icon fsr

文献詳細

雑誌文献

臨床検査52巻11号

2008年10月発行

文献概要

特集 ホルモンの病態異常と臨床検査 総論 3.ホルモンの検査

6) アプタマー解析

著者: 上野真吾1 坂井貴文2

所属機関: 1埼玉大学大学院理工学研究科 2埼玉大学大学院理工学研究科生命科学部門

ページ範囲:P.1151 - P.1158

文献購入ページに移動
はじめに

 アプタマーとは有機小分子や蛋白質など様々な物質に特異的に結合する能力を有する核酸もしくはペプチドであり,その結合能を利用して,病原蛋白質の機能を阻害する医薬品,抗体に代わる検出ツールとしての利用が期待されている.事実,近年の飛躍的な技術の進歩により,多くのアプタマーが創製され,すでに医薬品として認可を受けているものもある.本稿では,アプタマーを利用した医薬・診断薬開発やバイオセンシング開発の状況について概説する.

参考文献

selection of RNA molecules that bind specific ligands. Nature 346:818-822, 1990
2) Tuerk C, Gold L:Systematic evolution of ligands by exponential enrichment:RNA ligands to bacteriophage T4 DNA polymerase. Science 249:505-510, 1990
3) Winkler W, Nahvi A, Breaker RR:Thiamine derivatives bind messenger RNAs directly to regulate bacterial gene expression. Nature 419:952-956, 2002
4) Nahvi A, Sudarsan N, Ebert MS, et al:Genetic control by a metabolite binding mRNA. Chem Biol 9:1043, 2002
5) Bock LC, Griffin LC, Latham JA, et al:Selection of single-stranded DNA molecules that bind and inhibit human thrombin. Nature 355:564-566, 1992
6) Ðapić V, Abdomerović V, Marrington R, et al:Biophysical and biological properties of quadruplex oligodeoxyribonucleotides. Nucleic Acids Res 31:2097-2107, 2003
7) Williams KP, Liu XH, Schumacher TN, et al:Bioactive and nuclease-resistant L-DNA ligand of vasopressin. Proc Natl Acad Sci USA 94:11285-11290, 1997
by an RNA-Spiegelmer. Proc Natl Acad Sci USA 101:13174-13179, 2004
9) Gening LV, Klincheva SA, Gusev AS, et al:SSCP screening of individual aptamers. BioTechniques 31:828-834, 2001
10) Kim YS, Jung HS, Matsuura T, et al:Electrochemical detection of 17β-estradiol using DNA aptamer immobilized gold electrode chip. Biosens Bioelectron 22:2525-2531, 2007
11) Drolet DW, Moon-McDermott L, Romig TS:An enzyme-linked oligonucleotide assay. Nat Biotechnol 14:1021-1025, 1996
12) Li W, Wang K, Tan W, et al:Aptamer-based analysis of angiogenin by fluorescence anisotropy. Analyst 132:107-113, 2007
13) Liss M, Petersen B, Wolf H, et al:An aptamer-based quartz crystal protein biosensor. Anal Chem 74:4488-4495, 2002
14) Li Y, Lee H, Corn R:Detection of protein biomarkers using RNA aptamer microarrays and enzymatically amplified surface plasmon resonance imaging. Anal Chem 79:1082-1088, 2007
15) Nagatoishi S, Nojima T, Galezowska E, et al:Fluorescence energy transfer probes based on the guanine quadruplex formation for the fluorometric detection of potassium ion. Anal Chim Acta 581:125-131, 2007
16) Vicens MC, Sen A, Vanderlaan A, et al:Investigation of molecular beacon aptamer-based bioassay for platelet-derived growth factor detection. Chembiochem 6:900-907, 2005
17) Rupcich N, Chiuman W, Nutiu R, et al:Quenching of fluorophore-Labeled DNA oligonucleotides by divalent metal ions:implications for selection, design, and applications of signaling aptamers and signaling deoxyribozymes. J Am Chem Soc 128:780-790, 2006
18) Wang W, Chen C, Qian M, et al:Aptamer biosensor for protein detection using gold nanoparticles. Anal Biochem 373:213-219, 2008
19) Levy M, Cater SF, Ellington AD:Quantum-Dot Aptamer Beacons for the Detection of Proteins. Chembiochem 6:2163-2166, 2005
20) Jhaveri SD, Kirby R, Conrad R, et al:Designed signaling aptamers that transduce molecular recognition to changes in fluorescence intensity. J Am Chem Soc 122:2469-2473, 2000
21) Zhou C, Jiang Y, Hou S, et al:Detection of oncoprotein platelet-derived growth factor using a fluorescent signaling complex of an aptamer and TOTO. Anal Bioanal Chem 384:1175-1180, 2006
22) Stojanovic MN, Kolpashchikov DM:Modular aptameric sensors. J Am Chem Soc 126:9266-9270, 2004
23) Dwarakanath S, Bruno JG, Shastry A, et al:Quantum dot-antibody and aptamer conjugates shift fluorescence upon binding bacteria. Biochem Biophys Res Commun 325:739-743, 2004
24) Choi J, Chen K, Strano M:Aptamer-capped nanocrystal quantum dots:a new method for label-Free protein detection. J Am Chem Soc 128:15584-15585, 2006
25) Huang CC, Huang YF, Cao Z, et al:Aptamer-modified gold nanoparticles for colorimetric determination of platelet-derived growth factors and their receptors. Anal Chem 77:5735-5741, 2005
