
Citation: LI Nian-Sheng, CHEN Li, XIAO Zuo-Xiu, YANG Yu-Qi, AI Ke-Long. Progress in Detection of Biomarker of Ovarian Cancer: Lysophosphatidic Acid[J]. Chinese Journal of Analytical Chemistry, 2020, 48(12): 1597-1606. doi: 10.19756/j.issn.0253-3820.201339

卵巢癌标志物溶血磷脂酸检测的研究进展
English
Progress in Detection of Biomarker of Ovarian Cancer: Lysophosphatidic Acid
-
Key words:
- Ovarian cancer
- / Lysophosphatidic acid
- / Biomarker
- / Mass spectrometry
- / Colorimetry
- / Fluorescence detection
- / Review
-
-
-
[1]
Shabaninejad Z, Vafadar A, Movahedpour A, Ghasemi Y, Namdar A, Fathizadeh H, Pourhanifeh M H, Savardashtaki A, Mirzaei H. J. Ovarian Res.,2019,12(1):84
-
[2]
Bray F, Ferlay J, Soerjomataram I, Siegel R L, Torre L A, Jemal A. Ca-Cancer J. Clin.,2018, 68(6):394-424
-
[3]
Jang H I, Lim S H, Lee Y Y, Kim T J, Choi C H, Lee J W, Kim B G, Bae D S. Obstet. Gynecol. Sci.,2017,60(2):170-177
-
[4]
Ruhaak L R, Xu G, Li Q, Goonatilleke E, Lebrilla C B. Chem. Rev.,2018,118(17):7886-7930
-
[5]
Bast R C, Hennessy B, Mills G B. Nat. Rev. Cancer,2009,9(6):415-428
-
[6]
Azvolinsky A. Nat. Med.,2013,19(2):117
-
[7]
Galenkamp N S, Soskine M, Hermans J, Wloka C, Maglia G. Nat. Commun.,2018,9:4085
-
[8]
Xu Y. Cancers,2019,11(10):1523
-
[9]
Szymanska B, Lukaszewski Z, Hermanowicz-Szamatowicz K, Gorodkiewicz E. Talanta,2020,206:120187
-
[10]
Saadati A, Hassanpour S, Bahavarnia F, Hasanzadeh M. Anal. Methods,2020,12(12):1639-1649
-
[11]
Kim S I, Kang N, Leem S, Yang J, Jo H, Lee M, Kim H S, Dhanasekaran D N, Kim Y K, Park T, Song Y S. Cancers,2020,12(5):1309
-
[12]
Minis E, Holcomb K, Sisti G, Nasioudis D, Kanninen T T, Athanasiou A, Frey M K, Chapman-Davis E, Caputo T A, Witkin S S. Eur. J. Obstet. Gynecol. Reprod. Biol:X,2019,2:100012
-
[13]
Jelonek K, Ros M, Pietrowska M, Widlak P. Clin. Lipidol.,2013,8(1):137-150
-
[14]
SongY, Wu J, Oyesanya R A, Lee Z, Mukherjee A, Fang X. Clin. Cancer Res., 2009,15(2):492-501
-
[15]
Wierstra I. Adv. Cancer Res., 2013,119:191-419
-
[16]
Jesionowska A, Cecerska E, Dolegowska B. Anal. Biochem.,2014,453:38-43
-
[17]
Kipps E, Tan D S P, Kaye S B. Nat. Rev. Cancer,2013,13(4):273-282
-
[18]
Mohammadi Z, Roodbari N H, Parivar K, Salehnia M. Cell J.,2020,22(3):358-366
-
[19]
De La Franier B, Thompson M. Biosensors-Basel,2020,10(2):13
-
[20]
Wu S, Min H, Shi W, Cheng P. Adv. Mater.,2020,32(3):1805871
-
[21]
Wang Y, Pei H, Jia Y, Liu J, Li Z, Ai K, Lu Z, Lu L. J. Am. Chem. Soc.,2017,139(33):11616-11621
-
[22]
