[1]王欢 王庆甫△ 张栋 王伟利 丁昊彬 殷岳杉 郭玉茹 甘稳 徐铭康 杜汪洋.微小RNA网络控制及其在骨关节炎中的分子机制研究进展[J].中国中医骨伤科杂志,2017,25(03):77-82.
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微小RNA网络控制及其在骨关节炎中的分子机制研究进展()
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《中国中医骨伤科杂志》[ISSN:1005-0205/CN:42-1340/R]

卷:
第25卷
期数:
2017年03期
页码:
77-82
栏目:
文献综述
出版日期:
2017-03-08

文章信息/Info

文章编号:
1005-0205(2017)03-0077-06
作者:
王欢1 王庆甫2△ 张栋1 王伟利1 丁昊彬1 殷岳杉2 郭玉茹1 甘稳1 徐铭康1 杜汪洋1
1.北京中医药大学
2.北京中医药大学第三附属医院
△.通信作者 E-mail:qingpu-wang@sohu.com
关键词:
骨关节炎 微小RNA toll样受体 机制
分类号:
R684.3
文献标志码:
A

参考文献/References:

[1] Akhtar N,Rasheed Z,Ramamurthy S,et al.MicroRNA-27b regulates the expression of matrix metalloproteinase 13 in human osteoarthritis chondrocytes[J].Arthritis & Rheum,2010,62(5):1361-1371.
[2] Zhang ZJ.Artificial trans-acting small interfering RNA: a tool for plant biology study and crop improvements[J].Planta,2014,239(6):1139-1146.
[3] Smalheiser NR.Regulation of mammalian microRNA processing and function by cellular signaling and subcellular localization[J].Biochim Biophys Acta,2008,1779(11):678-681.
[4] Figliuzzi M,Marinari E,Demartino A.MicroRNAs as a Selective Channel of Communication between Competing RNAs: a Steady-State Theory[J].Biophys J,2013,104(5):1203-1213.
[5] Lee RC,Feinbaum RL,Ambros V.The C.elegans heterochronic gene lin-4 encodes small RNAs with antisense complementarity to lin-14[J].Cell,1993,75(5): 843 – 854.
[6] Wightman B,Ha I,Ruvkun G.Posttranscriptional regulation of the heterochronic gene lin-14 by lin-4 mediates temporal pattern formation in C.elegans[J].Cell,1993,75(5): 855 – 862.
[7] Schmitz U,Vearasilp K.MiRBase[M].New York:Springer,2013.
[8] Lewis BP,Burge CB,Bartel DP.Conserved seed pairing,often flanked by adenosines,indicates that thousands of human genes are microRNA targets[J].Cell,2005,120(1): 15-20.
[9] Jayaswal V,Lutherborrow M,Ma DD,et al.Identification of microRNA-mRNA modules using microarry data[J].BMC Genomics,2011,12:138.
[10] Kozomara A,Griffiths-Jones S.miRBase: integrating microRNA annotation and deep- sequencing date[J].Nacleic Acids Res,2011,39: 152-157.
[11] Olena AF,Patton JG.Genomic organization of microRNAs[J].J Cell Physiol,2010,3: 540 -545.
[12] Zheng Y,Zhang J,Gong D Q.Research Progress on miRNA of Poultry[J].China Animal Husbandry & Veterinary Medicine,2014,41(1):76-79.
[13] Mendell JT,Olson EN.MicroRNAs in stress signaling and human disease[J].Cell 2012,148(6):1172-1187.
[14] Esteller M.Non-coding RNAs in human disease[J].Net Rev Genet,2011,12:861-874.
[15] Nojima M,Matsui T,Tamori A,et al.Global,cancer-specific microRNA cluster hypomethylation was functionally associated with the development of non-B non-C hepatocellular carcinoma[J].Molecular Cancer,2016,15(1):31.
[16] Voglova K,Bezakova J,Herichova I.Progress in micro RNA focused research in endocrinology[J].Endocrine Regulations,2016,50(2):83-105.
[17] Juanchich A,Bardou P,Rué O,et al.Characterization of an extensive rainbow trout miRNA transcriptome by next generation sequencing[J].BMC Genomics,2016,17(1):1-12.
[18] Voglova K,Bezakova J,Herichova I.Progress in micro RNA focused research in endocrinology[J].Endocrine Regulations,2016,50(2):83-105.
[19] Luo J W,Wang X,Yang Y,et al.Role of micro-RNA(miRNA)in pathogenesis of glioblastoma.[J].Eur Rev Med Pharmacol Sci,2015,19(9):1630-1639.
