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Endostatin inhibits the proliferation and migration of B16 cells by inducing macrophage polarity to M1‑type.内皮抑素通过诱导巨噬细胞极性向 M1 型转变来抑制 B16 细胞的增殖和迁移。
Mol Med Rep. 2021 Dec;24(6). doi: 10.3892/mmr.2021.12481. Epub 2021 Oct 11.
2
Nuclear IL-33 restrains the early conversion of fibroblasts to an extracellular matrix-secreting phenotype.核内 IL-33 抑制成纤维细胞向细胞外基质分泌表型的早期转化。
Sci Rep. 2021 Jan 8;11(1):108. doi: 10.1038/s41598-020-80509-5.
3
CD28 is expressed by macrophages with anti-inflammatory potential and limits their T-cell activating capacity.CD28 表达于具有抗炎潜能的巨噬细胞表面,并限制其 T 细胞的激活能力。
Eur J Immunol. 2021 Apr;51(4):824-834. doi: 10.1002/eji.202048806. Epub 2020 Nov 24.
4
Fibroblast-derived IL-33 is dispensable for lymph node homeostasis but critical for CD8 T-cell responses to acute and chronic viral infection.成纤维细胞衍生的 IL-33 对于淋巴结稳态不是必需的,但对于 CD8 T 细胞对急性和慢性病毒感染的反应是至关重要的。
Eur J Immunol. 2021 Jan;51(1):76-90. doi: 10.1002/eji.201948413. Epub 2020 Aug 5.
5
SHISA3, an antagonist of the Wnt/β-catenin signaling, is epigenetically silenced and its ectopic expression suppresses growth in breast cancer.SHISA3 是 Wnt/β-连环蛋白信号通路的拮抗剂,其表达受表观遗传沉默调控,异位表达可抑制乳腺癌的生长。
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Graft IL-33 regulates infiltrating macrophages to protect against chronic rejection.移植物 IL-33 调节浸润巨噬细胞以防止慢性排斥反应。
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7
Microglial Remodeling of the Extracellular Matrix Promotes Synapse Plasticity.小胶质细胞重塑细胞外基质促进突触可塑性。
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8
Lipidomics and RNA sequencing reveal a novel subpopulation of nanovesicle within extracellular matrix biomaterials.脂质组学和 RNA 测序揭示细胞外基质生物材料中纳米囊泡的一个新亚群。
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9
Matrix bound nanovesicle-associated IL-33 activates a pro-remodeling macrophage phenotype via a non-canonical, ST2-independent pathway.基质结合的纳米囊泡相关白细胞介素-33通过非经典、不依赖ST2的途径激活促重塑巨噬细胞表型。
J Immunol Regen Med. 2019 Mar;3:26-35. doi: 10.1016/j.regen.2019.01.001. Epub 2019 Feb 1.
10
Macrophages as a Source and Recipient of Wnt Signals.巨噬细胞作为 Wnt 信号的来源和接收者。
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基质结合纳米囊泡相关白细胞介素-33 对巨噬细胞的转录组调控。

Transcriptomic Regulation of Macrophages by Matrix-Bound Nanovesicle-Associated Interleukin-33.

机构信息

Department of Bioengineering, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Tissue Eng Part A. 2022 Oct;28(19-20):867-878. doi: 10.1089/ten.TEA.2022.0006. Epub 2022 Aug 25.

DOI:10.1089/ten.TEA.2022.0006
PMID:35770892
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9634988/
Abstract

The innate immune response, particularly the phenotype of responding macrophages, has significant clinical implications in the remodeling outcome following implantation of biomaterials and engineered tissues. In general, facilitation of an anti-inflammatory (M2-like) phenotype is associated with tissue repair and favorable outcomes, whereas pro-inflammatory (M1-like) activation can contribute to chronic inflammation and a classic foreign body response. Biologic scaffolds composed of extracellular matrix (ECM) and, more recently, matrix-bound nanovesicles (MBV) embedded within the ECM are known to direct macrophages toward an anti-inflammatory phenotype and stimulate a constructive remodeling outcome. The mechanisms of MBV-mediated macrophage activation are not fully understood, but interleukin-33 (IL-33) within the MBV appears critical for M2-like activation. Previous work has shown that IL-33 is encapsulated within the lumen of MBV and stimulates phenotypical changes in macrophages independent of its canonical surface receptor stimulation-2 (ST2). In the present study, we used next-generation RNA sequencing to determine the gene signature of macrophages following exposure to MBV with and without intraluminal IL-33. MBV-associated IL-33 instructed an anti-inflammatory phenotype in both wild-type and macrophages by upregulating M2-like and downregulating M1-like genes. The repertoire of genes regulated by ST2-independent IL-33 signaling were broadly related to the inflammatory response and crosstalk between cells of both the innate and adaptive immune systems. These results signify the importance of the MBV intraluminal protein IL-33 in stimulating a pro-remodeling M2-like phenotype in macrophages and provides guidance for the designing of next-generation biomaterials and tissue engineering strategies. Impact statement The phenotype of responding macrophages is predictive of the downstream remodeling response to an implanted biomaterial. The clinical impact of macrophage phenotype has motivated studies to investigate the factors that regulate macrophage activation. Matrix-bound nanovesicles (MBV) embedded within the extracellular matrix direct macrophages toward an anti-inflammatory (M2)-like phenotype that is indicative of a favorable remodeling response. Although the mechanisms of MBV-mediated macrophage activation are not fully understood, the intraluminal protein interleukin-33 (IL-33) is clearly a contributing signaling molecule. The present study identifies those genes regulated by MBV-associated IL-33 that promote a pro-remodeling M2-like macrophage activation state and can guide future therapies in regenerative medicine.

摘要

固有免疫反应,特别是反应性巨噬细胞的表型,在生物材料和工程组织植入后的重塑结果中有重要的临床意义。一般来说,促进抗炎(M2 样)表型与组织修复和良好的结果相关,而促炎(M1 样)激活可导致慢性炎症和典型的异物反应。由细胞外基质 (ECM) 组成的生物支架,以及最近,嵌入 ECM 中的基质结合纳米囊泡 (MBV),已知可使巨噬细胞向抗炎表型转变,并刺激构建性重塑结果。MBV 介导的巨噬细胞激活的机制尚未完全了解,但 MBV 中的白细胞介素 33 (IL-33) 似乎对 M2 样激活至关重要。先前的工作表明,IL-33 被包裹在 MBV 的腔室内,并独立于其经典表面受体刺激 2 (ST2) 刺激巨噬细胞表型变化。在本研究中,我们使用下一代 RNA 测序来确定暴露于 MBV 及其内腔 IL-33 后巨噬细胞的基因特征。MBV 相关的 IL-33 通过上调 M2 样和下调 M1 样基因,在野生型和 巨噬细胞中指导抗炎表型。由 ST2 非依赖性 IL-33 信号调节的基因谱广泛与固有和适应性免疫系统细胞之间的炎症反应和串扰有关。这些结果表明 MBV 内腔蛋白 IL-33 在刺激巨噬细胞中促重塑的 M2 样表型方面的重要性,并为设计下一代生物材料和组织工程策略提供了指导。