[1] TRINDADE D, CARVALHO R, MACHADO V, et al. Prevalence of periodontitis in dentate people between 2011 and 2020: A systematic review and meta-analysis of epidemiological studies. J Clin Periodontol. 2023;50(5):604-626.
[2] 张晗,秦亦瑄,韦帝远,等.牙周炎患者种植修复维护治疗依从性的影响因素[J].北京大学学报(医学版),2024,56(1):39-44.
[3] 袁思娆,张亮,刘佳,等.慢性牙周炎与全身系统性疾病关系的研究进展[J].实用临床医学,2023,24(3):122-128+138.
[4] 李兴蕊.糠尿病促进牙龈卟啉单胞菌远端转移的实验研究[D].济南:山东大学,2023.
[5] 姜雨然.多组学联合分析尼古丁对牙周膜干细胞再生功能的作用及机制研究[D].西安:中国人民解放军空军军医大学,2023.
[6] TSAI CY, TANG CY, TAN TS, et al. Subgingival microbiota in individuals with severe chronic periodontitis. J Microbiol Immunol Infect. 2018;51(2):226-234.
[7] GU C, HOU C, ZHANG S. miR-425-5p improves inflammation and septic liver damage through negatively regulating the RIP1-mediated necroptosis. Inflamm Res. 2020;69(3):299-308.
[8] HOLLER N, ZARU R, MICHEAU O, et al. Fas triggers an alternative, caspase-8-independent cell death pathway using the kinase RIP as effector molecule. Nat Immunol. 2000;1(6):489-95.
[9] DEGTEREV A, HUANG Z, BOYCE M, et al. Chemical inhibitor of nonapoptoticcell death with therapeutic potential for ischemic brain injury. Nat Chem Biol. 2005;1(2):112-119.
[10] TSUDA H, NING Z, YAMAGUCHI Y, et al. Programmed cell death and its possible relationship with periodontal disease. J Oral Sci. 2012;54(2):137-149.
[11] PAN W, GU J, XU S, et al. Dietary nitrate improves jaw bone remodelling in zoledronate-treated mice. Cell Prolif. 2023;56(7):e13395.
[12] ZHANG K, CHEN X, ZHOU R, et al. Inhibition of gingival fibroblast necroptosis mediated by RIPK3/MLKL attenuates periodontitis. J Clin Periodontol. 2023; 50(9):1264-1279.
[13] FENG N, HAN X, PENG D, et al. P. gingivalis alters lung microbiota and aggravates disease severity of COPD rats by up-regulating Hsp90α/MLKL. J Oral Microbiol. 2024;16(1):2334588.
[14] 赵英淇. Fas和TNF-α通路在皮质酮和CRH诱导小鼠输卵管上皮细胞凋亡过程中的作用研究[D]. 泰安:山东农业大学,2020.
[15] 宋瑞婧,张欣欣,高飞,等. 加味升降散通过介导RIP1/RIP3/MLKL通路抑制坏死性凋亡减轻糖尿病肾病大鼠肾脏纤维化[J]. 中国实验方剂学杂志,2022,28(17):33-42.
[16] PLACE DE, LEE S, KANNEGANTI TD. PANoptosis in microbial infection. Curr Opin Microbiol. 2021;59:42-49.
[17] 邓愉,曹牛奔,刘笑梦,等.牙龈卟啉单胞菌外膜囊泡对牙周炎影响的研究进展 [J].现代口腔医学杂志,2023,37(5):339-344.
[18] ZHANG JH, DONG Z, CHU L. Hydrogen sulfide induces apoptosis in human periodontium cells. J Periodontal Res. 2010;45(1):71-78.
[19] KE X, LEI L, LI H, et al. Manipulation of necroptosis by Porphyromonas gingivalis in periodontitis development. Mol Immunol. 2016;77:8-13.
[20] DAI X, MA R, JIANG W, et al. Enterococcus faecalis-Induced Macrophage Necroptosis Promotes Refractory Apical Periodontitis. Microbiol Spectr. 2022;10(4):e0104522.
[21] HE J, ZHENG Z, LI S, et al. Identification and assessment of differentially expressed necroptosis long non-coding RNAs associated with periodontitis in human. BMC Oral Health. 2023;23(1):632.
[22] 刘瑞卿,许宏敏,赵岩,等.程序性细胞死亡与感染性疾病的研究进展[J].中国热带医学,2023,23(11):1213-1221.
[23] 徐力,聂柳燕,汪胡燕,等.自身免疫性疾病中程序性细胞死亡因子1及其配体的研究进展[J].中华全科医学,2022,20(5):832-835+843.
[24] BERTHELOOT D, LATZ E, FRANKLIN BS. Necroptosis, pyroptosis and apoptosis: an intricate game of cell death. Cell Mol Immunol. 2021;18(5): 1106-1121.
[25] 王旭东,梁强,周景寰,等.焦亡机制及其在胶质瘤中的作用研究进展[J/OL].国际神经病学神经外科学杂志,1-9[2024-05-09].http://kns.cnki.net/kcms/detail/43.1456.R.20240419.1113.002.html.
[26] BURDETTE BE, ESPARZA AN, ZHU H, et al. Gasdermin D in pyroptosis. Acta Pharm Sin B. 2021;11(9):2768-2782.
[27] LOPEZ R, HUJOEL P, BELIBASAKIS GN. On putative periodontal pathogens: anepidemiological perspective. Virulence. 2015;6(3):249-57.
[28] 张严匀,李易,王贺,等.大鼠牙齿移动过程中Piezo1对压力侧牙周组织中RIP3及MLKL的影响[J].口腔医学,2022,42(10):883-888.
[29] KAY JG, KRAMER JM, VISSER MB. Danger signals in oral cavity-related diseases. J Leukoc Biol. 2019;106(1):193-200.
