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ISS/Collaborative Research: Studying the Effects of Microgravity on 3D Cardiac Organoid Cultures

ISS/Collaborative Research: Studying the Effects of Microgravity on 3D Cardiac Organoid Cultures
ISS/合作研究:研究微重力对 3D 心脏类器官培养的影响
批准号:
1949909
负责人:
Munmun Chattopadhyay
金额:
$25.69万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-01 至 2024-08-31

项目摘要

项目成果

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中文摘要
翻译
在太空飞行中暴露在微重力下会导致心脏萎缩,这是一种心脏组织质量的减少,导致心脏功能的衰弱性变化。心脏萎缩也可能出现在患有癌症和其他疾病的患者身上,包括肌肉萎缩症、糖尿病、败血症和心力衰竭。由于对心脏萎缩的了解尚不充分,本项目旨在提高对心脏萎缩进展过程中细胞和组织功能的基本理解。进行这项研究的是一个跨学科和多机构的团队,由生物医学工程师和科学家组成,他们在心脏组织生物打印和细胞和分子生物学方面具有互补的专业知识。利用国际空间站(ISS)的微重力环境诱导萎缩,研究小组将使用生物打印的心脏组织来研究组织功能的变化。所获得的知识将有助于更好地理解心脏萎缩是如何以及为什么发生的,这可能会导致改进的治疗策略。该项目还将为K12学生举办一个关于国际空间站组织工程的讲习班,并为医科学生、实习生和住院医生举办一次研讨会,讨论将研究从地球实验室转移到太空的好处和挑战。为这个项目确立了两个目标。首先,比较和对比生物3D打印心脏类器官在微重力和地球重力下的形态、活力和改变的能量代谢。其次,研究3D生物打印心脏类器官在微重力下的表观遗传变化,并评估与地球重力相比,这些变化如何影响心脏萎缩的发展。具体来说,该团队将设计并验证一种芯片设计,用于培养心肌细胞、成纤维细胞和内皮细胞,以研究在微重力暴露下导致细胞损伤的潜在生物和信号介质,从而导致可能的心脏萎缩。研究结果可能表明,表观遗传事件可能是微重力的机制基础之一。诱导与心脏萎缩相关的基因表达变化,可能有助于制定对策,以防止微重力或其他诱导萎缩的病理的不良影响。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Exposure to microgravity during spaceflight is known to lead to cardiac atrophy, which is a reduction in tissue mass of the heart that causes debilitating changes in heart function. Cardiac atrophy can also present itself in patients suffering from cancer and other diseases, including muscular dystrophies, diabetes, sepsis and heart failure. Because cardiac atrophy is not well understood, this project seeks to improve fundamental understanding of cell and tissue function during progression of cardiac atrophy. Undertaking this research is an interdisciplinary and multi-institutional team comprised of biomedical engineers and scientists with complementary expertise in cardiac tissue bioprinting and cellular and molecular biology. Using the micro-gravity environment of the International Space Station (ISS) to induce atrophy, the team will use bioprinted heart tissue to study changes in tissue function. The knowledge gained will support an improved understanding of how and why cardiac atrophy occurs, which may lead to improved treatment strategies. The project will also develop a workshop for K12 students around tissue engineering on the international space station as well as implement a seminar for medical students, interns, and residents about the benefits and challenges of transitioning research from an Earth-based laboratory into space.Two objectives have been established for this project. First, to compare and contrast the morphology, viability, and altered energy metabolism in 3D bioprinted cardiac organoids under microgravity and Earth's gravity. Second, to study the epigenetic changes in 3D bioprinted cardiac organoids under microgravity and assess how these changes may affect the development of cardiac atrophy when compared to Earth's gravity. Specifically, the team will engineer and validate a chip design for culturing of cardiomyocytes, fibroblasts and endothelial cells to investigate underlying biological and signaling mediators responsible for damage to cells during microgravity exposure, leading to possible cardiac atrophy. Findings may suggest that epigenetic events could be one of the mechanistic bases for microgravity‐induced gene expression changes related to cardiac atrophy and may facilitate the development of countermeasures to prevent the adverse effects of microgravity or other atrophy-inducing pathologies.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(5)
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科研奖励(0)
会议论文
DOI: 10.1016/j.acthis.2020.151624
发表时间: 2020-10
期刊: Acta histochemica
影响因子: 2.5
作者: [Alonzo M, Delgado M, Cleetus C, Kumar SA, Thakur V, Chattopadhyay M, Joddar B]
通讯作者: Joddar B
A 3D Bioprinted Human Cardiac Cell Platform to Model the Pathophysiology of Diabetes
用于模拟糖尿病病理生理学的 3D 生物打印人类心肌细胞平台
DOI: 10.1161/res.127.suppl_1.465
发表时间: 2020
期刊: Circulation research
影响因子: 20.1
作者: [Joddar, B, AnilKumar, S, Alonzo, M, Thakur, V, Chattopadhyay, M]
通讯作者: Chattopadhyay, M
DOI: 10.34133/2021/9864212
发表时间: 2021-12-28
期刊: CYBORG AND BIONIC SYSTEMS
影响因子: --
作者: [El Khoury, Raven, Nagiah, Naveen, Joddar, Binata]
通讯作者: Joddar, Binata
ISS/Collaborative Research: Studying the Effects of Microgravity on 3D Cardiac Organoid Cultures
海外基金