JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE ›› 2022, Vol. 24 ›› Issue (1): 120-126.DOI: 10.3969/j.issn.1671-2587.2022.01.027
Previous Articles Next Articles
Received:
2021-10-08
Published:
2022-01-27
CLC Number:
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.lcsxyjy.com/EN/10.3969/j.issn.1671-2587.2022.01.027
[1] NEU C T,GUTSCHNER T,HAEMMERLE M.Post-transcriptional expression control in platelet biogenesis and function[J].Int J Mol Sci,2020,21(20):7614. [2] 张骞,卓海龙,张阳阳,等.储存血小板源细胞外囊泡中非编码RNA表达谱及其潜在临床意义[J].军事医学,2021,45(2):124-130. [3] YAN Y Z,ZHANG J J,ZHANG Q,et al.The role of microRNAs in platelet biology during storage[J]. Transfus Apher Sci,2017,56(2):147-150. [4] SINAURIDZE E I,KIREEV D A,POPENKO N Y,et al.Platelet microparticle membranes have 50-to 100-fold higher specific procoagulant activity than activated platelets[J]. Thromb Haemost,2007,97(3):425-434. [5] DAHIYA N,SARACHANA T,VU L,et al.Platelet microRNAs:an overview[J].Transfus Med Rev,2015,29(4):215-219. [6] PROVOST P.The clinical significance of platelet microparticle-associated microRNAs[J].Clin Chem Lab Med,2017,55(5):657-666. [7] BARTEL D P.microRNAs:target recognition and regulatory functions[J]. Cell,2009,136(2):215-233. [8] LANDRY P,PLANTE I,OUELLET D L,et al.Existence of a microRNA pathway in anucleate platelets[J]. Nat Struct Mol Biol,2009,16(9):961-966. [9] FRIEDMAN R C,FARH KyleK H,BURGE C B,et al. Most mammalian mRNAs are conserved targets of microRNAs[J]. Genome Res,2009,19(1):92-105. [10] ELGHEZNAWY A,SHI L,HU J,et al.Dicer cleavage by calpain determines platelet microRNA levels and function in diabetes[J]. Circ Res,2015,117(2):157-165. [11] ROWLEY J W,CHAPPAZ S,CORDUAN A,et al.Dicer1-mediated miRNA processing shapes the mRNA profile and function of murine platelets[J]. Blood,2016,127(14):1743-1751. [12] CIMMINO G,TARALLO R,NASSA G,et al.Activating stimuli induce platelet microRNA modulation and proteome reorganisation[J].Thromb Haemost,2015,114(1):96-108. [13] VERSCHOOR A,LANGER H F.Crosstalk between platelets and the complement system in immune protection and disease[J].Thromb Haemost,2013,110(5):910-919. [14] RANDRIAMBOAVONJY V,FLEMING I.Platelet communication with the vascular wall:role of platelet-derived microparticles and non-coding RNAs[J]. Clin Sci (Lond),2018,132(17):1875-1888. [15] PLÉ H,LANDRY P,BENHAM A,et al.The repertoire and features of human platelet microRNAs[J].PLoS One,2012,7(12):e50746. [16] LONDIN E R,HATZIMICHAEL E,LOHER P,et al.Beyond mRNAs and mirnas:unraveling the full-spectrum of the normal human platelet transcriptome through next-generation sequencing[J]. Blood,2012,120(21):3298. [17] DAHARIYA S,PADDIBHATLA I,KUMAR S,et al.Long non-coding RNA:Classification,biogenesis and functions in blood cells[J].Mol Immunol,2019,112:82-92. [18] LONDIN E R,HATZIMICHAEL E,LOHER P,et al.The human platelet:strong transcriptome correlations among individuals associate weakly with the platelet proteome[J]. Biol Direct,2014,9:3. [19] D'AMBROSI S,VISSER A,ANTUNES-FERREIRA M,et al. The analysis of platelet-derived circRNA repertoire as potential diagnostic biomarker for non-small cell lung cancer[J]. Cancers,2021,13(18):4644. [20] HANSEN T B,JENSEN T I,CLAUSEN B H,et al.Natural RNA circles function as efficient microRNA sponges[J]. Nature,2013,495(7441):384-388. [21] KRISTENSEN L S,ANDERSEN M S,STAGSTED L V W,et al. The biogenesis,biology and characterization of circular RNAs[J]. Nat Rev Genet,2019,20(11):675-691. [22] ALHASAN A A,IZUOGU O G,AL-BALOOL H H,et al. Circular RNA enrichment in platelets is a signature of transcriptome degradation[J]. Blood,2016,127(9):e1-e11. [23] PREUßER C,HUNG L H,SCHNEIDER T,et al.Selective release of circRNAs in platelet-derived extracellular vesicles[J].J Extracell Vesicles,2018,7(1):1424473. [24] HANDIGUND M,BAE T