Changirwa Diana, Schlechte Jared, McDonald Braedon
Immunology Research Group, University of Calgary, Calgary, AB T2N 4N1, Canada.
Snyder Institute for Chronic Diseases, Cumming School of Medicine, University of Calgary, Calgary, AB T2N 4A1, Canada.
Cancers (Basel). 2021 Oct 23;13(21):5331. doi: 10.3390/cancers13215331.
As key effector cells of the innate immune response, neutrophils are rapidly deployed to sites of inflammation where they deliver a payload of potent effector mechanisms that are essential for host defense against pathogens as well as tissue homeostasis. In addition, neutrophils are central contributors to the pathogenesis of a vast spectrum of inflammatory, degenerative, and neoplastic diseases. As our understanding of neutrophils in health and disease continually expands, so too does our appreciation of their complex and dynamic nature in vivo; from development, maturation, and trafficking to cellular heterogeneity and functional plasticity. Therefore, contemporary neutrophil research relies on multiple complementary methodologies to perform integrated analysis of neutrophil phenotypic heterogeneity, organ- and stimulus-specific trafficking mechanisms, as well as tailored effector functions in vivo. This review discusses established and emerging technologies used to study neutrophils, with a focus on in vivo imaging in animal models, as well as next-generation ex vivo model systems to study mechanisms of neutrophil function. Furthermore, we discuss how high-dimensional single-cell analysis technologies are driving a renaissance in neutrophil biology by redefining our understanding of neutrophil development, heterogeneity, and functional plasticity. Finally, we discuss innovative applications and emerging opportunities to integrate these high-dimensional, multi-modal techniques to deepen our understanding of neutrophils in cancer research and beyond.
作为固有免疫反应的关键效应细胞,中性粒细胞会迅速被部署到炎症部位,在那里它们发挥一系列强大的效应机制,这些机制对于宿主抵御病原体以及维持组织内稳态至关重要。此外,中性粒细胞在多种炎症性、退行性和肿瘤性疾病的发病机制中起着核心作用。随着我们对中性粒细胞在健康和疾病中的认识不断扩展,我们对其在体内复杂且动态的特性的理解也在不断加深;从发育、成熟、运输到细胞异质性和功能可塑性。因此,当代中性粒细胞研究依赖多种互补方法来对中性粒细胞表型异质性、器官和刺激特异性运输机制以及体内特定效应功能进行综合分析。本综述讨论了用于研究中性粒细胞的既定技术和新兴技术,重点是动物模型中的体内成像以及研究中性粒细胞功能机制的下一代体外模型系统。此外,我们讨论了高维单细胞分析技术如何通过重新定义我们对中性粒细胞发育、异质性和功能可塑性的理解,推动中性粒细胞生物学的复兴。最后,我们讨论了整合这些高维、多模态技术的创新应用和新出现的机会,以加深我们对中性粒细胞在癌症研究及其他领域的理解。