[20] Concepcion CP,Bonetti C,Ventura A.The microRNA-17-92 family of microRNA clusters in development and disease.[J].Cancer Journal,2011,18(18):262-267.
[21] Piubelli C,Meraviglia V,Pompilio G,et al.microRNAs and Cardiac Cell Fate.[J].Cells,2013,3(3):802-823.
[22] Lin SL,Ying SY.Gene Silencing In Vitro and In Vivo Using Intronic MicroRNAs[J].Methods Mol Biol,2015,342:295-312.
[23] Curtis HJ,Sibley CR,Wood MJA.Mirtrons,an emerging class of atypical miRNA[J].Wiley Interdisciplinary Reviews-rna,2012,3(5):617-32.
[24] Pisarello MJL,Howard BN,Trussoni CE,et al.Abstract 192: Exportin-5 downregulation induces miRNA dysregulation and HDAC6 overexpression in cholangiocarcinoma[J].Cancer Research,2015,75(15 Supplement):192-192.
[25] Srivastava S,Yun Z,Kudapa H,et al.High throughput sequencing of small RNA component of leaves and inflorescence revealed conserved and novel miRNAs as well as phasiRNA loci in chickpea[J].Plant Sci,2015,235:46-57.
[26] Roberts TC.The microRNA Machinery[J].Advances in Experimental Medicine & Biology,2015,887:15-30.
[27] Yoon JH,Kim J,Gorospe M.Long noncoding RNA turnover[J].Biochimie,2015,117:15-21.
[28] Djuranovic S,Nahvi A,Green R.A parsimonious model for gene by miRNAs[J].Science,2011,331(6017):550-553.
[29] Green D,Fraser WD,Dalmay T.Transfer RNA-derived small RNAs in the cancer transcriptome[J].Pflügers Arch,2016,468(6):1-7.
[30] He J,Hua J,Ding N,et al.Modulation of microRNAs by ionizing radiation in human gastric cancer.[J].Oncology Reports,2014,32(2):318-327.
[31] Bosia C,Pagnani A,Zecchina R.Modelling Competing Endogenous RNA Networks[J].Plos One,2013,8(6):e66609.
[32] Valinezhad Orang A,Safaralizadeh R,Kazemzadeh-Bavili M.Mechanisms of miRNA-Mediated Gene Regulation from Common Downregulation to mRNA-Specific Upregulation[J].Int J Genomics,2014,970607.
[33] Harrison A,Shanahan H.An Overview of Gene Regulation[M]// Approaches in Integrative Bioinformatics.Springer Berlin Heidelberg,2014:21-69.
[34] Ludwig N,Leidinger P,Becker K,et al.Distribution of miRNA expression across human tissues.[J].Nucleic Acids Research,2016,44(8):3865-3877.
[35] Rager JE,Moeller BC,Miller SK,et al.Formaldehyde-associated changes in microRNAs: tissue and temporal specificity in the rat nose,white blood cells,and bone marrow.[J].Toxicol Sci,2014,138(1):36-46.
[36] Yu XM,Meng HY,Yuan XL,et al.MicroRNAs' Involvement in Osteoarthritis and the Prospects for Treatments.[J].Evidbased Complement Alternat Med,2015,236179.
[37] Barter MJ,Young DA.Epigenetic Mechanisms and Non-coding RNAs in Osteoarthritis[J].Curr Rheumatol Rep,2013,15(9):1-9.
[38] Jackson MT,Smith MM,Smith SM,et al.Activation of cartilage matrix metalloproteinases by activated protein C[J].Arthritis Rheum,2009,60(3):780–791.
[39] Lippiello L,Hall D,Mankin HJ.Collagen synthesis in normal and osteoarthritic human cartilage[J].Clin Invest,1977,59(4):593–600.
[40] Eyre DR,McDevitt CA,Billingham ME,et al.Biosynthesis of collagen and other matrix proteins by articular cartilage in experimental osteoarthrosis[J].Biochem,1980,188(3):823–837.
[41] Mirzamohammadi F,Papaioannou G,Kobayashi T.microRNAs in Cartilage Development,Homeostasis,and Disease[J].Current Osteoporosis Reports,2014,12(4):410-419.
[42] Kobayashi T,Lu J,Cobb BS,et al.Dicer-dependent pathways regulate chondrocyte proliferation and differentiation[J].Proc Natl Acad Sci USA,2008,105:1949-1954.
[43] Miyaki S,Nakasa T,Otsuki S,et al.MicroRNA-140 is expressed in differentiated human articular chondrocytes and modulates interleukin-1 responses[J].Arthritis Rheum,2009,60(9):2723-2730.
