略的探索。这些研究虽然为心脏再生提出了一种革命性的方法,但也引发了一些严重问题,比如治疗药物的有效控制递送,以及如何及时将其从作用部位清除或使其代谢失活。特别是,由于多效性药物会产生严重副作用,因此需要创新治疗方法。生物相容性纳米颗粒具有独特的物理化学性质,已被广泛用于克服标准医学疗法的局限性。研究人员在优化纳米颗粒的合成和功能化方面付出了巨大努力,以控制它们与生物环境的相互作用,并将其作为传统方法的可行替代方案。纳米颗粒可用于个性化和靶向诊断及治疗。在过去几年的临床前研究中,基于纳米颗粒的策略在心血管疾病治疗方面取得了非常有前景的成果。高效封装各种药物、在所需部位特异性释放以及改善心脏功能,是目前基于纳米颗粒的治疗方法在动物模型中取得的一些主要成果。本文综述了纳米医学在心脏再生方面的最新应用,并强调了如何将纳米材料的多功能性与最新的分子生物学发现相结合,以推进心脏再生治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec50/7193099/6af84770abdb/fbioe-08-00323-g001.jpg

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