Chen X, Gui W, Liu H, Ma Q. Analyst,2017,142(21):4142-4149
-
[23]
WANG Xue-Ying, ZONG Zhao-Yun, JIAO Yu-Pei, XU Li-Na, WANG Yu-Song, LI Lin, LIU Xiao-Hui. Chinese J. Anal. Chem.,2019,47(2):249-255 王雪颖, 宗兆运, 焦玉佩, 许丽娜, 王昱淞, 栗琳, 刘晓蕙.分析化学,2019, 47(2):249-255
-
[24]
Huang Q, Lei H, Dong M, Tang H, Wang Y. Analyst,2019,144(13):3980-3987
-
[25]
De La Franier B, Thompson M. Biosens. Bioelectron.,2019,135:71-81
-
[26]
Zheng Z, Geng W C, Gao J, Wang Y Y, Sun H W, Guo D S. Chem. Sci.,2018,9(8):2087-2091
-
[27]
Kumar N, Singh A K. J. Clin. Diagnostic Res.,2018,12(4):QE1-QE7
-
[28]
Zhang Y, Liu Y, Li L, Wei J, Xiong S, Zhao Z. Talanta,2016,150:88-96
-
[29]
Yin R, Yang T, Su H, Ying L, Liu L, Sun C. Cancer Biomark.,2016,17(3):259-269
-
[30]
Yao D, Lin Z, Wu J. ACS Appl. Mater. Interfaces,2016,8(9):5847-5856
-
[31]
Yamashita R, Tabata Y, Iga E, Nakao M, Sano S, Kogure K, Tokumura A, Tanaka T. Lipids,2016,51(2):263-270
-
[32]
Piccoli R, De Rosa N, Davis S. Gynecological Cancers:Genetic and Epigenetic Targets and Drug Development, Gynecological Cancers in press,2016:79-95
-
[33]
Seballos L, Zhang J Z, Sutphen R. Anal. Bioanal. Chem.,2005,383(5):763-767
-
[34]
Aristizabal-Henao J J, Fernandes M F, Duncan R E, Stark K D. Lipids,2019,54(8):479-486
-
[35]
Lee J C, Byeon S K, Moon M H. Anal. Chem.,2017,89(9):4969-4977
-
[36]
Cífková E, Hájek R, Lísa M, Hollapek M. J. Chromatogr. A,2016,1439:65-73
-
[37]
Wang J, Sibrian-Vazquez M, Escobedo J O, Wang L, Chu Y H, Moore R G, Strongin R M. Analyst,2015,140(22):7572-7577
-
[38]
Triebl A, Trötzmüller M, Eberl A, Hanel P, Hartler J, Köfeler H C. J. Chromatogr. A,2014,1347:104-110
-
[39]
Onorato J M, Shipkova P, Minnich A, Aubry A F, Easter J, Tymiak A. J. Lipid Res., 2014,55(8):1784-1796
-
[40]
Clark J, Anderson K E, Juvin V, Smith T S, Karpe F, Wakelam M J O, Stephens L R, Hawkins P T. Nat. Methods,2011,8(3):267-272
-
[41]
Zhao Z, Xu Y. J. Chromatogr. B,2009,877(29):3739-3742
-
[42]
Scherer M, Schmitz G, Liebisch G. Clin. Chem.,2009,55(6):1218-1222
-
[43]
Guan W, Zhou M, Hampton C Y, Benigno B B, Walker D, Gray A, McDonald J F, Fernandez F M. BMC Bioinform.,2009,10:259
-
[44]
Shan L, Jaffe K, Li S, Davis L. J. Chromatogr. B,2008,864(1-2):22-28
-
[45]
Ogiso H, Suzuki T, Taguchi R. Anal. Biochem.,2008,375(1):124-131
-
[46]
Meleh M, Požlep B, Mlakar A, Meden-Vrtovec H, Zupančič-Kralj L. J. Chromatogr. B,2007,858(1):287-291
-
[47]
Tanaka T, Tsutsui H, Hirano K, Koike T, Tokumura A, Satouchi K. J. Lipid Res.,2004,45(11):2145-2150
-
[48]