[44] Miyaki S,Sato T,Inoue A,et al.MicroRNA-140 plays dual roles in both cartilage development and homeostasis[J].Gene Dev,2010,21:1173-1185.
[45] Plaas A,Osborn B,Yoshihara Y,et al.Aggrecanolysis in human osteoarthritis: confocal localization and biochemical characterization of ADAMTS5–hyaluronan complexes in articular cartilages[J].Osteoarthritis & Cartilage,2007,15(7):719-734.
[46] Le LTT,Swingler TE,Crowe N,et al.The microRNA-29 family in cartilage homeostasis and osteoarthritis[J].Journal of Molecular Medicine,2015,94:1-14.
[47] Liang ZJ,Zhuang H,Wang GX,et al.MiRNA-140 is a negative feedback regulator of MMP-13 in IL-1β-stimulated human articular chondrocyte C28/12 cells[J].Inflamm Res,2012,61(5):503-509.
[48] Akhtar N,Rasheed Z,Ramamurthy S,et al.MicroRNA-27b regulates the expression of matrix metalloproteinase 13 in human osteoarthritis chondrocytes[J].Arthritis & Rheumatism,2010,62(5):1361–1371.
[49] Min Z,Zhang R,Yao J,et al.MicroRNAs associated with osteoarthritis differently expressed in bone matrix gelatin(BMG)rat model.[J].Int J Clin Exp Med,2015,8(1):1009-1017.
[50] Ohgawara T,Kubota S,Kawaki H,et al.Regulation of chondrocytic phenotype by micro RNA 18a: Involvement of Ccn2/Ctgf,as a major target gene[J].FEBS Letters,2009,583(6):1006-1010.
[51] Dieppe P.Developments in osteoarthritis.[J].Rheumatology,2011,50(50):245-247.
[52] Poulet B,Staines KA.New developments in osteoarthritis and cartilage biology[J].Curr Opin Pharmacol,2016,28:8-13.
[53] Eckstein F,Graverand M P H L.Plain Radiography or Magnetic Resonance Imaging(MRI)–Which are Better in Assessing Outcome in Summary of a Debate Held at the World Congress of Osteoarthritis 2014[J].Semin Arthritis Rheum,2015,45(3):251-256.
[54] Suzuki S,Muneta T,Tsuji K.et al.Properties and usefulness of aggregates of synovial mesenchymal stem cells as a source for cartilage regeneration[J].Arthritis Res Ther,2012,14(3):R136.
[55] Yu M,Ye WB,Zhong ZM,et al.Effect of Advanced Oxidation Protein Products on Articular Cartilage and Synovium in a Rabbit Osteoarthritis Model[J].Orthop Surg,2015,7(2):161-167.
[56] Karczewski J,Dobrowolska A,Rychlewskahańczewska A,et al.New insights into the role of T cells in pathogenesis of psoriasis and psoriatic arthritis.[J].Autoimmunity,2016,49(7):435-450.
[57] Takada S,Asahara H.Current strategies for microRNA research[J].Modern Rheumatology,2012,22(5):645-653.
[58] Chan EKL,Ceribelli A,Satoh M.MicroRNA-146a in autoimmunity and innate immune responses.[J].Ann Rheum Dis,2013,72(2):90-95.
[59] Ordas A,Kanwal Z,Lindenberg V,et al.MicroRNA-146 function in the innate immune transcriptome response of zebrafish embryos to Salmonella typhimurium,infection[J].BMCC Genomics,2013,14:496.
[60] Contreras J,Rao DS.MicroRNAs in inflammation and immune responses[J].Leukemia Official Journal of the Leukemia Society of America Leukemia Research Fund U K,2012,26(3):404-413.
[61] Anglicheau D,Muthukumar T,Suthanthiran M.MicroRNAs: Small RNAs with Big Effects[J].Transplantation,2010,90(2):105-112.
[62] Li M,Shao H,Zhang X,et al.Hesperidin Alleviates Lipopolysaccharide-Induced Neuroinflammation in Mice by Promoting the miRNA-132 Pathway.[J].Inflammation,2016,39(5):1681-1689.
[63] Nakamachi Y,Kawano S,Takenokuchi M,et al.MicroRNA-124a is a key regulator of proliferation and monocyte chemoattractant protein 1 secretion in fibroblastlike synoviocytes from patients with rheumatoid arthritis[J].Arthritis Rheum,2009,60(5):1294-1304.
[64] Pan X,Huang L,Chen J,et al.Analysis of synovial fluid in knee joint of osteoarthritis:5 proteome patterns of joint inflammation based on matrix-assisted laser desorption/ionization time-of-flight mass spectrometry[J].Int Orthop,2012,36(1):57-64.
