正五聚蛋白3与肺部感染相关性研究新进展
Recent New Progress in Research on the Correlation between Pentraxin 3 and Pulmonary Infection
DOI: 10.12677/ACM.2022.1281079, PDF,   
作者: 董艳芳:延安大学,榆林市第一医院,陕西 榆林
关键词: PTX3肺部感染先天免疫肺损伤Pentraxin 3 Pulmonary Infection Congenital Immunity Injury of Lungs
摘要: 肺作为人体最大的呼吸器官与外界进行气体交换,可直接与病原体及其他有害刺激性气体接触。肺部感染作为呼吸系统常见病、多发病,近些年其发病率及死亡率上升趋势显著。可溶性识别分子正五聚蛋白3 (PTX3)是早期发现的一种急性期反应蛋白,是天然免疫反应中体液反应的重要组成部分,是机体抵御外界微生物入侵的第一道防线,在预防肺部感染中发挥重要作用。近年来也有研究显示,PTX3在肺部感染治疗中发挥一定作用。本文将对PTX3在肺部感染研究中新进展作一综述。
Abstract: As the largest respiratory organ in the human body, the lungs exchange gas with the outside world and can directly contact pathogens and other harmful irritating gases. Pulmonary infection is a common and frequently-occurring disease of the respiratory system, and its morbidity and mortal-ity have increased significantly in recent years. The soluble recognition molecule Pentraxin 3 (PTX3) is an acute phase response protein discovered early. It is an important part of the humoral response in the natural immune response and the body’s first line of defense against the invasion of external microorganisms, playing an important role in infection. In recent years, studies have also shown that PTX3 plays a role in the treatment of pulmonary infections. This article will review the new progress of PTX3 in pulmonary infection research.
文章引用:董艳芳. 正五聚蛋白3与肺部感染相关性研究新进展[J]. 临床医学进展, 2022, 12(8): 7479-7484. https://doi.org/10.12677/ACM.2022.1281079

参考文献

[1] Lee, G.W., Goodman, A.R., Lee, T.H., et al. (1994) Relationship of TSG-14 Protein to the Pentraxin Family of Major Acute Phase Proteins. The Journal of Immunology, 153, 3700-3707.
[2] Breviario, F., D’Aniello, E.M., Golay, J., et al. (1992) Interleukin-1-Inducible Genes in Endothelial Cells. Cloning of a New Gene Related to C-Reactive Protein and Serum Amyloid P Component. Biological Chemistry, 267, 22190-22197. [Google Scholar] [CrossRef
[3] 彭婉君, 赵彬彬, 武婧, 等. 可溶性识别分子PTX3的研究进展[J]. 中国比较医学杂志, 2020, 30(1): 115-121.
[4] Imamura, M., Kawasaki, T., Savchenko, A.S., et al. (2007) Lipopolysaccharide Induced Expression of Pentraxin 3 in Human Neutrophils and Monocyte-Derived Macrophages. Cellular Immunology, 248, 86-94. [Google Scholar] [CrossRef] [PubMed]
[5] Jaillon, S., Peri, G., Delneste, Y., et al. (2007) The Humoral Pattern Recognition Receptor PTX3 Is Stored in Neutrophil Granules and Localizes in Extracellular Traps. Journal of Experimental Medicine, 204, 793-804. [Google Scholar] [CrossRef] [PubMed]
[6] Bottazzi, B., Bastone, A., Doni, A., et al. (2006) The Long Pentraxin PTX3 as a Link among Innate Immunity, Inflammation, and Female Fertility. Journal of Leukocyte Biology, 79, 909-912. [Google Scholar] [CrossRef] [PubMed]
[7] Kopp, A., Strobel, S., Tortajada, A., et al. (2012) Atypical Hemolytic Uremic Syndrome-Associated Variants and Autoantibodies Impair Binding of Factor h and Factor h-Related Protein 1 to Pentraxin 3. The Journal of Immunology, 189, 1858-1867. [Google Scholar] [CrossRef] [PubMed]
