Citation:
LI Ping, XU Wen-Hui, ZHANG Da-Wei, JIA Qiong. Application of Lectin Affinity Methods in Analysis and Detection of Glycoprotein Cancer Biomarkers[J]. Chinese Journal of Analytical Chemistry,
;2021, 49(9): 1451-1460.
doi:
10.19756/j.issn.0253-3820.210435
-
Glycoproteins play an important role in regulating various physiological processes of organisms. Abnormal protein glycosylation is usually associated with the formation and evolution of diseases such as cancer. Many specific glycoproteins can be used as the biomarkers for early cancer diagnosis or prognosis monitoring. Before identifying the glycoproteins with mass spectrometry, effective separation and enrichment of glycoproteins from complex biological samples is a necessary step. Lectins are selective for certain specific glycoproteins, and lectin affinity methods have been widely used in the separation and enrichment of glycoprotein. By taking the four kinds of cancers (breast cancer, lung cancer, colorectal cancer and prostate cancer) with the highest incidence as examples, this article reviews the applications of lectin affinity methods integrated with mass spectrometry in screening and analyzing cancer biomarkers.
-
Keywords:
- Lectin,
- Glycoprotein,
- Cancer,
- Biomarker,
- Review
-
-
-
[1]
SUNG H, FERLAY J, SIEGEL R L, LAVERSANNE M, SOERJOMATARAM I, JEMAL A, BRAY F. Ca-Cancer J. Clin., 2021, 71(3):209-249.
-
[2]
CLARK D, MAO L. Dis. Markers, 2012, 33(1):1-10.
-
[3]
SONG T T, WANG W, MENG L L, LIU Y, JIA X B, MAO X. Chin. Chem. Lett., 2017, 28(2):226-230.
-
[4]
CHEN M Y, SHI X F, DUKE R M, RUSE C I, DAI N, TARON C H, SAMUELSON J C. Nat. Commun., 2017, 8:15487.
-
[5]
SAJID M S, JOVCEVSKI B, PUKALA T L, JABEEN F, NAJAM UL HAQ M. Anal. Chem., 2019, 92(1):683-689.
-
[6]
ZHOU Y Y, XU Y, ZHANG C C, EMMER A, ZHENG H Q. Anal. Chem., 2019, 92(2):2151-2158.
-
[7]
JIE J Z, LIU D, ZOU X J. Chem. Commun., 2020, 56(6):908-911.
-
[8]
CHEN Y X, SHENG Q Y, HONG Y Y, LAN M B. Anal. Chem., 2019, 91(6):4047-4054.
-
[9]
LU Q, CHEN C, XIONG Y T, LI G D, ZHANG X F, ZHANG Y H, WANG D D, ZHU Z C, LI X L, QING G Y. Anal. Chem., 2020, 92(9):6269-6277.
-
[10]
KAILEMIA M J, XU G, WONG M, LI Q, GOONATILLEKE E, LEON F, LEBRILLA C B. Anal. Chem., 2018, 90(1):208-224.
-
[11]
LU H, ZHANG Y, YANG P. Natl. Sci. Rev., 2016, 3(3):345-364.
-
[12]
TIAN Y, TANG R Z, LIU L Y, YU Y, MA S J, GONG B L, OU J J. Talanta, 2020, 217:121082.
-
[13]
AHN Y H, SHIN P M, KIM Y S, OH N R, JI E S, KIM K H, LEE Y J, KIM S H, YOO J S. Analyst, 2013, 138(21):6454-6462.
-
[14]
YU H J, SHU J, LI Z. Expert Rev. Proteomics, 2020, 17(1):27-39.
-
[15]
LI Y, LI X, LI L, XIAO B, WU J, LI H, LI D, HE C. Chin. Chem. Lett., 2021, 32(2):735-739.
-
[16]
ZHENG H J, ZHU T G, LI X Q, MA J T, JIA Q. Anal. Chim. Acta, 2017, 983:141-148.
-
[17]
ZHU J, WARNER E, PARIKH N D, LUBMAN D M. Mass Spectrom. Rev., 2019, 38(3):265-290.