Sutphen R, Xu Y, Wilbanks G D, Fiorica J, Grendys E C, LaPolla J P, Arango H, Hoffman M S, Martino M, Wakeley K, Griffin D, Blanco R W, Cantor A B, Xiao Y J, Krischer J P. Cancer Epidemiol. Biomarkers Prev.,2004,13(7):1185-1191
-
[49]
Holland W L, Stauter E C, Stith B J. J. Lipid Res.,2003,44(4):854-858
-
[50]
Kim H, Yoon H R, Pyo D. Bull. Korean Chem. Soc., 2002,23(8):1139-1143
-
[51]
Mergner J, Frejno M, List M, Papacek M, Chen X, Chaudhary A, Samaras P, Richter S, Shikata H, Messerer M, Lang D, Altmann S, Cyprys P, Zolg D P, Mathieson T, Bantscheff M, Hazarika R R, Schmidt T, Dawid C, Dunkel A, Hofmann T, Sprunck S, Falter-Braun P, Johannes F, Mayer K F X, Juergens G, Wilhelm M, Baumbach J, Grill E, Schneitz K, Schwechheimer C, Kuster B. Nature,2020,579:409-414
-
[52]
Zuvela P, Skoczylas M, Liu J J, Baczek T, Kaliszan R, Wong M W, Buszewski B. Chem. Rev.,2019,119(6):3674-3729
-
[53]
Kumari M, Schoiswohl G, Chitraju C, Paar M, Cornaciu I, Rangrez A Y, Wongsiriroj N, Nagy H M, Ivanova P T, Scott S A, Knittelfelder O, Rechberger G N, Birner-Gruenberger R, Eder S, Brown H A, Haemmerle G, Oberer M, Lass A, Kershaw E E, Zimmermann R, Zechner R. Cell Metab.,2012,15(5):691-702
-
[54]
Cao W, Cheng S, Yang J, Feng J, Zhang W, Li Z, Chen Q, Xia Y, Ouyang Z, Ma X. Nat. Commun.,2020,11(1):375
-
[55]
Holčapek M, Liebisch G, Ekroos K. Anal. Chem.,2018,90(7):4249-4257
-
[56]
Matyash V, Liebisch G, Kurzchalia T V, Shevchenko A, Schwudke D. J. Lipid Res.,2008,49(5):1137-1146
-
[57]
Wang J, Sibrian-Vazquez M, Escobedo J O, Lowry M, Wang L, Chu Y H, Moore R G, Strongin R M. Analyst,2013,138(22):6852-6859
-
[58]
Yoshikawa M, Tharpa K, Dima S O. Chem. Rev.,2016,116(19):11500-11528
-
[59]
ZHAO Ying, WANG Nan, GAO Hua-Long, GUO Zi-Xuan, LU An-Xiang, GUO Xiao-Jun, LU Jing-Hua, LUAN Yun-Xia. Chinese J. Anal. Chem.,2020,48(5):662-669 赵颖, 王楠, 高华龙, 郭子轩, 陆安祥, 郭晓军, 卢静华, 栾云霞.分析化学,2020,48(5):662-669
-
[60]
Siriwardane D A, Wang C, Jiang W, Mudalige T. Int. J. Pharm., 2020,578:119077
-
[61]
Antonelli M, Benedetti B, Cavaliere C, Cerrato A, Montone C M, Piovesana S, Lagana A, Capriotti A L. Food Chem.,2020,310:125860
-
[62]
Zhang Q, Nong Y, Liu Z, Gong L. Anal. Chem.,2019,91(22):14458-14466
-
[63]
Bozelli J C, Epand R M. Proteomics,2019,19(18):e1900138
-
[64]
Lee H C, Yokomizo T. Biochem. Biophys. Res. Commun.,2018,504(3):576-581
-
[65]
McDonald W S, Jones E E, Wojciak J M, Drake R R, Sabbadini R A, Harris N G. Am. J. Clin. Pathol.,2018,188(8):1779-1793
-
[66]
