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Trends Immunol. 2020 Jun;41(6):481-492. doi: 10.1016/j.it.2020.04.006. Epub 2020 Apr 30.
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Splenic Ly6Chi monocytes are critical players in dystrophic muscle injury and repair.脾脏 Ly6Chi 单核细胞是肌肉营养不良性损伤和修复的关键参与者。
JCI Insight. 2020 Jan 30;5(2):130807. doi: 10.1172/jci.insight.130807.
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The SINE Compound KPT-350 Blocks Dystrophic Pathologies in DMD Zebrafish and Mice.SINE 化合物 KPT-350 可阻断 DMD 斑马鱼和小鼠的肌肉病理。
Mol Ther. 2020 Jan 8;28(1):189-201. doi: 10.1016/j.ymthe.2019.08.016. Epub 2019 Sep 3.
4
Optimized protocols for isolation, fixation, and flow cytometric characterization of leukocytes in ischemic hearts.优化缺血心脏中白细胞分离、固定和流式细胞术鉴定的方案。
Am J Physiol Heart Circ Physiol. 2019 Sep 1;317(3):H658-H666. doi: 10.1152/ajpheart.00137.2019. Epub 2019 Aug 2.
5
Inflammation-induced fibrosis in skeletal muscle of female carriers of Duchenne muscular dystrophy.炎症诱导的杜氏肌营养不良症女性携带者骨骼肌纤维化。
Neuromuscul Disord. 2019 Jul;29(7):487-496. doi: 10.1016/j.nmd.2019.05.003. Epub 2019 May 10.
6
Dystrophin deficiency promotes leukocyte recruitment in mdx mice.肌营养不良蛋白缺失促进 mdx 小鼠白细胞募集。
Pediatr Res. 2019 Aug;86(2):188-194. doi: 10.1038/s41390-019-0427-3. Epub 2019 May 15.
7
Dysfunctional and Proinflammatory Regulatory T-Lymphocytes Are Essential for Adverse Cardiac Remodeling in Ischemic Cardiomyopathy.功能失调和促炎调节性 T 淋巴细胞是缺血性心肌病不良心脏重构所必需的。
Circulation. 2019 Jan 8;139(2):206-221. doi: 10.1161/CIRCULATIONAHA.118.036065.
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Tissue Resident CCR2- and CCR2+ Cardiac Macrophages Differentially Orchestrate Monocyte Recruitment and Fate Specification Following Myocardial Injury.组织驻留的 CCR2-和 CCR2+心脏巨噬细胞在心肌损伤后通过不同的方式募集单核细胞并决定其命运。
Circ Res. 2019 Jan 18;124(2):263-278. doi: 10.1161/CIRCRESAHA.118.314028.
9
CXCR1 differentiates F4/80 monocytes into pro-inflammatory F4/80 macrophages in the liver.CXCR1 将 F4/80 单核细胞分化为肝脏中的促炎 F4/80 巨噬细胞。
Sci Rep. 2018 Oct 10;8(1):15076. doi: 10.1038/s41598-018-33440-9.
10
Immunobiology of Inherited Muscular Dystrophies.遗传性肌肉萎缩症的免疫生物学。
Compr Physiol. 2018 Sep 14;8(4):1313-1356. doi: 10.1002/cphy.c170052.

肌肉萎缩症中的早期炎症在肢体和呼吸肌肉之间存在差异,并随疾病严重程度而增加。

Early Inflammation in Muscular Dystrophy Differs between Limb and Respiratory Muscles and Increases with Dystrophic Severity.

机构信息

Department of Physiology and Cell Biology, College of Medicine, The Ohio State University, Columbus, Ohio.

Department of Biological Chemistry and Pharmacology, College of Medicine, The Ohio State University, Columbus, Ohio.

出版信息

Am J Pathol. 2021 Apr;191(4):730-747. doi: 10.1016/j.ajpath.2021.01.008. Epub 2021 Jan 23.

DOI:10.1016/j.ajpath.2021.01.008
PMID:33497702
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8147105/
Abstract

Duchenne muscular dystrophy (DMD) is a genetic, degenerative, striated muscle disease exacerbated by chronic inflammation. Mdx mice in the genotypic DMD model poorly represent immune-mediated pathology observed in patients. Improved understanding of innate immunity in dystrophic muscles is required to develop specific anti-inflammatory treatments. Here, inflammation in mdx mice and the more fibrotic utrn;mdx Het model was comprehensively investigated. Unbiased analysis showed that mdx and Het mice contain increased levels of numerous chemokines and cytokines, with further increased in Het mice. Chemokine and chemokine receptor gene expression levels were dramatically increased in 4-week-old dystrophic quadriceps muscles, and to a lesser extent in diaphragm during the early injury phase, and had a small but consistent increase at 8 and 20 weeks. An optimized direct immune cell isolation method prevented loss of up to 90% of macrophages with density-dependent centrifugation previously used for mdx flow cytometry. Het quadriceps contain higher proportions of neutrophils and infiltrating monocytes than mdx, and higher percentages of F4/80, but lower percentages of F4/80 cells and patrolling monocytes compared with Het diaphragms. These differences may restrict regenerative potential of dystrophic diaphragms, increasing pathologic severity. Fibrotic and inflammatory gene expression levels are higher in myeloid cells isolated from Het compared with mdx quadriceps, supporting Het mice may represent an improved model for testing therapeutic manipulation of inflammation in DMD.

摘要

杜氏肌营养不良症(DMD)是一种遗传性、退行性、横纹肌疾病,其病情恶化与慢性炎症有关。在基因 DMD 模型中,mdx 小鼠并不能很好地代表患者中观察到的免疫介导的病理。为了开发特定的抗炎治疗方法,需要更好地了解营养不良肌肉中的先天免疫。在这里,全面研究了 mdx 小鼠和纤维化程度更高的 utrn;mdx Het 模型中的炎症。非偏见分析表明,mdx 和 Het 小鼠中存在许多趋化因子和细胞因子水平升高,且 Het 小鼠中的水平进一步升高。在 4 周龄的营养不良性四头肌中,趋化因子和趋化因子受体基因表达水平显著增加,在早期损伤阶段,膈肌中的表达水平略有增加,但在 8 周和 20 周时略有增加。一种优化的直接免疫细胞分离方法,可防止使用以前用于 mdx 流式细胞术的密度依赖性离心法损失多达 90%的巨噬细胞。Het 四头肌比 mdx 中含有更高比例的中性粒细胞和浸润的单核细胞,以及更高比例的 F4/80,但与 Het 膈肌相比,F4/80 细胞和巡逻单核细胞的比例较低。这些差异可能会限制营养不良膈肌的再生潜力,增加病理严重程度。与 mdx 四头肌相比,从 Het 中分离的髓样细胞中的纤维化和炎症基因表达水平更高,这支持 Het 小鼠可能代表一种改进的模型,用于测试 DMD 中炎症的治疗干预。