[8] Garlanda, C., Bottazzi, B., Magrini, E., et al. (2018) PTX3, a Hu-moral Pattern Recognition Molecule, in Innate Immunity, Tissue Repair, and Cancer. Physiological Reviews, 98, 623-639. [Google Scholar] [CrossRef] [PubMed]
[9] Bottazzi, B., Doni, A., Garlanda, C., et al. (2010) An Integrated View of Humoral Innate Immunity: Pentraxins as a Paradigm. Annual Review of Immunology, 28, 157-183. [Google Scholar] [CrossRef] [PubMed]
[10] Lech, M., Römmele, C., Gröbmayr, R., et al. (2013) Endogenous and Exogenous Pentraxin-3 Limits Postischemic Acute and Chronic Kidney Injury. Kidney International, 83, 647-661. [Google Scholar] [CrossRef] [PubMed]
[11] Chorny, A., Casas-Recasens, S., Sintes, J., et al. (2017) Correc-tion: The Soluble Pattern Recognition Receptor PTX3 Links Humoral Innate and Adaptive Immune Responses by Help-ing Marginal Zone B Cells. Journal of Experimental Medicine, 214, 1559. [Google Scholar] [CrossRef] [PubMed]
[12] Koh, S.H., Shin, S.G., Andrade, M.J., et al. (2017) Long Pentraxin PTX3 Mediates Acute Inflammatory Responses against Pneumococcal Infection. Biochemical and Biophysical Research Communications, 493, 671-676. [Google Scholar] [CrossRef] [PubMed]
[13] Asgari, F., Supino, D., Parente, R., et al. (2021) The Long Pen-traxin PTX3 Controls Klebsiella Pneumoniae Severe Infection. Frontiers in Immunology, 12, Article ID: 666198. [Google Scholar] [CrossRef] [PubMed]
[14] Soares, A.C., Souza, D.G., Pinho, V., et al. (2006) Dual Function of the Long Pentraxin PTX3 in Resistance against Pulmonary Infection with Klebsiella Pneumoniae in Transgenic Mice. Microbes and Infection, 8, 1321-1329. [Google Scholar] [CrossRef] [PubMed]
[15] Ciancarella, V., Lembo-Fazio, L., Paciello, I., et al. (2018) Role of a Fluid-Phase PRR in Fighting an Intracellular Pathogen: PTX3 in Shigella Infection. PLOS Pathogens, 14, e1007469. [Google Scholar] [CrossRef] [PubMed]
[16] Schaeffer, E.M. (2015) Re: The Humoral Pattern Recognition Molecule PTX3 Is a Key Component of Innate Immunity against Urinary Tract Infection. The Journal of Urology, 193, 151-152. [Google Scholar] [CrossRef] [PubMed]
[17] Garlanda, C., Hirsch, E., Bozza, S., et al. (2002) Non-Redundant Role of the Long Pentraxin PTX3 in Anti-Fungal Innate Immune Response. Nature, 420, 182-186. [Google Scholar] [CrossRef] [PubMed]
[18] Marra, E., Sousa, V., Gaziano, R., et al. (2014) Efficacy of PTX3 and Posaconazole Combination in a Rat Model of Invasive Pulmonary Aspergillosis. Antimicrobial Agents and Chemothera-py, 58, 6284-6286. [Google Scholar] [CrossRef
[19] Ma, Y.J., Doni, A., Hummelshøj, T., et al. (2009) Synergy between Ficolin-2 and Pentraxin 3 Boosts Innate Immune Recognition and Complement Deposition. Biological Chemistry, 284, 28263-28275. [Google Scholar] [CrossRef
[20] Diniz, S.N., Nomizo, R., Cisalpino, P.S., et al. (2004) PTX3 Func-tion as an Opsonin for the Dectin-1-Dependent Internalization of Zymosan by Macrophages. Journal of Leukocyte Biolo-gy, 75, 649-656. [Google Scholar] [CrossRef] [PubMed]