[65] Zhang C,Shu L,Kong AT.MicroRNAs: new Players in Cancer Prevention Targeting Nrf2,Oxidative Stress and Inflammatory Pathways[J].Curr Pharmacol Rep,2015,1(1):21-30.
[66] Sharma AR,Sharma G,Lee SS,et al.miRNA-Regulated Key Components of Cytokine Signaling Pathways and Inflammation in Rheumatoid Arthritis[J].Med Res Rev,2016,36(3):425-439.
[67] Singh RP,Massachi I,Manickavel S,et al.The role of miRNA in inflammation and autoimmunity[J].Autoimmunity Reviews,2013,12(12):1160-1165.
[68] Fahy N,Farrell E,Ritter T,et al.Immune modulation to improve tissue engineering outcomes for cartilage repair in the osteoarthritic joint[J].Tissue Engineering Part B Reviews,2014,21(1):55-66.
[69] Orlowsky EW,Kraus VB.The Role of Innate Immunity in Osteoarthritis: When Our First Line of Defense Goes On the Offensive [J].J Rheumatol,2015,42(3):363-371.
[70] He X,Jia H,Jing Z,et al.Recognition of pathogen-associated nucleic acids by endosomal nucleic acid-sensing toll-like receptors [J].Acta Biochim Biophys Sin,2013,45(4):240-258.
[71] Kondo T,Kawai T,Akira S.Dissecting negative regulation of Toll-like receptor signaling[J].Trends Immunol,2012,33(9):449-458.
[72] Li Y,Shi X.MicroRNAs in the regulation of TLR and RIG-I pathways[J].Cell Mol Immunol,2012,10(1):65-71.
[73] Olivieri F,Rippo MR,Prattichizzo F,et al.Toll like receptor signaling in "inflammaging": microRNA as new players[J].Immunity Ageing,2013,10(1):65-71.
[74] O'Neill LA,Sheedy FJ,McCoy CE.MicroRNAs: the fine-tuners of Toll-like receptor signalling[J].Nature Reviews.Immunology,2011,11(3):163-175.
[75] Nahid MA,Satoh M,Chan EK.MicroRNA in TLR signaling and endotoxin tolerance.[J].Cell Mol Immunol,2011,8(5):388-403.
[76] Xiaodong Ma,Lindsey E,Becker Buscaglia,et al.MicroRNAs in NF- B signaling[J].Journal of Molecular Cell Biology,2011,3(3):159-166.
[77] Zhou R,O'Hara SP,Chen XM.MicroRNA regulation of innate immune responses in epithelial cells[J].Cell Mol Immunol,2011,8(5):371-379.
[78] Coll RC,O'Neill LA.New insights into the regulation of signalling by toll-like receptors and nod-like receptors[J].J Innate Immun,2010,2(5):406-421.
[79] Benakanakere MR,Li Q,Eskan MA,et al.Modulation of TLR2 protein expression by miR-105 in human oral keratinocytes[J].J Biol Chem,2009,284(34):23107-23115.
[80] Guo H,Chen Y,Hu X,et al.The regulation of Toll-like receptor 2 by miR-143 suppresses the invasion and migration of a subset of human colorectal carcinoma cells[J].Molecular cancer,2013,12:77.
[81] Curtale G,Mirolo M,Renzi TA,et al.Negative regulation of Toll-like receptor 4 signaling by IL-10-dependent microRNA-146b[J].Proc Nat Acad U S A,2013,110(28):11449-11504.
[82] Li X,Gibson G,Kim JS,et al.MicroRNA-146a is linked to pain-related pathophysiology of osteoarthritis[J].Gene,2011,480(2):34-41.
[83] Zilahi E,Tarr T,Papp G,et al.Increased microRNA-146a/b,TRAF6 gene and decreased IRAK1 gene expressions in the peripheral mononuclear cells of patients with Sjögren's syndrome[J].Immunol Lett,2012,141(2):165-168.
[84] Park H,Huang X,Lu C,et al.MicroRNA-146a and MicroRNA-146b Regulate Human Dendritic Cell Apoptosis and Cytokine Production by Targeting TRAF6 and IRAK1 Proteins[J].J Biol Chem,2015,290(5):2831-2841.
[85] Bazzoni F,Rossato M,Fabbri M,et al.Induction and regulatory function of miR-9 in human monocytes and neutrophils exposed to proinflammatory signals[J].Proc Nat Acad Sci U S A,2009,106(13):5282-5287.
