原位电离小型便携式质谱的研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Research Advances in Ambient Ionization and Miniature Mass Spectrometry
  • 作者:郭项雨 ; 黄雪梅 ; 翟俊峰 ; 白桦 ; 李晓旭 ; 马潇潇 ; 马强
  • 英文作者:GUO Xiang-Yu;HUANG Xue-Mei;ZHAI Jun-Feng;BAI Hua;LI Xiao-Xu;MA Xiao-Xiao;MA Qiang;Chinese Academy of Inspection and Quarantine;School of Chinese Materia Medica,Beijing University of Chinese Medicine;School of Mechanical and Electric Engineering,Soochow University;Department of Precision Instrument,Tsinghua University;
  • 关键词:原位电离 ; 小型便携式质谱 ; 评述
  • 英文关键词:Ambient ionization;;Miniature mass spectrometry;;Review
  • 中文刊名:FXHX
  • 英文刊名:Chinese Journal of Analytical Chemistry
  • 机构:中国检验检疫科学研究院;北京中医药大学中药学院;苏州大学机电工程学院;清华大学精密仪器系;
  • 出版日期:2019-03-07
  • 出版单位:分析化学
  • 年:2019
  • 期:v.47
  • 基金:国家重点研发计划项目(No.2016YFF0203704)资助~~
  • 语种:中文;
  • 页:FXHX201903002
  • 页数:12
  • CN:03
  • ISSN:22-1125/O6
  • 分类号:22-33
摘要
原位电离和小型便携式质谱的开发及应用是当前化学测量学领域的研究热点。基于原位电离小型便携式质谱的分析检测技术,无需色谱分离,亦可免除或简化样品前处理过程,突破了传统检测技术操作繁琐、耗时冗长的弊端,可实现样品高灵敏、高通量的现场快速检测,体现了化学测量向快速高效、实时原位、灵敏特异、环境友好等方向发展的重要趋势。本文对原位电离小型便携式质谱的研究进展及在食品安全、消费品安全、公共安全、生命科学、环境监测等相关领域的应用进行了综述,并对其发展趋势和应用前景进行了展望,以期为相关领域研究人员提供技术参考。
        The development and application of ambient ionization and miniature mass spectrometry are current research focus in chemical measurements. The analytical technology based on ambient ionization coupled with miniature mass spectrometry can bypass chromatographic separation and eliminate or simplify sample pretreatment process. The protocol breaks through the drawbacks of labor-intensive and time-consuming of traditional analytical methodologies,and can be used for the rapid and on-site analysis with high sensitivity and high throughput. In this paper,research progress of ambient ionization and miniature mass spectrometry as well as their applications in the fields of food safety,consumer product safety,public security,life science and environmental monitoring have been reviewed,and future trends and prospective have been discussed,which may provide a technical guidance for the researchers engaged in relevant fields.
引文
1 Fenn J B,Mann M,Meng C K,Wong S F,Whitehouse C M.Science,1989,246(4926):64-71
    2 Takats Z,Wiseman J M,Gologan B,Cooks R G.Science,2004,306(5695):471-473
    3 Cody R B,Laramee J A,Durst H D.Anal.Chem.,2005,77(8):2297-2302
    4 Na N,Zhao M,Zhang S,Yang C,Zhang X.J.Am.Soc.Mass Spectrom.,2007,18(10):1859-1862
    5 Chen H W,Venter A,Cooks R G.Chem.Commun.,2006,42(19):2042-2044
    6 Snyder D T,Pulliam C J,Ouyang Z,Cooks R G.Anal.Chem.,2015,88(1):2-29
    7 Ouyang Z,Cooks R G.Annu.Rev.Anal.Chem.,2009,2(1):187-214
    8 Huang M Z,Cheng S C,Cho Y T,Shiea J.Anal.Chim.Acta,2011,702(1):1-15