-
[18]
KIM E H, MISEK D E. Int. J. Proteomics, 2011, 2011:601937.
-
[19]
HASHIM O H, JAYAPALAN J J, LEE C S. Peer J, 2017, 5:e3784.
-
[20]
LASTOVICKOVA M, STROUHALOVA D, BOBALOVA J. J. Proteome Res., 2020, 19(5):1885-1899.
-
[21]
BADR H A, ALSADEK D M, DARWISH A A, ELSAYED A I, BEKMANOV B O, KHUSSAINOVA E M, ZHANG X, CHO W C, DJANSUGUROVA L B, LI C Z. Expert Rev. Proteomics, 2014, 11(2):227-236.
-
[22]
SKOTLAND T, EKROOS K, KAUHANEN D, SIMOLIN H, SEIERSTAD T, BERGE V, SANDVIG K, LLORENTE A. Eur. J. Cancer, 2017, 70:122-132.
-
[23]
CAMPOSCARRILLO A, WEITZEL J N, SAHOO P, ROCKNE R, MOKHNATKIN J V, MURTAZA M, GRAY S W, GOETZ L, GOEL A, SCHORK N. Pharmacol. Ther., 2020, 207:107458.
-
[24]
MANTUANO N R, NATOLI M, ZIPPELIUS A, LÄUBLI H. J. Immunother. Cancer, 2020, 8(2):e001222
-
[25]
ZHOU B, ZHOU Z, CHEN Y L, DENG H T, CAI Y L, RAO X L, YIN Y X, RONG L. Clin. Biochem., 2020, 76:5-10.
-
[26]
STOWELL S R, JU T, CUMMINGSR D. Annu. Rev. Pathol.:Mech. Dis., 2015, 10:473-510.
-
[27]
ZHENG H J, JIA J X, LI Z, JIA Q. Anal. Chem., 2020, 92(3):2680-2689.
-
[28]
ZHANG Y, ZHAO W, MAO Y, CHEN Y, WANG S, ZHONG Y, SU T, GONG M, DU D, LU X, CHENG J, YANG H. Mol. Cell. Proteomics, 2021, 20:100058.
-
[29]
ZHONG J, HUANG Y, MECHREF Y. Anal. Chem., 2021, 93(14):5763-5772.
-
[30]
MIYOSHI E, NAKANO M. Proteomics, 2008, 8(16):3257-3262.
-
[31]
UEDA K. Proteomics:Clin. Appl., 2013, 7(9-10):607-617.
-
[32]
QI H, LI Z, ZHENG H J, FU L, JIA Q. Chin. Chem. Lett., 2019, 30(12):2181-2185.
-
[33]
AHN Y H, SHIN P M, OH N R, PARK G W, KIM H, YOO J S. J. Proteomics, 2012, 75(17):5507-5515.
-
[34]
KAILEMIA M J, RUHAAK L R, LEBRILLA C B, AMSTER I J. Anal. Chem., 2014, 86(1):196-212.
-
[35]
YU H J, LI X J, CHEN M T, ZHANG F, LIU X W, YU J M, ZHONG Y G, SHU J, CHEN W T, DU H Q, ZHANG K, ZHANG C, ZHANG J, XIE H L, LI Z. Front. Oncol., 2019, 9:636.
-
[36]
ZHU H Y, LIU M Y, YU H J, LIU X W, ZHONG Y G, SHU J, FU X L, CAI G Y, CHEN X M, GENG W J. J. Diabetes Res., 2017, 2017:5728087.
-
[37]
QING G Y, YAN J Y, HE X N, LI X L, LIANG X M. TrAC-Trends Anal. Chem., 2020, 124:115570.
-
[38]
XU B, ZHOU L P, WANG F J, QIN H Q, ZHU J, ZOU H F. Chem. Commun., 2012, 48(12):1802-1804.
-
[39]
WANG M Z, GAO J J, ZHAO B, THAYUMANAVAN S, VACHET R W. Analyst, 2019, 144(21):6321-6326.