W,LEE J,et al.Evaluation of in vitro storage characteristics of cold stored platelet concentrates with N acetylcysteine (NAC)[J]. Transfus Apher Sci,2016,54(1):127-138. [25] MITTAL K,KAUR R.Platelet storage lesion:an update[J]. Asian J Transfus Sci,2015,9(1):1-3. [26] SHRIVASTAVA M.The platelet storage lesion[J]. Transfus Apher Sci,2009,41(2):105-113. [27] VILLARROEL J P P,FIGUEREDO R,GUAN Y X,et al. Increased platelet storage time is associated with mitochondrial dysfunction and impaired platelet function[J]. J Surg Res,2013,184(1):422-429. [28] PONTES T B,DE FÁTIMA AQUINO MOREIRA-NUNES C,DA SILVA MAUÉS J H,et al. The miRNA profile of platelets stored in a blood bank and its relation to cellular damage from storage[J]. PLoS One,2015,10(6):e0129399. [29] DAHIYA N,SARACHANA T,KULKARNI S,et al.miR-570 interacts with mitochondrial ATPase subunit g (ATP5L) encoding mRNA in stored platelets[J]. Platelets,2017,28(1):74-81. [30] DA SILVA MAUÉS J H,DE FÁTIMA AQUINO MOREIRA-NUNES C,BURBANO R M R. microRNAs as a potential quality measurement tool of platelet concentrate stored in blood banks-A review[J]. Cells,2019,8(10):1256. [31] OSMAN A,HITZLER W E,MEYER C U,et al.Effects of pathogen reduction systems on platelet microRNAs,mRNAs,activation,and function[J]. Platelets,2015,26(2):154-163. [32] MUKAI N,NAKAYAMA Y,ISHI S,et al.Cold storage conditions modify microRNA expressions for platelet transfusion[J]. PLoS One,2019,14(7):e0218797. [33] KANNAN M,KRISHNA MOHAN K V,KULKARNI S,et al. Membrane array-based differential profiling of platelets during storage for 52 miRNAs associated with apoptosis[J]. Transfusion,2009,49(7):1443-1450. [34] PIENIMAEKI-ROEMER A,KONOVALOVA T,MUSRI M M,et al.Transcriptomic profiling of platelet senescence and platelet extracellular vesicles[J]. Transfusion,2017,57(1):144-156. [35] DIEHL P,FRICKE A,SANDER L,et al.Microparticles:major transport vehicles for distinct microRNAs in circulation[J].Cardiovasc Res,2012,93(4):633-644. [36] DAHIYA N,ATREYA C D.RAP1 downregulation by miR-320c reduces platelet activation in ex-vivo storage[J]. Microrna,2019,8(1):36-42. [37] 李楠,苑召虎,陈小洁,等. 储存血小板差异性长链非编码RNA表达谱研究[J]. 中国输血杂志,2018,31(1):27-32. [38] BIAN W H,CHEN W P,JIANG X L,et al.Downregulation of long non-coding RNA nuclear paraspeckle assembly transcript 1 inhibits MEG-01 differentiation and platelet-like particles activity[J]. Front Genet,2020,11:571467. [39] 严育忠,张琦,朱鑫芳,等. 储存血小板RNA的降解机制[C]//中国输血协会第九届输血大会论文专辑. 重庆,2018:185-186. [40] MURPHY S,GARDNER F H.Effect of storage temperature on maintenance of platelet viability— deleterious effect of refrigerated storage[J]. N Engl J Med,1969,280(20):1094-1098. [41] CAUWENBERGHS S,VAN PAMPUS E,CURVERS J,et al.Hemostatic and signaling functions of transfused platelets[J]. Transfus Med Rev,2007,21(4):287-294. [42] THON J,DEVINE D.Translation of glycoprotein IIIa in stored blood platelets[J]. Transfusion,2007,47(12):2260-2270. [43] WEYRICH A S,SCHWERTZ H,KRAISS L W,et al.Protein synthesis by platelets:historical and new perspectives[J]. J Thromb Haemost,2009,7(2):241-246. [44] YU S F,HUANG H C,DENG G,et al.miR-326 targets antiapoptotic Bcl-xL and mediates apoptosis in human platelets[J]. PLoS One,2015,10(4):e0122784. [45] KRAMMER T L,MAYR M,HACKL M. microRNAs as promising biomarkers of platelet activity in antiplatelet therapy monitoring[J]. Int J Mol Sci,2020,21(10):3477. [46] ELGHEZNAWY A,FLEMING I.Platelet-enriched microRNAs and cardiovascular homeostasis[J]. Antioxid Redox Signal,2018,29(9):902-921. [47] HEIJNEN H F,SCHIEL A E,FIJNHEER R,et al.Activated platelets release two types of membrane vesicles:microvesicles by surface shedding and exosomes derived from exocytosis of multivesicular bodies and alpha-granules[J]. Blood,1999,94(11):3791-3799. [48] LI J N,TAN M,XIANG Q Q,et al.Thrombin-activated