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无脊椎动物免疫细胞:用于免疫学、发育学和环境研究的复杂且多功能的模型

The Invertebrate Immunocyte: A Complex and Versatile Model for Immunological, Developmental, and Environmental Research.

作者信息

Sacchi Sandro, Malagoli Davide, Franchi Nicola

机构信息

Department of Life Sciences, University of Modena and Reggio Emilia, 41125 Modena, Italy.

National Biodiversity Future Center (NBFC), 90133 Palermo, Italy.

出版信息

Cells. 2024 Dec 19;13(24):2106. doi: 10.3390/cells13242106.

Abstract

The knowledge of comparative and developmental immunobiology has grown over the years and has been strengthened by the contributions of multi-omics research. High-performance microscopy, flow cytometry, scRNA sequencing, and the increased capacity to handle complex data introduced by machine learning have allowed the uncovering of aspects of great complexity and diversity in invertebrate immunocytes, i.e., immune-related circulating cells, which until a few years ago could only be described in terms of morphology and basic cellular functions, such as phagocytosis or enzymatic activity. Today, invertebrate immunocytes are recognized as sophisticated biological entities, involved in host defense, stress response, wound healing, organ regeneration, but also in numerous functional aspects of organismal life not directly related to host defense, such as embryonic development, metamorphosis, and tissue homeostasis. The multiple functions of immunocytes do not always fit the description of invertebrate organisms as simplified biological systems compared to those represented by vertebrates. However, precisely the increasing complexity revealed by immunocytes makes invertebrate organisms increasingly suitable models for addressing biologically significant and specific questions, while continuing to present the undeniable advantages associated with their ethical and economic sustainability.

摘要

多年来,比较与发育免疫生物学的知识不断增长,多组学研究的贡献进一步强化了这一领域。高性能显微镜、流式细胞术、单细胞RNA测序,以及机器学习带来的处理复杂数据能力的提升,使得人们得以揭示无脊椎动物免疫细胞(即与免疫相关的循环细胞)中极为复杂和多样的方面。就在几年前,这些细胞还只能从形态学和基本细胞功能(如吞噬作用或酶活性)的角度进行描述。如今,无脊椎动物免疫细胞被视为复杂的生物实体,它们不仅参与宿主防御、应激反应、伤口愈合和器官再生,还在生物体生命的许多与宿主防御无直接关系的功能方面发挥作用,如胚胎发育、变态发育和组织稳态。与脊椎动物所代表的生物系统相比,免疫细胞的多种功能并不总是符合将无脊椎动物视为简化生物系统的描述。然而,正是免疫细胞所揭示的日益复杂性,使得无脊椎动物越来越适合作为解决具有生物学意义和特定问题的模型,同时继续展现出其在伦理和经济可持续性方面不可否认的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b00/11674123/8104b669cd09/cells-13-02106-g001.jpg

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