[30] GONG T, LIU L, JIANG W, et al. DAMP-sensing receptors in sterile inflammation and inflammatory diseases. Nat Rev Immunol. 2020;20(2):95-112.
[31] 胡月,乔春燕,辛颖,等.损伤相关分子模式在牙周炎中的作用[J].免疫学杂志,2016,32(1):85-88.
[32] 陈小梅,于淼,徐向红.损伤相关分子模式在慢加急肝衰竭中的研究进展[J].国际检验医学杂志,2023,44(16):2029-2034.
[33] 潘万旗,张淼,许前磊,等.损伤相关分子模式在艾滋病炎症反应中的作用[J].中国艾滋病性病,2023,29(10):1152-1155.
[34] 李军,姜春云,解紫从,等.基于Toll样受体通路与损伤相关分子模式分子炎症机制探讨扩张型心肌病中医药干预作用[J].河北中医,2023, 45(10):1725-1727+1731.
[35] ANDERSSON U, YANG H, HARRIS H. Extracellular HMGB1 as a therapeutic target in inflammatory diseases. Expert Opin Ther Targets. 2018;22(3):263-277.
[36] ROH JS, SOHN DH. Damage-Associated Molecular Patterns in Inflammatory Diseases. Immune Netw. 2018;18(4):e27.
[37] CREWS FT, FISHER RP, QIN L, et al. HMGB1 neuroimmune signaling and REST-G9a gene repression contribute to ethanol-induced reversible suppression of the cholinergic neuron phenotype. Mol Psychiatry. 2023:10.1038/s41380-023-02160-6.
[38] WANG Z, HE S, XIN L, et al. HMGB1-mediated transcriptional activation of circadian gene TIMELESS contributes to endometrial cancer progression through Wnt-β-catenin pathway. Cell Signal. 2024;116:111045.
[39] 肖帅,禹洁,何杨,等.慢性牙周炎患者牙龈卟啉单胞菌感染与血清HMGB1, IL-1β, IL-6以及牙周临床指标的相关性研究[J].现代生物医学进展,2022,22(5):985-989.
[40] 何龙,云蔓,吴薇薇,等.血清PGE2, HMGB1和CGRP在慢性牙周炎患者中的表达及预测效能[J].分子诊断与治疗杂志,2022,14(7):1242-1245.
[41] YOSHIHARA-HIRATA C, YAMASHIRO K, YAMAMOTO T, et al. Anti-HMGB1 Neutralizing Antibody Attenuates Periodontal Inflammation and Bone Resorption in a Murine Periodontitis Model. Infect Immun. 2018;86(5): e00111-18.
[42] 张端午.RIP3作为细胞凋亡与细胞坏死相互转换的分子开关的发现及机理研究[D].厦门:厦门大学,2009.
[43] PEIXOTO MS, DE OLIVEIRA GALVÃO MF, BATISTUZZO DE MEDEIROS SR. Cell death pathways of particulate matter toxicity. Chemosphere. 2017;188:32-48.
[44] MORIWAKI K, CHAN FK. Necroptosis-independent signaling by the RIP kinases in inflammation. Cell Mol Life Sci. 2016;73(11-12):2325-2334.
[45] 于泽奇,衣泰龙,程世翔,等.受体相互作用蛋白3在炎症中的作用[J].医学综述,2016,22(16):3121-3124.
[46] 夏思颖,杨亚楠,闫香珍,等.受体相互作用蛋白激酶1在小鼠实验性牙周炎模型中的作用[J].实用口腔医学杂志,2021,37(5):596-600.
[47] 柯晓菁.RIP3介导的坏死性凋亡在牙周炎发病过程中的作用[D].南京:南京大学,2017.
[48] OROZCO SL, DANIELS BP, YATIM N, et al. RIPK3 Activation Leads to Cytokine Synthesis that Continues after Loss of Cell Membrane Integrity. Cell Rep.2019;28(9):2275-2287.e5.
[49] 刘佳丽,赵卉. 坏死性凋亡在慢性阻塞性肺疾病中的研究进展[J]. 临床肺科杂志,2023,28(1):117-120.
[50] 龙秀艳,朱宁馨,邱佳宁,等. 炎症性肠病中的坏死性凋亡:一个潜在的治疗靶点[J]. 中南大学学报(医学版),2022,47(9):1289-1298.
[51] GRONTHOS S, MANKANI M, BRAHIM J, et al. Postnatal human dental pulp stem cells (DPSCs) in vitro and in vivo. Proc Natl Acad Sci U S A. 2000;97(25): 13625-13630.
[52] KAWAGUCHI H, HIRACHI A, HASEGAWA N, et al. Enhancement of periodontal tissue regeneration by transplantation of bone marrow mesenchymal stem cells. J Periodontol. 2004;75(9):1281-1287.
[53] SHI J, LI J, SU W, et al. Loss of periodontal ligament fibroblasts by RIPK3-MLKL-mediated necroptosis in the progress of chronic periodontitis. Sci Rep. 2019;9(1):2902.
[54] LI J, SHI J, PAN Y, et al. Transcription modulation by CDK9 regulates inflammatory genes and RIPK3-MLKL-mediated necroptosis in periodontitis progression. Sci Rep. 2019;9(1):17369.
[55] YAN B, WEI K, HOU L, et al. Receptor-Interacting Protein 3/Caspase-8 May Regulate Inflammatory Response and Promote Tissue Regeneration in the Periodontal Microenvironment. Med Sci Monit. 2018;24:5247-5257.
[56] YAN B, ZHANG H, DAI T, et al. Necrostatin-1 promotes ectopic periodontal tissue like structure regeneration in LPS-treated PDLSCs. PLoS One. 2018; 13(11):e0207760. |