干细胞、细胞疗法和生物工程在肺生物学和疾病中的应用 2023 年。

IF 3.6 2区 医学 Q1 PHYSIOLOGY American journal of physiology. Lung cellular and molecular physiology Pub Date : 2024-09-01 Epub Date: 2024-05-21 DOI:10.1152/ajplung.00052.2024
Robert E Hynds, Chelsea M Magin, Laertis Ikonomou, Yael Aschner, Michael F Beers, Janette K Burgess, Rebecca L Heise, Patrick S Hume, Anna D Krasnodembskaya, Shirley H J Mei, Alexander V Misharin, Jin-Ah Park, Susan D Reynolds, Daniel J Tschumperlin, Alicia E Tanneberger, Sriram Vaidyanathan, Christopher M Waters, Patricia J Zettler, Daniel J Weiss, Amy L Ryan
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引用次数: 0

摘要

利用干细胞或生物工程组织修复和再生病变肺部是治疗各种肺部疾病和危重病的一种令人兴奋的方法。在过去十年中,越来越多的临床前模型证据表明,通常不在肺部居住的细胞可用于调节损伤后的免疫反应,但将这些有前景的研究成果转化为临床应用一直面临挑战。与此同时,生物工程研究也在激增,这些研究调查了人工和无细胞肺基质作为三维肺或气道再生支架的使用情况,最近还尝试在大型动物模型中进行移植。这些研究与涉及干细胞、诱导多能干细胞衍生物和/或细胞疗法的研究相结合,是一个前景广阔、发展迅速的研究领域。在开展这些研究的同时,我们对内源性肺干细胞和/或祖细胞在肺发育过程中产生以及在肺损伤后参与正常和病理重塑的分子和细胞事件的了解也有了显著提高。在2023年干细胞、细胞疗法和生物工程在肺生物学和疾病中的应用大会上,科学专题讨论会的选择反映了这些领域最前沿的进展。会议重点讨论了 "组学 "技术与功能的结合、免疫细胞对再生的影响以及细胞外基质在再生中的作用。基础科学研究对提高肺再生的基本认识和设计创新性转化研究的必要性在整个会议期间都得到了加强。
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Stem cells, cell therapies, and bioengineering in lung biology and diseases 2023.

Repair and regeneration of a diseased lung using stem cells or bioengineered tissues is an exciting therapeutic approach for a variety of lung diseases and critical illnesses. Over the past decade, increasing evidence from preclinical models suggests that mesenchymal stromal cells, which are not normally resident in the lung, can be used to modulate immune responses after injury, but there have been challenges in translating these promising findings to the clinic. In parallel, there has been a surge in bioengineering studies investigating the use of artificial and acellular lung matrices as scaffolds for three-dimensional lung or airway regeneration, with some recent attempts of transplantation in large animal models. The combination of these studies with those involving stem cells, induced pluripotent stem cell derivatives, and/or cell therapies is a promising and rapidly developing research area. These studies have been further paralleled by significant increases in our understanding of the molecular and cellular events by which endogenous lung stem and/or progenitor cells arise during lung development and participate in normal and pathological remodeling after lung injury. For the 2023 Stem Cells, Cell Therapies, and Bioengineering in Lung Biology and Diseases Conference, scientific symposia were chosen to reflect the most cutting-edge advances in these fields. Sessions focused on the integration of "omics" technologies with function, the influence of immune cells on regeneration, and the role of the extracellular matrix in regeneration. The necessity for basic science studies to enhance fundamental understanding of lung regeneration and to design innovative translational studies was reinforced throughout the conference.

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来源期刊
CiteScore
9.20
自引率
4.10%
发文量
146
审稿时长
2 months
期刊介绍: The American Journal of Physiology-Lung Cellular and Molecular Physiology publishes original research covering the broad scope of molecular, cellular, and integrative aspects of normal and abnormal function of cells and components of the respiratory system. Areas of interest include conducting airways, pulmonary circulation, lung endothelial and epithelial cells, the pleura, neuroendocrine and immunologic cells in the lung, neural cells involved in control of breathing, and cells of the diaphragm and thoracic muscles. The processes to be covered in the Journal include gas-exchange, metabolic control at the cellular level, intracellular signaling, gene expression, genomics, macromolecules and their turnover, cell-cell and cell-matrix interactions, cell motility, secretory mechanisms, membrane function, surfactant, matrix components, mucus and lining materials, lung defenses, macrophage function, transport of salt, water and protein, development and differentiation of the respiratory system, and response to the environment.
期刊最新文献
Disruption of immune responses by type 1 diabetes exacerbates SARS-CoV-2 mediated lung injury. Eosinophils prevent diet-induced airway hyperresponsiveness in mice on a high-fat diet. Expression of Semaphorin3E/PlexinD1 in human airway smooth muscle cells of patients with COPD. Identification of FGFR4 as a regulator of myofibroblast differentiation in pulmonary fibrosis. Inference of alveolar capillary network connectivity from blood flow dynamics.
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