-
[40]
HIRABAYASHI J, KUNO A, TATENO H. Electrophoresis, 2011, 32(10):1118-1128.
-
[41]
LIU Y, FU D, XIAO Y, GUO Z, YU L, LIANG X. Anal. Methods, 2015, 7(1):25-28.
-
[42]
SILSIRIVANIT ATIT. Adv. Clin. Chem., 2019, 89:189-213.
-
[43]
COTTON S, AZEVEDO R, GAITEIRO C, FERREIRA D, LIMA L, PEIXOTO A, FERNANDES E, NEVES M, NEVES D, AMARO T. Mol. Oncol., 2017, 11(8):895-912.
-
[44]
TOTTEN S M, KULLOLLI M, PITTERI S J. Meth. Mol. Biol., 2017, 1550:99-113.
-
[45]
PEARSON A J, GALLAGHER E S. Meth. Mol. Biol., 2019, 1928:389-408.
-
[46]
FANAYAN S, HINCAPIE M, HANCOCK W S. Electrophoresis, 2012, 33(12):1746-1754.
-
[47]
ZHANG L, LUO S, ZHANG B L. mAbs, 2016, 8(3):524-535.
-
[48]
ROBAJAC D, KRIŽÁKOVÁ M, MASNIKOSA R, MILJUŠ G, ŠUNDERIC' M, NEDIC' O, KATRLÍK J. Int. J. Biol. Macromol., 2020, 144:932-937.
-
[49]
MISLOVIČOVÁ D, KATRLÍK J, PAULOVIČOVÁ E, GEMEINER P, TKAC J. Colloids Surf., B, 2012, 94:163-169.
-
[50]
SILSIRIVANIT A. Adv. Clin. Chem., 2019, 89:189-213.
-
[51]
WU D, LI J W, STRUWE W B, ROBINSON C V. Chem. Sci., 2019, 10(19):5146-5155.
-
[52]
BROOKS S A. Meth. Mol. Biol., 2017, 1560:93-107.
-
[53]
YUE D, WANG M, DENG F, YIN W, ZHAO H, ZHAO X, XU Z. Chin. Chem. Lett., 2018, 29(5):648-656.
-
[54]
MOSELEY T W. Clin. Obstet. Gynecol., 2016, 59(2):362-379.
-
[55]
QI H, JIANG L, JIA Q. Chin. Chem. Lett., 2021:https://doi.org/10.1016/j.cclet.2021.01.037.
-
[56]
LIU X W, YU H J, QIAO Y, YANG J J, SHU J, ZHANG J X, ZHANG Z W, HE J J, LI Z. EBioMedicine, 2018, 28:70-79.
-
[57]
YANG J J, LIU X W, SHU J, HOU Y, CHEN M T, YU H J, MA T R, DU H Q, ZHANG J X, QIAO Y. Glycoconjugate J., 2020, 37(3):373-394.
-
[58]
SONG E, ZHU R, HAMMOND Z T, MECHREF Y. J. Proteome Res, 2014, 13(11):4808-4820.
-
[59]
FRY S A, SINCLAIR J, TIMMS J F, LEATHEM A J, DWEK M V. Cancer Lett., 2013, 328(2):335-344.
-
[60]
LOBO M D P, MORENO F B M B, SOUZA G H M F, VERDE S M M L, MOREIRA R D A, MONTEIRO MOREIRA A C D O. Front. Oncol., 2017, 7:14.
-
[61]
LEE L Y, HINCAPIE M, PACKER N, BAKER M S, HANCOCK W S, FANAYAN S. J. Sep. Sci., 2012, 35(18):2445-2452.
-
[62]
CHEN Z W, YU Q, HAO L, LIU F B, JOHNSON J, TIAN Z C, KAO W J, XU W, LI L J. Analyst, 2018, 143(11):2508-2519.
-
[63]
LIU Y, XUN X H, YI J M, XIANG Y, HUA J. Chin. Chem. Lett., 2017, 28(5):1093-1098.
-
[64]
WALLACE W A H. Histopathology, 2009, 54(1):28-42.
