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转录组学方法在心肌细胞-生物材料相互作用中的研究进展:综述

Transcriptomic Approaches to Cardiomyocyte-Biomaterial Interactions: A Review.

机构信息

Department of Bioengineering, University of Texas at Arlington, Arlington, Texas 76019, United States.

Department of Biomedical Engineering, University of North Texas, Denton, Texas 76207, United States.

出版信息

ACS Biomater Sci Eng. 2024 Jul 8;10(7):4175-4194. doi: 10.1021/acsbiomaterials.4c00303. Epub 2024 Jun 27.

Abstract

Biomaterials, essential for supporting, enhancing, and repairing damaged tissues, play a critical role in various medical applications. This Review focuses on the interaction of biomaterials and cardiomyocytes, emphasizing the unique significance of transcriptomic approaches in understanding their interactions, which are pivotal in cardiac bioengineering and regenerative medicine. Transcriptomic approaches serve as powerful tools to investigate how cardiomyocytes respond to biomaterials, shedding light on the gene expression patterns, regulatory pathways, and cellular processes involved in these interactions. Emerging technologies such as bulk RNA-seq, single-cell RNA-seq, single-nucleus RNA-seq, and spatial transcriptomics offer promising avenues for more precise and in-depth investigations. Longitudinal studies, pathway analyses, and machine learning techniques further improve the ability to explore the complex regulatory mechanisms involved. This review also discusses the challenges and opportunities of utilizing transcriptomic techniques in cardiomyocyte-biomaterial research. Although there are ongoing challenges such as costs, cell size limitation, sample differences, and complex analytical process, there exist exciting prospects in comprehensive gene expression analyses, biomaterial design, cardiac disease treatment, and drug testing. These multimodal methodologies have the capacity to deepen our understanding of the intricate interaction network between cardiomyocytes and biomaterials, potentially revolutionizing cardiac research with the aim of promoting heart health, and they are also promising for studying interactions between biomaterials and other cell types.

摘要

生物材料对于支持、增强和修复受损组织至关重要,在各种医学应用中发挥着关键作用。本综述重点关注生物材料与心肌细胞的相互作用,强调转录组学方法在理解它们相互作用方面的独特意义,这在心脏生物工程和再生医学中至关重要。转录组学方法是研究心肌细胞对生物材料反应的有力工具,揭示了这些相互作用中涉及的基因表达模式、调控途径和细胞过程。新兴技术,如批量 RNA-seq、单细胞 RNA-seq、单核 RNA-seq 和空间转录组学,为更精确和深入的研究提供了有前途的途径。纵向研究、途径分析和机器学习技术进一步提高了探索复杂调控机制的能力。本综述还讨论了在心肌细胞-生物材料研究中利用转录组学技术的挑战和机遇。尽管存在成本、细胞大小限制、样本差异和复杂分析过程等挑战,但在全面的基因表达分析、生物材料设计、心脏疾病治疗和药物测试方面仍存在令人兴奋的前景。这些多模态方法有能力加深我们对心肌细胞和生物材料之间复杂相互作用网络的理解,有可能促进心脏研究,以促进心脏健康,并且对于研究生物材料与其他细胞类型的相互作用也很有前途。

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