Page 45 - 南京医科大学学报自然科学版
P. 45

第41卷第4期          邓   威,孟 颖,王晨星,等. miR⁃182在口腔鳞癌血清外泌体中的表达及其临床意义[J].
                  2021年4月                     南京医科大学学报(自然科学版),2021,41(04):509-515                       ·515 ·


                    tion of exosomes[J]. Curr Opin Cell Biol,2014,29:116-  [21]LI Y,CHEN S,SHAN Z,et al. miR⁃182⁃5p improves the
                    125                                                viability,mitosis,migration,and invasion ability of human
               [10] SALEHI M,SHARIFI M. Exosomal miRNAs as novel can⁃  gastric cancer cells by down ⁃ regulating RAB27A[J].
                    cer biomarkers:challenges and opportunities[J]. J Cell  Biosci Rep,2017,37(3):BSR 20170136
                    Physiol,2018,233(9):6370-6380                [22] HIRATA H,UENO K,SHAHRYARI V,et al. MicroRNA⁃
               [11] VALADI H,EKSTRÖM K,BOSSIOS A,et al. Exosome⁃       182⁃5p promotes cell invasion and proliferation by down
                    mediated transfer of mRNAs and microRNAs is a novel  regulating FOXF2,RECK and MTSS1 genes in human
                    mechanism of genetic exchange between cells[J]. Nat  prostate cancer[J]. PLoS One,2013,8(1):e55502
                    Cell Biol,2007,9(6):654-659                  [23] SUZUKI R,AMATYA V J,KUSHITANI K,et al. miR⁃
               [12] ZHOU J,LI X L,CHEN Z R,et al. Tumor⁃derived exo⁃   182 and miR⁃183 promote cell proliferation and invasion
                    somes in colorectal cancer progression and their clinical  by targeting FOXO1 in mesothelioma[J]. Front Oncol,
                    applications[J]. Oncotarget,2017,8(59):100781-     2018,8:446
                    100790                                       [24] GOLBAKHSH M R,BODDOUHI B,HATAMI N,et al.
               [13] RABINOWITS G,GERCEL⁃TAYLOR C,DAY J M,et al.        Down⁃regulation of microRNA⁃182 and microRNA⁃183
                    Exosomal microRNA:a diagnostic marker for lung cancer  predicts progression of osteosarcoma[J]. Arch Med Sci,
                    [J]. Clin Lung Cancer,2009,10(1):42-46             2017,13(6):1352-1356
               [14] THÉRY C,AMIGORENA S,RAPOSO G,et al. Isolation  [25] GUO Y,QIAO X,ZHU L,et al. MicroRNA⁃182⁃5p modu⁃
                    and characterization of exosomes from cell culture super⁃  lates oral squamous cell carcinoma migration and inva⁃
                    natants and biological fluids[J]. Curr Protoc Cell Biol,  sion via targeting MTSS1 gene[J]. Pathol Oncol Res,
                    2006,3:3-22                                        2020,26(2):1007-1013
               [15] ZHANG H,WU J,WU J,et al. Exosome⁃mediated target⁃  [26] EBRAHIMI A,GIL Z,AMIT M,et al. Primary tumor stag⁃
                    ed delivery of miR⁃210 for angiogenic therapy after cere⁃  ing for oral cancer and a proposed modification incorporat⁃
                    bral ischemia in mice[J]. J Nanobiotechnology,2019,17  ing depth of invasion:an international multicenter retro⁃
                                                                       spective study[J]. JAMA Otolaryngol Head Neck Surg,
                    (1):29
               [16] LANGEVIN S,KUHNELL D,PARRY T,et al. Compre⁃        2014,140:1138-1148
                    hensive microRNA⁃sequencing of exosomes derived from  [27] SIRIWARDENA S,TSUNEMATSU T,QI G,et al. Inva⁃
                                                                       sion⁃related factors as potential diagnostic and therapeu⁃
                    head and neck carcinoma cells in vitro reveals common
                                                                       tic targets in oral squamous cell carcinoma⁃a review[J].
                    secretion profiles and potential utility as salivary biomark⁃
                    ers[J]. Oncotarget,2017,8(47):82459-82474          Int J Mol Sci,2018,19(5):1462
               [17] TANG Y T,HUANG Y Y,ZHENG L,et al. Comparison of  [28] WANG J,WANG W,LI J,et al. miR182 activates the Ras
                    isolation methods of exosomes and exosomal RNA from  ⁃MEK⁃ERK pathway in human oral cavity squamous cell
                    cell culture medium and serum[J]. Int J Mol Med,2017,  carcinoma by suppressing RASA1 and SPRED1[J]. Onco
                    40(3):834-844                                      Targets Ther,2017,10:667-679
               [18] LIVSHITS M,KHOMYAKOVA E,EVTUSHENKO E G,      [29] OHNSEN K B,GUDBERGSSON J M,SKOV M N,et al.
                    et al. Isolation of exosomes by differential centrifugation:  A comprehensive overview of exosomes as drug delivery
                    theoretical analysis of a commonly used protocol[J]. Sci  vehicles⁃endogenous nanocarriers for targeted cancer ther⁃
                    Rep,2015,5:17319                                   apy[J]. Biochim Biophys Acta,2014,1846(1):75-87
               [19] WITWER K W,BUZÁS E I,BEMIS L T,et al. Standard⁃  [30] VADER P,MOL E A,PASTERKAMP G,et al. Extracellu⁃
                                                                       lar vesicles for drug delivery[J]. Adv Drug Deliv Rev,
                    ization of sample collection,isolation and analysis meth⁃
                    ods in extracellular vesicle research[J]. J Extracell Vesi⁃  2016,106(Pt A):148-156
                    cles,2013,2:2                                [31] DIDIOT M C,HALL L M,COLES A H,et al. Exosome⁃
               [20] SHARIFI M,MORIDNIA A. Apoptosis⁃inducing and anti⁃  mediated delivery of hydrophobically modified siRNA for
                                                                       Huntingtin mRNA silencing[J]. Mol Ther,2016,24(10):
                    proliferative effect by inhibition of miR⁃ 182⁃5p through
                    the regulation of CASP9 expression in human breast can⁃  1836-1847
                    cer[J]. Cancer Gene Ther,2017,24(2):75-82                               [收稿日期] 2020-07-29
   40   41   42   43   44   45   46   47   48   49   50