-
[65]
NARAYANASAMY A, AHN J M, SUNG H J, KONG D H, HA K S, LEE S Y, CHO J Y. J. Proteomics, 2011, 74(12):2948-2958.
-
[66]
WU S G, LIU Y N, TSAI M F, CHANG Y L, YU C J, YANG P C, YANG J C, WEN Y F, SHIH J Y. Oncotarget, 2016, 7(11):12404.
-
[67]
HIRAO Y, MATSUZAKI H, IWAKI J, KUNO A, KAJI H, OHKURA T, TOGAYACHI A, ABE M, NOMURA M, NOGUCHI M, IKEHARA Y, NARIMATSU H. J. Proteome Res., 2014, 13(11):4705-4716.
-
[68]
JIN Y X, WANG J, YE X D, SU Y T, YU G J, YANG Q, LIU W, YU W H, CAI J, CHEN X, LIANG Y, CHEN Y J, WONG B H C, FU X N, SUN H. Br. J. Cancer, 2016, 114(5):532-544.
-
[69]
LIANG Y Q, MA T R, THAKUR A, YU H J, GAO L, SHI P Y, LI X T, REN H, JIA L Y, ZHANG S, LI Z, CHEN M W. Glycobiology, 2015, 25(3):331-340.
-
[70]
NAVARRO M, NICOLAS A, FERRANDEZ A, LANAS A. World J. Gastroenterol., 2017, 23(20):3632.
-
[71]
SULLIVAN T, SULLIVAN R, GINSBURG O M. Disease Control Priorities (Third Edition). Washington:World Bank. 2015, 3:211-222.
-
[72]
LI Y G, WEN T, ZHU M Z, LI L X, WEI J, WU X L, GUO M Z, LIU S P, ZHAO H Y, XIA S Y, HUANG W L, WANG P Y, WU Z Z, ZHAO L Q, SHUI W Q, LI Z, YIN Z N. Mol. BioSyst., 2013, 9(7):1877-1887.
-
[73]
ZAMOROVA M, HOLAZOVA A, MILJUS G, ROBAJAC D, SUNDERIC M, MALENKOVIC V, DUKANOVIC B, GEMEINER P, KATRLIK J, NEDIC O. Anal. Methods, 2017, 9(18):2660-2666.
-
[74]
YAO L, LAO W F, ZHANG Y, TANG X R, HU X T, HE C, HU X F, XU L X. J. Proteome Res., 2012, 11(6):3281-3294.
-
[75]
SHIMOMURA M, NAKAYAMA K, AZUMA K, TERAO N, NISHINO K, TAKAMATSU S, NAKANO M, TAKAHASHI S, KOBAYASHI Y, MURATA K, KAMADA Y, MIYOSHI E. Clin. Chim. Acta, 2015, 446:30-36.
-
[76]
MOTTET N, BELLMUNT J, BOLLA M, BRIERS E, CUMBERBATCH M G, DE SANTIS M, FOSSATI N, GROSS T, HENRY A M, JONIAU S, LAM T B, MASON M D, MATVEEV V B, MOLDOVAN P C, VAN DEN BERGH R C N, VAN DEN BROECK T, VAN DER POEL H G, VAN DER KWAST T H, ROUVIERE O, SCHOOTS I G, WIEGEL T, CORNFORD P. Eur. Urol., 2017, 71(4):618-629.
-
[77]
SAINI S. Cell Oncol., 2016, 39(2):97-106.
-
[78]
LI Q K, CHEN L, AO M H, CHIU J H, ZHANG Z, ZHANG H, CHAN D W. Theranostics, 2015, 5(3):267-276.
-
[79]
WANG C, HOTI N, LIH T S M, SOKOLL L J, ZHANG R, ZHANG Z, ZHANG H, CHAN D W. Clin. Proteomics, 2019, 16:13.
-
[80]
JAYAPALAN J J, NG K L, RAZACK A H A, HASHIM O H. Electrophoresis, 2012, 33(12):1855-1862.