[86] Qi J,Qiao Y,Wang P,et al.microRNA-210 negatively regulates LPS-induced production of proinflammatory cytokines by targeting NF-kappaB1 in murine macrophages[J].FEBS Lett,2012,586(8):1201-1207.
[87] Shaked I,Meerson A,Wolf Y,et al.MicroRNA-132 Potentiates Cholinergic Anti-Inflammatory Signaling by Targeting Acetylcholinesterase[J].Immunity,2009,31(6):965-973.
[88] de Gonzalo-calvo D,Dávalos A,Montero A,et al.Circulating inflammatory miRNA signature in response to different doses of aerobic exercise.[J].J Appl Physiol,2015,119(2):124-134.
[89] Liu F,Li Y,Jiang R,et al.miR-132 inhibits lipopolysaccharide-induced inflammation in alveolar macrophages by the cholinergic anti-inflammatory pathway.[J].Exp Lung Res,2015,41(5):261-269.
[90] Sheedy FJ,Palsson-McDermott E,Hennessy EJ,et al.Negative regulation of TLR4 via targeting of the proinflammatory tumor suppressor PDCD4 by the microRNA miR-21[J].Nat Immunol,2010,11(2):141-147.
[91] Squadrito ML,Etzrodt M,Palma MD,et al.MicroRNA-mediated control of macrophages and its implications for cancer[J].Trends Immunol,2013,34(7):350-359.
[92] Peacock O,Lee AC,Cameron F,et al.Inflammation and MiR-21 pathways functionally interact to downregulate PDCD4 in colorectal cancer.[J].Plos One,2014,9(10):e110267.
[93] Li YH,Tavallaee G,Tokar T,et al.Identification of synovial fluid MIRNA signature in knee osteoarthritis: differentiating early and late knee osteoarthritis[J].Osteoarthritis & Cartilage,2016,24(9):S347-S348.
[94] Pio G,Ceci M,Malerba D,et al.ComiRNet: a web-based system for the analysis of miRNA-gene regulatory networks[J].BMC Bioinformatics,2015,16(Suppl 9):S7.
[95] Zhu W,Chen YP.Computational developments in microRNA-regulated protein-protein interactions[J].BMC Systems Biol,2014,8(1):14.
[96] Prasadam I,Batra J,Perry S,et al.Systematic Identification,Characterization and Target Gene Analysis of microRNAs Involved in Osteoarthritis Subchondral Bone Pathogenesis[J].Calcif Tissue Int,2016,99(1):43-55.
[97] Murata K,Yoshitomi H,Tanida S,et al.Plasma and synovial fluid microRNAs as potential biomarkers of rheumatoid arthritis and osteoarthritis[J].Arthritis Res Ther,2010,12(3):R86.
[98] Iliopoulos D,Malizos KN,Oikonomou P,et al.Integrative MicroRNA and Proteomic Approaches Identify Novel Osteoarthritis Genes and Their Collaborative Metabolic and Inflammatory Networks[J].Plos One,2008,3(11):e3740.
[99] Jones SW,Watkins G,Le Good N,et al.The identification of differentially expressed microRNA in osteoarthritic tissue that modulate the production of TNF-alpha and MMP13[J].Osteoarthritis Cartilage,2009,17(4):464-472.
[100] Jin L,Zhao J,Jing W,et al.Role of miR-146a in human chondrocyte apoptosis in response to mechanical pressure injury in vitro.[J].Int J Med,2014,34(2):451-463.
[101] Akhtar N,Rasheed Z,Ramamurthy S,et al.MicroRNA-27b regulates the expression of matrix metalloproteinase 13 in human osteoarthritis chondrocytes[J].Arthritis Rheum,2010,62(5):1361-1371.
[102] Shamoon M,Hochberg MC.Treatment of osteoarthritis with acetaminophen: efficacy,safety,and comparison with nonsteroidal anti-inflammatory drugs.[J].Curr Rheumatol Rep,2000,2(6):454-458.
[103] Balmaceda CM.Evolving guidelines in the use of topical nonsteroidal anti-inflammatory drugs in the treatment of osteoarthritis[J].BMC Musculoskeletal Disord,2014,15(1):1-5.
[104] Lanas A,Garcia-Tell G,Armada B,et al.Prescription patterns and appropriateness of NSAID therapy according to gastrointestinal risk and cardiovascular history in patients with diagnoses of osteoarthritis[J].BMC Medicine,2011,9(15):38.

备注/Memo

备注/Memo:
基金项目:国家自然科学基金面上项目(81373662)
北京中医药大学自主选题项目(2015-JYBZZ-XS-202)
更新日期/Last Update: 2017-03-15