期刊文献+

^(89)Zr标记抗体PET显像技术在药物研发中的应用 被引量:1

Application of PET with ^(89)Zr labeled antibodies in drug research and development
原文传递
导出
摘要 ^(89)Zr标记抗体正电子成像术(PET)显像可实时可视化提供抗体在生物体内药物代谢动力学特征,同时可在疗效监测、安全性预估、患者筛选、剂量指导等方面提供客观依据,作为常规抗体药物研发方法的有效补充,加之其高分辨率、高灵敏度、自身对照以及可定量等特点,已被应用于抗体药物的研发。本文综述了PET显像、^(89)Zr、抗体及^(89)Zr标记后PET显像应用等方面的研究现状,并对^(89)Zr标记PET显像在抗体药物研发中的应用前景进行了展望。 Position emission tomography(PET)with 89Zr-labeled antibodies can provide real-time visualized information of the pharmacokinetics characteristic of antibodies in vivo as well as efficacy monitoring,safety estimation,patient stratification,planning of radioimmunotherapy and so on.As an effective supplement method to conventional antibodies development and in addition to the characteristics of high resolution,high sensitivity,self-control and quantifiability,it has been already applied to the research and development of antibody drugs.This review summarized the research progress in PET,isotope 89Zr,antibodies,and provided many appealing examples of PET with 89Zr-labeled antibodies,while future directions are outlined.
作者 王燕 杨敏 缪丽燕 WANG Yan;YANG Min;MIAO Li-yan(Department of Clinical Pharmacology,the First Affiliated Hospital of Soochow University,Suzhou 215006,China;College of Pharmacy,Soochow University,Suzhou 215000,China;Molecular Imaging Centre,Jiangsu Institute of Nuclear Medicine,Wuxi 214063,China)
出处 《中国新药杂志》 CAS CSCD 北大核心 2019年第8期954-960,共7页 Chinese Journal of New Drugs
关键词 89Zr 正电子成像术 抗体 药物研发 应用 89Zr position emission tomography antibody drug development application
  • 相关文献

参考文献6

二级参考文献89

  • 1[6]Joanna S,Fowler ND,Volkow GJ,et al.PET and Drug Research and Devel opment[J].J Nucl Med,1999,40(7)∶1154-1163.
  • 2[1]Ding YS,Fowler JS,Dexvey Sl,et al.Synthesis and PET studie s of[JF18,D,Z]BMY-14802,a potential antipsychotic drug[J].J Nucl Me d,1993,34(2)∶246-254.
  • 3[2]Chatziioannou AF,Chery SR,Yiping S,et al.Performance Evaluation o f microPET: A High-Resolution Lutetium Oxyorthosilicate PET Scanner for Animal Imaging[J].J Nucl Med,1999,40(7)∶1164-1175.
  • 4[3]Bloomfield PM,Rajeswaran S,Spinks TJ,et al.The design and physical characteristics of a small animal positron emission tomograph[J].Phys Med B iol,1995,40(7)∶1105-1126.
  • 5[4]Cutler PD,Cherry SR,Hoffman EJ,et al.Design features and performance of a PET system for animal research[J].J Nucl Med,1992,33(4)∶595-604.
  • 6[5]Marriott CJ,Cadorette JE,Lecomte R,et al.High-resolution PET imaging and quantitation of pharmaceutical biodistributions in a small animal using ava lanche photodiode detectors[J].J Nucl Med,1994,35(8)∶1390-1396.
  • 7HUTCHINS CD, MILLER MA, SOON VC, et al. Small animal PET imaging[J]. fLARJ, 2008, 49 (1 ) : 54 - 65 .
  • 8SCHNOCKEL U, HERMANN S, STECCER L, et al. SmaIl-ani?mal PET: a promising, non-invasive tool in pre-clinical research[J]. EurJ Pharm Biopharm, 2010,74 ( 1 ) : 50 - 54.
  • 9SHINCAKI T, TAKASHIMA T, UUlN R, et al. Evaluation of Oatp and Mrp2 activities in hepatobiliary excretion using newly developed positron emission tomography tracer III CJ dehydrop?ravastatin in rats[J].J Pharmacol Exp Ther, 2013,347 ( 1 ) : 193 - 202.
  • 10HEJ, YU Y, PRASAD B, et al. PET imaging of Oatp-mediated hepatobiliary transport of[11 C] rosuvastatin in the rat[J]. Mol Pharm, 2014,11(8): 2745 -2754.