Kaya I, Zetterberg H, Blennow K, Hanrieder J. ACS Chem. Neurosci.,2018,9(7):1802-1817
-
[67]
Eum J Y, Lee J C, Yi S S, Kim I Y, Seong J K, Moon M H. J. Chromatogr. A,2020,1618:460849
-
[68]
Xu Y. Cancers, 2018,10(7):227
-
[69]
Shrestha P, Hussain D, Mulder R J, Taylor M C, Singh S P, Petrie J R, Zhou X R. Front. Plant Sci., 2018,9:1234
-
[70]
Inoue M, Okamoto Y, Atsumi Y, Shiojiri M, Hidaka M, Tanaka T, Tsutsumi T, Shirasaka N, Tokumura A. Biofactors,2018,44(6):548-557
-
[71]
Hou T, Taylor M C, Shrestha P, Singh S, Zhang Z J, Zhou X R. J. Chromatogr. A,2018,1572:100-105
-
[72]
Fukasawa K, Nakajima S, Gotoh M, Tanaka S, Murofushi H, Murakami-Murofushi K. J. Chromatogr. A,2018,1567:177-184
-
[73]
Aldi S, Matic L P, Hamm G, van Keulen D, Tempel D, Holmstrom K, Szwajda A, Nielsen B S, Emilsson V, Ait-Belkacem R, Lengquist M, Paulsson-Berne G, Eriksson P, Lindeman J H N, Gool A J, Stauber J, Hedin U, Hurt-Camejo E. Mol. Ther. Methods Clin. Dev., 2018,10:17-28
-
[74]
Zhang S Y, Shi W, Cheng P, Zaworotko M J. J. Am. Chem. Soc., 2015,137(38):12203-12206
-
[75]
Wang L, Sibrian-Vazquez M, Escobedo J O, Wang J, Moore R G, Strongin R M. Chem. Commun., 2015,51(9):1697-1700
-
[76]
Jiang T, Lu N, Yang J, Hang Y, Wang J, Zhao P, Hua J. RSC Adv.,2015,5(124):102863-102867
-
[77]
Correnti C, Clifton M C, Abergel R J, Allred B, Hoette T M, Ruiz M, Cancedda R, Raymond K N, Descalzi F, Strong R K. Structure,2011,19(12):1796-1806
-
[78]
HAO Yu-Jia, ZHU Guang-Ming. Chinese J. Anal. Chem.,2020,48(2):164-173 郝瑜佳, 朱光明.分析化学,2020,48(2):164-173
-
[79]
Lan M, Liu W, Wang Y, Ge J, Wu J, Zhang H, Chen J, Zhang W, Wang P. ACS Appl. Mater. Interfaces,2013,5(6):2283-2288
-
[80]
Zhao W, Liu W, Zhang W, Zeng L, Fan Z, Wu J, Wang P. Analyst,2012,137(8):1853-1859
-
[81]
Hurjui I, Neamtu A, Dorohoi D O. J. Mol. Struct.,2013,1044:134-139
-
[82]
Zhytniakivska O, Trusova V, Gorbenko G, Kirilova E, Kalnina I, Kirilov G, Molotkovsky J, Tulkki J, Kinnunen P. J. Fluoresc.,2014,24(3):899-907
-
[83]
Noguchi K, Herr D, Mutoh T, Chun J. Curr. Opin. Pharmacol.,2009,9(1):15-23
-
[84]
Nag S, Ma Q, Wang H, Chumnarnsilpa S, Lee W L, Larsson M, Kannan B, Hernandez-Valladares M, Burtnick L D, Robinson R C. Proc. Natl. Acad. Sci. USA,2009,106(33):13713-13718
-
[85]
Gremm D, Wegner A. Eur. J. Biochem.,1999,262(2):330-334
-
[86]
Xu Y, Shen Z, Wiper D W, Wu M, Morton R E, Elson P, Kennedy A W, Belinson J, Markman M, Casey G. J. Am. Med. Assoc., 1998,280(8):719-723
-
[1]
-

计量
- PDF下载量: 5
- 文章访问数: 937
- HTML全文浏览量: 112