-
[81]
FUJITA K, SHIMOMURA M, UEMURA M, NAKATA W, SATO M, NAGAHARA A, NAKAI Y, TAKAMATSU S, MIYOSHI E, NONOMURA N. Prostate, 2014, 74(10):1052-1058.
-
[82]
TAKAYAMA H, OHTA M, IWASHITA Y, UCHIDA H, SHITOMI Y, YADA K, INOMATA M. BMC Cancer, 2020, 20(1):192.
-
[83]
NAPOLETANO C, STEENTOFF C, BATTISTI F, YE Z, RAHIMI H, ZIZZARI I G, DIONISI M, CERBELLI B, TOMAO F, FRENCH D, D'AMATI G, PANICI P B, VAKHRUSHEV S, CLAUSEN H, NUTI M, RUGHETTI A. Cancers, 2020, 12(10):2841.
-
[84]
AZEVEDO R, SILVA A M N, REIS C A, SANTOS L L, FERREIRA J A. J. Proteomics, 2018, 171:95-106.
-
[85]
ZHONG Y, SUN X X, ZHANG P, QIN X, CHEN W, GUO Y, JIA Z, BIAN H, LI Z. Mol. BioSyst., 2016, 12(2):598-605.
-
[86]
BIE Z, CHEN Y, YE J, WANG S, LIU Z. Angew. Chem., Int. Ed., 2015, 54(35):10211-10215.
-
[87]
BIE Z, XING R, HE X, MA Y, CHEN Y, LIU Z. Anal. Chem., 2018, 90(16):9845-9852.
-
[1]
-
-
-
[1]
Xiaowei TANG , Shiquan XIAO , Jingwen SUN , Yu ZHU , Xiaoting CHEN , Haiyan ZHANG . A zinc complex for the detection of anthrax biomarker. Chinese Journal of Inorganic Chemistry, 2024, 40(10): 1850-1860. doi: 10.11862/CJIC.20240173
-
[2]
Qi Wang , Yicong Gao , Feng Lu , Quli Fan . Preparation and Performance Characterization of the Second Near-Infrared Phototheranostic Probe: A New Design and Teaching Practice of Polymer Chemistry Comprehensive Experiment. University Chemistry, 2024, 39(11): 342-349. doi: 10.12461/PKU.DXHX202404141
-
[3]
Jiahui CHEN , Tingting ZHENG , Xiuyun ZHANG , Wei LÜ . Research progress of near-infrared absorption inorganic nanomaterials in photothermal and photodynamic therapy of tumors. Chinese Journal of Inorganic Chemistry, 2024, 40(12): 2396-2414. doi: 10.11862/CJIC.20240106
-
[4]
Xin Lv , Hongxing Zhang , Kaibo Duan , Wenhui Dai , Zhihui Wen , Wei Guo , Junsheng Hao . Lighting the Way Against Cancer: Photodynamic Therapy. University Chemistry, 2024, 39(5): 70-79. doi: 10.3866/PKU.DXHX202309090
-
[5]
Zian Lin , Yingxue Jin . Matrix-Assisted Laser Desorption/Ionization Mass Spectrometry (MALDI-MS) for Disease Marker Screening and Identification: A Comprehensive Experiment Teaching Reform in Instrumental Analysis. University Chemistry, 2024, 39(11): 327-334. doi: 10.12461/PKU.DXHX202403066
-
[6]
Xinyi Hong , Tailing Xue , Zhou Xu , Enrong Xie , Mingkai Wu , Qingqing Wang , Lina Wu . Non-Site-Specific Fluorescent Labeling of Proteins as a Chemical Biology Experiment. University Chemistry, 2024, 39(4): 351-360. doi: 10.3866/PKU.DXHX202310010
-
[7]
Yongjie ZHANG , Bintong HUANG , Yueming ZHAI . Research progress of formation mechanism and characterization techniques of protein corona on the surface of nanoparticles. Chinese Journal of Inorganic Chemistry, 2024, 40(12): 2318-2334. doi: 10.11862/CJIC.20240247
-
[8]
Haitang WANG , Yanni LING , Xiaqing MA , Yuxin CHEN , Rui ZHANG , Keyi WANG , Ying ZHANG , Wenmin WANG . Construction, crystal structures, and biological activities of two LnⅢ3 complexes. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1474-1482. doi: 10.11862/CJIC.20240188