共引文献39

同被引文献5

  • 1王立振,杨敏.^(89)Zr标记放射性药物应用进展[J].同位素,2016,29(2):121-128. 被引量:3
  • 2程思源,洪浩,朱小华.89Zr正电子显像剂的制备及进展[J].中华核医学与分子影像杂志,2017,37(11):733-737. 被引量:7
  • 3陈文,魏洪源,刘宁,罗顺忠.正电子核素^(89)Zr:药物化学及其生物体内行为评价的研究新进展[J].核化学与放射化学,2018,40(1):11-22. 被引量:7
  • 4王风,郭晓轶,刘特立,丁立新,夏雷,丁缙,孟祥溪,蒋金泉,朱华,杨志.固体靶PET核素89Zr的制备、质量控制和抗体标记[J].中华核医学与分子影像杂志,2020,40(5):294-297. 被引量:4
  • 5H.Agakishiev,M.M.Aggarwal,Z.Ahammed,A.V.Alakhverdyants,I.Alekseev,J.Alford,B.D.Anderson,C.D.Anson,D.Arkhipkin,G.S.Averichev,J.Balewski,D.R.Beavis,N.K.Behera,R.Bellwied,M.J.Betancourt,R.R.Betts,A.Bhasin,A.K.Bhat,H.Bichsel,J.Bieleik,J.Bielcikova,B.Biritz,L.C.Bland,W.Borowski,J.Bouchet,E.Braidot,A.V.Brandin,A.Bridgeman,S.G.Brovko,E.Bruna,S.Bueltmann,I.Bunzarov,T.P.Burton,X.Z.Cai,H.Caines,M.Calderon de la Barca Sanchez,D.Cebra,R.Cendejas,M.C.Cervantes,Z.Chajecki,P.Chaloupka,S.Chattopadhyay,H.F.Chen,J.H.Chen,J.Y.Chen,L.Chen,J.Cheng,M.Cherney,A.Chikanian,K.E.Choi,W.Christie,P.Chung,M.J.M.Codrington,R.Corliss,J.G.Cramer,H.J.Crawford,S.Dash,A.Davila Leyva,L.C.De Silvat,R.R.Debbe,T.G.Dedovich,A.A.Derevschikov,R.Derradi de Souza,L.Didenko,P.Djawotho,S.M.Dogra,X.Dong,J.L.Drachenberg,J.E.Draper,J.C.Dunlop,L.G Efimov,M.Elnim,J.Engelage,G Eppley,M.Estienne,L.Eun,O.Evdokimov,R.Fatemi,J.Fedorisin,A.Feng,R.G.Fersch,P.Filip,E.Finch,V.Fine,Y.Fisyak,C.A.Gagliardi,D.R.Gangadharan,A.Geromitsos,F.Geurts,P.Ghosh,Y.N.Gorbunov,A.Gordon,O.Grebenyuk,D.Grosnick,S.M.Guertin,A.Gupta,W.Guryn,B.Haag,O.Hajkova,A.Hamed,L-X.Han,J.W.Harris,J.P.Hays-Wehle,M.Heinz,S.Heppelmann,A.Hirsch,E.Hjort,G.W.Hoffmann,D.J.Hofiman,B.Huang,H.Z.Huang,T.J.Humanic,L.Huo,G.Igo,P.Jacobs,W.W.Jacobs,C.Jena,F.Jin,J.Joseph,E.G.Judd,S.Kabana,K.Kang,J.Kapitan,K.Kauder,H.Ke,D.Keane,A.Kechechyan,D.Kettler,D.P.Kikola,J.Kiryluk,A.Kisiel,V.Kizka,A.G.Knospe,D.D.Koetke,T.Kollegger,J.Konzer,I.Koralt,L.Koroleva,W.Korsch,L.Kotchenda,V.Kouchpil,P.Kravtsov,K.Krueger,M.Krus,L.Kumar,P.Kurnadi,M.A.C.Lamont,J.M.Landgraf,S.LaPointe,J.Lauret,A.Lebedev,R.Lednicky,J.H.Lee,W.Leight,M.J.LeVine,C.Lil,L.Li,N.Li,W.Li,X.Li,X.Li,Y.Li,Z.M.Li,M.A.Lisa,F.Liu,H.Liu,J.Liu,T.Ljubicic,W.J.Llope,R.S.Longacre,W.A.Love,Y.Lu,E.V.Lukashov,X.Luo,G.L.Ma,Y.G.Mai,D.P.Mahapatra,R.Majka,O.I.Mall,L.K.Mangotra,R.Manweiler,S.Margetis,C.Markert,H.Masui,H.S.Matis,Yu.A.Matulenko,D.MeDonald,T.S.McShane,A.Meschanin,R.Milner,N.G.Minaev,S.Mioduszewski,A.Mischke,M.K.Mitrovski,B.Mohanty,M.M.Mondal,B.Morozov,D.A.Morozov,M.G.Munhoz,M.Naglis,B.K.Nandi,T.K.Nayak,P.K.Netrakanti,L.V.Nogach,S.B.Nurushev,G.Odyniec,A.Ogawa,Oh,Ohlson,V.Okorokov,E.W.Oldag,D.Olsont,M.Pachr,B.S.Page,S.K.Pal,Y.Pandit,Y.Panebratsev,T.Pawlak,H.Pei,T.Peitzmann,C.Perkins,W.Peryt,S.C.Phatak,P.Pile,M.Planinic,M.A.Ploskon,J.Pluta,D.Plyku,N.Poljak,A.M.Poskanzer,B.V.K.S.Potukuchi,C.B.Powell,D.Prindle,N.K.Pruthi,A.M.Poskanzer,B.V.K.S.Potukuchi,B.Powell,D.Prindle,N.K.Pruthi,P.R.Pujahar,J.Putschke,H.Qiu,R.Raniwala,S.Raniwala,R.L.Ray,R.Redwine,R.Reed,H.G.Riter,J.B.Roberts,O.V.Rogachevskiy,J.L.Romero,A.Rose,L.Ruan,J.Rusnak,N.R.Sahoo,S.Sakai,I.Sakrejda,T.Sakuma,S.Salur,J.Sandweiss,E.Sangaline,A.Sarkar,J.Schambach,R.P.Scharenberg,A.M.Schmah,N.Schmitz,T.R.Schuster,J.Seele,J.Seger,I.Selyuzhenkov,P.Seyboth,E.Shahaliev,M.Shao,M.Sharma,S.S.Shi,Q.Y.Shou,E.P.Sichtermann,F.Simon,R.N.Singaraju,M.J.Skoby,N.Smirnov,H.M.Spinka,B.Srivastava,T.D.S.Stanislaus,D.Staszak,S.G.Steadman,J.R.Stevens,R.Stock,M.Strikhanov,B.Stringfellow,A.A.P.Suaide,M.C.Suarez,N.L.Subba,M.Sumbera,X.M.Sun,Y.Sun,Z.Sun,B.Surrow,D.N.Svirida,T.J.M.Symons,A.Szanto de Toledo,J.Takahashi,A.H.Tang,Z.Tang,L.H.Tarini,T.Tarnowsky,D.Thein,J.H.Thomas,J.Tian,A.R.Timmins,D.Tlusty,M.Tokarev,V.N.Tram,S.Trentalange,R.E.Tribble,Tribedy,O.D.Tsai,T.Ullrich,D.G.Underwood,G.Van Buren,G.van Nieuwenhuizen,J.A.Vanfossen,R.Varma,G.M.S.Vasconcelos,A.N.Vasiliev,F.Videbaek,Y.P.Viyogi,S.Vokal,M.Wadat,M.Walker,F.Wang,G.Wang,H.Wang,J.S.Wang,Q.Wang,X.L.Wang,Y.Wang,G.Webb,J.C.Webb,G.D.Westfall,C.Whitten,H.Wieman,S.W.Wissink,R.Witt,W.Witzke,Y.F.Wu,Xiao,W.Xie,H.Xu,N.Xu,Q.H.Xu,W.Xu,Y.Xu,Z.Xu,L.Xue,Y.Yang,P.Yepes,K.Yip,I-K.Yoo,M.Zawisza,H.Zbroszczyk,W.Zhan,J.B.Zhang,S.Zhang,W.M.Zhang,X.P.Zhang,Y.Zhang,Z.P.Zhang,J.Zhao,C.Zhong,W.Zhou,X.Zhu,Y.H.Zhu,R.Zoulkarneev,Y.Zoulkarneeva.Measurements of dihadron correlations relative to the event plane in Au+Au collisions at√^(S)NN=200 GeV[J].Chinese Physics C,2021,45(4):198-241. 被引量:351

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部