[21] Tang, T., Dai, Y., Zeng, Q., et al. (2020) Pentraxin-3 Polymorphisms and Pulmonary Fungal Disease in Non-Neutropenic Patients. Annals of Translational Medicine, 8, 1142. [Google Scholar] [CrossRef] [PubMed]
[22] Qin, S., Chen, X., Gao, M., et al. (2017) Prenatal Exposure to Lipopol-ysaccharide Induces PTX3 Expression and Results in Obesity in Mouse Offspring. Inflammation, 40, 1847-1861. [Google Scholar] [CrossRef] [PubMed]
[23] Schirinzi, A., Pesce, F., Laterza, R., et al. (2021) Pentraxin 3: Po-tential Prognostic Role in SARS-CoV-2 Patients Admitted to the Emergency Department. Infect, 82, 84-123. [Google Scholar] [CrossRef] [PubMed]
[24] Brunetta, E., Folci, M., Bottazzi, B., et al. (2021) Macrophage Ex-pression and Prognostic Significance of the Long Pentraxin PTX3 in COVID-19. Nature Immunology, 22, 19-24. [Google Scholar] [CrossRef] [PubMed]
[25] Naqvi, A.A.T., Fatima, K., Mohammad, T., et al. (2020) Insights into SARS-CoV-2 Genome, Structure, Evolution, Pathogenesis and Therapies: Structural Genomics Approach. BBA Molecular Basis of Disease, 1866, Article ID: 165878. [Google Scholar] [CrossRef] [PubMed]
[26] Varga, Z., Flammer, A.J., Steiger, P., et al. (2020) Endothelial Cell Infection and Endotheliitis in COVID-19. The Lancet, 395, 1417-1418. [Google Scholar] [CrossRef
[27] Tong, M., Xiong, Y., Zhu, C., et al. (2021) Elevated Serum Pentraxin-3 Levels Is Positively Correlated to Disease Severity and Coagulopathy in COVID-19 Patients. Mediterranean Journal of Hematology and Infectious Diseases, 13, e2021015. [Google Scholar] [CrossRef] [PubMed]
[28] Incalza, M.A., D’Oria, R., Natalicchio, A., et al. (2018) Oxidative Stress and Reactive Oxygen Species in Endothelial Dysfunction Associated with Cardiovascular and Metabolic Diseases. Vascular Pharmacology, 100, 1-19. [Google Scholar] [CrossRef] [PubMed]
[29] Lam, F.W., Da, Q., Guillory, B., et al. (2018) Recombinant Human Vimentin Binds to P-Selectin and Blocks Neutrophil Capture and Rolling on Platelets and Endothelium. The Journal of Immunology, 200, 1718-1726. [Google Scholar] [CrossRef] [PubMed]
[30] Napoleone, E., di Santo, A., Peri, G., et al. (2004) The Long Pen-traxin PTX3 Up-Regulates Tissue Factor in Activated Monocytes: Another Link between Inflammation and Clotting Ac-tivation. Journal of Leukocyte Biology, 76, 203-209. [Google Scholar] [CrossRef] [PubMed]
[31] Kasuda, S., Sakurai, Y., Tatsumi, K., et al. (2019) Enhancement of Tissue Factor Expression in Monocyte-Derived Dendritic Cells by Pentraxin 3 and Its Modulation by C1 Esterase Inhibitor. In-ternational Archives of Allergy and Immunology, 179, 158-164. [Google Scholar] [CrossRef] [PubMed]
[32] Cecconi, M., Forni, G., Mantovani, A., et al. (2020) Ten Things We Learned about COVID-19. Intensive Care Medicine, 46, 1590-1593. [Google Scholar] [CrossRef] [PubMed]