-
[9]
Junjie Zhang , Yue Wang , Qiuhan Wu , Ruquan Shen , Han Liu , Xinhua Duan . Preparation and Selective Separation of Lightweight Magnetic Molecularly Imprinted Polymers for Trace Tetracycline Detection in Milk. University Chemistry, 2024, 39(5): 251-257. doi: 10.3866/PKU.DXHX202311084
-
[10]
Zeyu XU , Anlei DANG , Bihua DENG , Xiaoxin ZUO , Yu LU , Ping YANG , Wenzhu YIN . Evaluation of the efficacy of graphene oxide quantum dots as an ovalbumin delivery platform and adjuvant for immune enhancement. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1065-1078. doi: 10.11862/CJIC.20240099
-
[11]
Yixuan Zhu , Qingtong Wang , Jin Li , Lin Chen , Junlong Zhao . Blog of Oxytocin. University Chemistry, 2024, 39(9): 134-140. doi: 10.12461/PKU.DXHX202310090
-
[12]
Xin MA , Ya SUN , Na SUN , Qian KANG , Jiajia ZHANG , Ruitao ZHU , Xiaoli GAO . A Tb2 complex based on polydentate Schiff base: Crystal structure, fluorescence properties, and biological activity. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1347-1356. doi: 10.11862/CJIC.20230357
-
[13]
Yukun Xing , Xiaoyu Xie , Fangfang Chen . A Sunlit Gift: Vitamin D. University Chemistry, 2024, 39(9): 28-34. doi: 10.12461/PKU.DXHX202402006
-
[14]
Jijun Sun , Qianlang Wang , Qian Chen , Quanqin Zhao , Shumei Zhai . The Antibiotic Legion’s Manifesto to Human Allies. University Chemistry, 2025, 40(4): 307-321. doi: 10.12461/PKU.DXHX202405206
-
[15]
Yaling Chen . Basic Theory and Competitive Exam Analysis of Dynamic Isotope Effect. University Chemistry, 2024, 39(8): 403-410. doi: 10.3866/PKU.DXHX202311093
-
[16]
Xiaoning TANG , Junnan LIU , Xingfu YANG , Jie LEI , Qiuyang LUO , Shu XIA , An XUE . Effect of sodium alginate-sodium carboxymethylcellulose gel layer on the stability of Zn anodes. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1452-1460. doi: 10.11862/CJIC.20240191
-
[17]
Zhenhua Wang , Haoyang Feng , Xiaoyang Shao , Wenru Fan . Vitamins in Solid Propellants: Controlled Synthesis of Neutral Macromolecular Bonding Agents. University Chemistry, 2025, 40(4): 1-9. doi: 10.3866/PKU.DXHX202401007
-
[18]
. . Chinese Journal of Inorganic Chemistry, 2024, 40(12): 0-0.
-
[19]
Jianjun LI , Mingjie REN , Lili ZHANG , Lingling ZENG , Huiling WANG , Xiangwu MENG . UV-assisted degradation of tetracycline hydrochloride by MnFe2O4@activated carbon activated persulfate. Chinese Journal of Inorganic Chemistry, 2024, 40(10): 1869-1880. doi: 10.11862/CJIC.20240187
-
[20]
Shijie Li , Ke Rong , Xiaoqin Wang , Chuqi Shen , Fang Yang , Qinghong Zhang . Design of Carbon Quantum Dots/CdS/Ta3N5 S-Scheme Heterojunction Nanofibers for Efficient Photocatalytic Antibiotic Removal. Acta Physico-Chimica Sinica, 2024, 40(12): 2403005-. doi: 10.3866/PKU.WHXB202403005
-
[1]
Metrics
- PDF Downloads(11)
- Abstract views(873)
- HTML views(146)