抑制感染诱导的血管通透性可调节斑马鱼体内马氏分枝杆菌肉芽肿的宿主白细胞募集。

IF 2.7 4区 医学 Q3 IMMUNOLOGY Pathogens and disease Pub Date : 2022-04-29 DOI:10.1093/femspd/ftac009
Julia Y Kam, Tina Cheng, Danielle C Garland, Warwick J Britton, David M Tobin, Stefan H Oehlers
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引用次数: 0

摘要

分枝杆菌肉芽肿的形成涉及严重的基质重塑,包括渗漏、肉芽肿相关血管的生长。这些可渗透的血管有助于分枝杆菌的生长,因为在宿主与分枝杆菌配对的结核病临床前模型中,抗血管生成或血管正常化疗法是有益的宿主导向疗法。我们利用斑马鱼-马氏分枝杆菌感染模型证明,通过抑制血管内皮蛋白酪氨酸磷酸酶(VE-PTP)使血管正常化可减少肉芽肿缺氧,这与缺氧诱导型抗血管生成疗法的效果相反。抑制 VE-PTP 可减少中性粒细胞招募到成体斑马鱼和幼体斑马鱼的肉芽肿,并降低肉芽肿远端外渗的中性粒细胞比例。此外,VE-PTP抑制增加了T细胞在M. marinum肉芽肿中的聚集。我们的研究提供的证据表明,与实体瘤中的效果类似,分枝杆菌感染期间血管正常化会增加病灶中T细胞与中性粒细胞的比例,这可能与保护性免疫有关。
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Inhibition of infection-induced vascular permeability modulates host leukocyte recruitment to Mycobacterium marinum granulomas in zebrafish.

Mycobacterial granuloma formation involves significant stromal remodeling including the growth of leaky, granuloma-associated vasculature. These permeable blood vessels aid mycobacterial growth, as antiangiogenic or vascular normalizing therapies are beneficial host-directed therapies in preclinical models of tuberculosis across host-mycobacterial pairings. Using the zebrafish-Mycobacterium marinum infection model, we demonstrate that vascular normalization by inhibition of vascular endothelial protein tyrosine phosphatase (VE-PTP) decreases granuloma hypoxia, the opposite effect of hypoxia-inducing antiangiogenic therapy. Inhibition of VE-PTP decreased neutrophil recruitment to granulomas in adult and larval zebrafish, and decreased the proportion of neutrophils that extravasated distal to granulomas. Furthermore, VE-PTP inhibition increased the accumulation of T cells at M. marinum granulomas. Our study provides evidence that, similar to the effect in solid tumors, vascular normalization during mycobacterial infection increases the T cell:neutrophil ratio in lesions which may be correlates of protective immunity.

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来源期刊
Pathogens and disease
Pathogens and disease IMMUNOLOGY-INFECTIOUS DISEASES
CiteScore
7.40
自引率
3.00%
发文量
44
期刊介绍: Pathogens and Disease publishes outstanding primary research on hypothesis- and discovery-driven studies on pathogens, host-pathogen interactions, host response to infection and their molecular and cellular correlates. It covers all pathogens – eukaryotes, prokaryotes, and viruses – and includes zoonotic pathogens and experimental translational applications.
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