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Monocytes present age-related changes in phospholipid concentration and decreased energy metabolism.单核细胞呈现出与年龄相关的磷脂浓度变化以及能量代谢降低。
Aging Cell. 2020 Apr;19(4):e13127. doi: 10.1111/acel.13127. Epub 2020 Feb 27.
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Cellular and Molecular Links between Autoimmunity and Lipid Metabolism.自身免疫与脂代谢之间的细胞和分子联系。
Mol Cells. 2019 Nov 30;42(11):747-754. doi: 10.14348/molcells.2019.0196.
3
Altered Lipid Metabolism in Blood Mononuclear Cells of Psoriatic Patients Indicates Differential Changes in Psoriasis Vulgaris and Psoriatic Arthritis.银屑病患者血液单核细胞中的脂质代谢改变表明寻常型银屑病和银屑病关节炎的差异变化。
Int J Mol Sci. 2019 Aug 30;20(17):4249. doi: 10.3390/ijms20174249.
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Lp-PLA2 as a promising predictor of comorbidities in patients with severe psoriasis.脂蛋白磷脂酶A2作为重度银屑病患者合并症的一种有前景的预测指标。
J Dermatolog Treat. 2020 Aug;31(5):524-530. doi: 10.1080/09546634.2019.1606887. Epub 2019 May 15.
5
Inhibition of the Interleukin-36 Pathway for the Treatment of Generalized Pustular Psoriasis.抑制白细胞介素-36通路治疗泛发性脓疱型银屑病。
N Engl J Med. 2019 Mar 7;380(10):981-983. doi: 10.1056/NEJMc1811317.
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Evaluating Serum Levels of IL-33, IL-36, IL-37 and Gene Expression of IL-37 in Patients with Psoriasis Vulgaris.寻常型银屑病患者血清白细胞介素-33、白细胞介素-36、白细胞介素-37水平及白细胞介素-37基因表达的评估
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xCell: digitally portraying the tissue cellular heterogeneity landscape.xCell:数字化描绘组织细胞异质性景观。
Genome Biol. 2017 Nov 15;18(1):220. doi: 10.1186/s13059-017-1349-1.
8
Myeloid but not plasmacytoid blood DCs possess Th1 polarizing and Th1/Th17 recruiting capacity in psoriasis.在银屑病中,髓系而非浆细胞样血 DC 具有 Th1 极化和募集 Th1/Th17 的能力。
Immunol Lett. 2017 Sep;189:109-113. doi: 10.1016/j.imlet.2017.04.005. Epub 2017 Apr 13.
9
Psoriatic T cells recognize neolipid antigens generated by mast cell phospholipase delivered by exosomes and presented by CD1a.银屑病T细胞识别由肥大细胞磷脂酶产生、通过外泌体传递并由CD1a呈递的新脂质抗原。
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10
Intestinal Microbiota Promotes Psoriasis-Like Skin Inflammation by Enhancing Th17 Response.肠道微生物群通过增强Th17反应促进银屑病样皮肤炎症。
PLoS One. 2016 Jul 19;11(7):e0159539. doi: 10.1371/journal.pone.0159539. eCollection 2016.

抑制磷脂酶可通过调节炎症来抑制银屑病的进展。

Inhibition of phospholipases suppresses progression of psoriasis through modulation of inflammation.

机构信息

Department of Dermatology, Shanghai Skin Disease Hospital, Tongji University School of Medicine, Shanghai 200443, China.

Cinoasia Institute, Shanghai 200438, China.

出版信息

Exp Biol Med (Maywood). 2021 Jun;246(11):1253-1262. doi: 10.1177/1535370221993424. Epub 2021 Feb 27.

DOI:10.1177/1535370221993424
PMID:33641447
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8371307/
Abstract

Abnormal lipid metabolism is regarded as a crucial cause of psoriasis. The specific mechanism of how phospholipase PLA2G4B mediates local immune dysfunction and skin lesions remains unclear. The aim of this study was to explore the mechanisms of anti-psoriasis and immune suppression effect by inhibiting PLA2G4B in psoriasis progression. We successfully transfected si-PLA2G4B in a murine keratinocyte cell-line PAM212 to verify the effect of progression by PLA2G4B. The Imiquimod psoriasis mouse model was then successfully constructed, followed by emulsion wrapped PLA2G4B-siRNA applied to the skin lesions. The phenotype, pathology, immunofluorescence staining of PLA2G4B, IL17, CD3, and CD1b, and bulk transcriptome analysis were performed to decipher the effect and mechanism of si-PLA2G4B. Interfering with PLA2G4B significantly inhibited the proliferation and migration of PAM212. The interference of PLA2G4B showed a therapeutic effect on psoriasis, comparable to that of betamethasone. The phenotype and pathology revealed reduced keratinocytes in the si-PLA2G4B group compared to the model mice. Immunofluorescence showed that CD1b, CD3+ T cells, and IL17 were suppressed in the skin lesions. RNA-seq and deconvolution revealed that immune cells such as myeloid dendritic cell and T cell CD8+ naive were inactivated. Th17 reduce the release of inflammatory factors such as IL17 and IL36. Pathway analysis revealed the potential therapeutic mechanism involved in the inhibition of sphingolipid or ceramide secretion. This study verified the anti-psoriatic effect of using si-PLA2G4B. The immune response was alleviated after administration. This phospholipase inhibition-based therapy sheds light on the pharmaceutical potential against psoriasis.

摘要

异常的脂质代谢被认为是银屑病的一个关键原因。磷脂酶 PLA2G4B 如何介导局部免疫功能障碍和皮肤损伤的具体机制尚不清楚。本研究旨在探讨在银屑病进展过程中抑制 PLA2G4B 抗银屑病和免疫抑制的作用机制。我们成功地在鼠角质形成细胞系 PAM212 中转染了 si-PLA2G4B,以验证 PLA2G4B 对进展的影响。然后成功构建了咪喹莫特银屑病小鼠模型,随后将包裹在乳液中的 PLA2G4B-siRNA 应用于皮肤损伤部位。进行了表型、病理学、PLA2G4B、IL17、CD3 和 CD1b 的免疫荧光染色以及批量转录组分析,以破译 si-PLA2G4B 的作用和机制。干扰 PLA2G4B 显著抑制了 PAM212 的增殖和迁移。干扰 PLA2G4B 对银屑病有治疗作用,与倍他米松相当。表型和病理学显示,与模型小鼠相比,si-PLA2G4B 组角质形成细胞减少。免疫荧光显示,si-PLA2G4B 组皮肤损伤处的 CD1b、CD3+T 细胞和 IL17 受到抑制。RNA-seq 和去卷积显示,髓样树突状细胞和 T 细胞 CD8+幼稚等免疫细胞失活。Th17 减少了 IL17 和 IL36 等炎症因子的释放。通路分析显示了抑制鞘脂或神经酰胺分泌所涉及的潜在治疗机制。本研究验证了使用 si-PLA2G4B 的抗银屑病作用。给药后免疫反应得到缓解。这种基于抑制磷脂酶的治疗为治疗银屑病提供了新的思路。