platelet-derived exosomes regulate endothelial cell expression of ICAM-1 via microRNA-223 during the thrombosis-inflammation response[J].Thromb Res,2017,154:96-105. [49] MICHAEL J V,WURTZEL J G T,MAO G F,et al. Platelet microparticles infiltrating solid tumors transfer miRNAs that suppress tumor growth[J]. Blood,2017,130(5):567-580. [50] NAGALLA S,SHAW C,KONG X G,et al.Platelet microRNA-mRNA coexpression profiles correlate with platelet reactivity[J]. Blood,2011,117(19):5189-5197. [51] LAFFONT B,CORDUAN A,PLÉ H,et al.Activated platelets can deliver mRNA regulatory Ago2•microRNA complexes to endothelial cells via microparticles[J]. Blood,2013,122(2):253-261. [52] LAFFONT B,CORDUAN A,ROUSSEAU M,et al.Platelet microparticles reprogram macrophage gene expression and function[J]. Thromb Haemost,2016,115(2):311-323. [53] MCVEY M J,WEIDENFELD S,MAISHAN M,et al.Platelet extracellular vesicles mediate transfusion-related acute lung injury by imbalancing the sphingolipid rheostat[J]. Blood,2021,137(5):690-701. [54] GASPERI V,VANGAPANDU C,SAVINI I,et al.Polyunsaturated fatty acids modulate the delivery of platelet microvesicle-derived microRNAs into human breast cancer cell lines[J]. J Nutr Biochem,2019,74:108242. [55] DENIS M M,TOLLEY N D,BUNTING M,et al.Escaping the nuclear confines:signal-dependent pre-mRNA splicing in anucleate platelets[J]. Cell,2005,122(3):379-391. |
[1] | ZHANG Rong, WANG Wen-ting, GU Shun-li, et al. Discussion on Monitoring Process and Blood Transfusion Strategy of Passenger Lymphocyte Syndrome [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 681-685. |
[2] | WANG Qian, YANG Li-hui, DING Tian-ling, et al. Clinical Analysis of Platelet Transfusion for Patients Undergoing Autologous Hematopoietic Stem Cell Transplantation with Different Conditioning Regimens [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 686-692. |
[3] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 693-695. |
[4] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 696-699. |
[5] | FU Xiao-yan, ZHANG shuai-hang, SHAO hua, et al. Impact of Erythrocyte Storage Duration on Blood Indexes in Children with Open Heart Surgery by Cardiopulmonary Bypass [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 700-703. |
[6] | QIU Li-juan, FU Xiao-yan, GUO Kai, et al. Analysis of Antibody Titers of 60 Pediatric Patients with Strong Positive Platelet Antibody Screening Results [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 704-707. |
[7] | WANG Cui-e, LIU Zhi-wei, KONG Chang-hong, et al. Establishment and Application of Clinical Transfusion Service Information Platform [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 715-718. |
[8] | JING Yuan-yuan, WANG Jie, LI Dong-mei, et al. Factors Influencing Development of HLA and/or HPA Antibodies in Patients with Platelet Refractoriness [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 723-727. |
[9] | MA Ting, NIU Jia-meng, CHEN Xin-yue, et al. Analysis of Blood Transfusion in 8 053 Hospitalized Deceased Patients [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 732-736. |
[10] | WANG Rui-han, LIU Hao, LIU Pei, et al. Indication of Intraoperative Cell Salvage in Cesarean Section [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 742-745. |
[11] | MA Ling, WU Min-hui, ZHAO Fang, et al. The Genotyping and Alloimmunization Study of RhD among Perinatal Women with RhD Initial Typing Negative [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 746-749. |
[12] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 794-796. |
[13] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 800-802. |
[14] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 803-805. |
[15] | . [J]. JOURNAL OF CLINICAL TRANSFUSION AND LABORATORY MEDICINE, 2021, 23(6): 806-810. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||