26) Medley CD, Smith JE, Tang Z, et al:Gold nanoparticle-based colorimetric assay for the direct detection of cancerous cells. Anal Chem 80:1067-1072, 2008
27) Liu J, Lu Y:Fast colorimetric sensing of adenosine and cocaine based on a general sensor design involving aptamers and nanoparticles. Angew Chem Int Ed 45:90-94, 2006
28) Liao W, Cui XT:Reagentless aptamer based impedance biosensor for monitoring a neuro-inflammatory cytokine PDGF. Biosens Bioelectron 23:218-224, 2007
29) Min K, Cho M, Han SY, et al:A simple and direct electrochemical detection of interferon-γ using its RNA and DNA aptamers. Biosens Bioelectron 23:1819-1824, 2008
30) Ferapontova EE, Olsen EM, Gothelf KV:An RNA Aptamer-Based Electrochemical Biosensor for Detection of Theophylline in Serum. J Am Chem Soc 130:4256-4258, 2008
31) Lai RY, Plaxco KW, Heeger AJ:Aptamer-Based electrochemical detection of picomolar platelet-derived growth factor directly in blood serum. Anal Chem 79:229-233, 2007
32) Bock C, Coleman M, Collins B, et al:Photoaptamer arrays applied to multiplexed proteomic analysis. Proteomics 4:609-618, 2004
33) McCauley TG, Hamaguchi N, Stanton M:Aptamer-based biosensor arrays for detection and quantification of biological macromolecules. Anal Biochem 319:244-250, 2003
34) Colas P, Cohen B, Jessen T, et al:Genetic selection of peptide aptamers that recognize and inhibit cyclin-dependent kinase 2. Nature 380:548-550, 1996
35) Boder ET, Wittrup KD:Yeast surface display for screening combinatorial polypeptide libraries. Nat Biotechnol 15:553-557, 1997
36) Tawfik DS, Griffiths AD:Man-made cell-like compartments for molecular evolution. Nat Biotechnol 16:652-656, 1998
37) Doi N, Yanagawa H:STABLE:protein-DNA fusion system for screening of combinatorial protein libraries in vitro. FEBS Lett 457:227-230, 1999
38) Bertschinger J, Neri D:Covalent DNA display as a novel tool for directed evolution of proteins in vitro. Protein Eng Des Sel 17:699-707, 2004
39) Smith GP:Filamentous fusion phage:novel expression vectors that display cloned antigens on the virion surface. Science 228:1315-1317, 1985
polysome display system for identifying ligands from very large peptide libraries. Proc Natl Acad Sci USA 91:9022-9026, 1994
selection and evolution of functional proteins by using ribosome display. Proc Natl Acad Sci USA 94:4937-4942, 1997
42) Nemoto N, Miyamoto-Sato E, Husimi Y, et al:In vitro virus:Bonding of mRNA bearing puromycin at the 3′-terminal end to the C-terminal end of its encoded protein on the ribosome in vitro. FEBS Lett 414:405-408, 1997
selection of peptides and proteins. Proc Natl Acad Sci USA 94:12297-12302, 1997
44) Evans D, Johnson S, Laurenson S, et al:Electrical protein detection in cell lysates using high-density peptide-aptamer microarrays. J Biol 7:3, 2008
45) Murray E, McKenna EO, Burch LR, et al:Microarray-formatted clinical biomarker assay development using peptide aptamers to anterior gradient-2. Biochemistry 46:13742-13751, 2007
46) Xu L, Aha P, Gu K, et al:Directed evolution of high-affinity antibody mimics using mRNA display. Chem Biol 9:933-942, 2002
47) Connor AC, Frederick KA, Morgan EJ, et al:Insulin capture by an insulin-linked polymorphic region G-quadruplex DNA oligonucleotide. J Am Chem Soc 128:4986-4991, 2006
selection and characterization of RNA aptamers binding thyroxine hormone. Biochem J 403:129-138, 2007
-selected 2'-amino-modified RNA. Nucleic Acids Res 24:3407-3414, 1996
50) Saito T, Tomida M:Generation of inhibitory DNA aptamers against human hepatocyte growth factor. DNA Cell Biol 24:624-633, 2005
51) Burmeister PE, Wang C, Killough JR, et al:2′-Deoxy purine, 2′-O-methyl pyrimidine(dRmY)aptamers as candidate therapeutics. Oligonucleotides 16:337-351, 2006
52) Green LS, Jellinek D, Jenison R, et al:Inhibitory DNA ligands to platelet-derived growth factor B-chain. Biochemistry 35:14413-14424, 1996

掲載誌情報

出版社:株式会社医学書院

電子版ISSN:1882-1367

印刷版ISSN:0485-1420

雑誌購入ページに移動
icon up
あなたは医療従事者ですか?