    9 Kertesz V,Berkel G J V.J.Mass Spectrom.,2010,45(3):252-260
    10 Haapala M,Pol J,Saarela V,Arvola V,Kotiaho T,Ketola R A,Franssila S,Kauppila T J,Kostiainen R.Anal.Chem.,2007,79(20):7867-7872
    11 Jason N A C,Harper J D,Mulligan C C,Zhang X R,Cooks R G,Ouyang Z.Anal.Chem.,2008,80(23):9097-9104
    12 Haddad R,Milagre H M S,Catharino R,Eberlin M N.Anal.Chem.,2008,80(8):2744-2750
    13 Santos V G,Regiani T,Dias F F G,Rom2o W,Jara J L P,Klitzke C F,Coelho F,Eberlin M N.Anal.Chem.,2011,83(4):1375-1380
    14 Chan C C,Bolgar M S,Miller S A,Attygalle A B.J.Am.Soc.Mass Spectrom.,2010,21(9):1554-1560
    15 Berkel G J V.Anal.Chem.,2002,74(24):6216-6223
    16 Hirabayashi A,Sakairi M,Koizumi H.Anal.Chem.,1994,66(24):4557-4559
    17 Mc Ewen C N,Mckay R G,Larsen B S.Anal.Chem.,2005,77(23):7826-7831
    18 Takats Z.Cotte-Rodriguez I,Talaty N,Chen H W,Cooks R G.Chem.Commun.,2005,15(15):1950-1952
    19 Wang H,Sun W,Zhang J,Yang X,Lin T,Ding L.Analyst,2010,135(4):688-695
    20 Ratcliffe L V,Rutten F J M,Barrett D A,Ehitmore T,Seymour D,Greenwood C,Aranda-Gonzalvo Y,Robinson S,Mc Coustra M.Anal.Chem.,2007,79(16):6094-6101
    21 Andrade F J,Wetzel W C W,Chan C Y,Webb M R,Gamez G,Ray S J,Hieftje G M.J.Anal.Atom.Spectrom.,2006,21(11):1175-1184
    22 Trimpin S,Inutan E D,Herath T N,Mc Ewen C N.Mol.Cell.Proteomics,2010,9(2):362-367
    23 Cheng S C,Cheng T L,Chang H C,Shiea J.Anal.Chem.,2009,81(3):868-874
    24 Dixon R B,Sampson J S,Muddiman D.J.Am.Soc.Mass Spectrom.,2009,20(4):597-600
    25 Chen T Y,Chao C S,Mong K T,Chen Y C.Chem.Commun.,2010,46(44):8347-8349
    26 Heron S R,Wilson R,Shaffer S A,Goodlett D R,Cooper J M.Anal.Chem.,2010,82(10):3985-3989
    27 Zhang J,Zhou Z,Yang J W,Zhang W,Bai Y,Liu H W.Anal.Chem.,2012,84(3):1496-1503
    28 Sampson J S,Hawkridge A M,Muddiman D C.J.Am.Soc.Mass Spectrom.,2006,17(12):1712-1716
    29 Shiea J,Huang M Z,Hsu H J,Lee C Y,Yuan C H,Beech I,Sunner J.Rapid Commun.Mass Spectrom.,2005,19:3701-3704
    30 Rezenom Y H,Dong J N,Murray K.Analyst,2018,133(2):226-232
    31 Nemes P,Vertes A.Anal.Chem.,2007,79(21):8098-8106
    32 Brady J J,Judge E J,Levis R J.Rapid Commun.Mass Spectrom.,2009,23(19):3151-3157
    33 Vaikkinen A,Shrestha B,Kauppila T J,Vertes A,Kostiainen R.Anal.Chem.,2012,84(2):1630-1636
    34 Liu P Y,Forni A,Chen H.Anal.Chem.,2014,86(8):4024-4032
    35 Basile F,Zhang S F,Shin Y S,Drolet B.Analyst,2010,135(4):797-803
    36 Lin J Y,Chen T Y,Chen J Y,Chen Y C.Analyst,2010,135(10):2668-2675
    37 Wu J,Hughes C S,Picard P,Letarte S,Gaudreault M,Lévesque J F,Nicoll-Griffith D A,Bateman K P.Anal.Chem.,2007,79(12):4657-4665
    38 Li X,Fang X W,Yu Z Q,Sheng G Y,Wu M H,Fu J,Chen H W.Anal.Chim.Acta,2012,748(20):53-57
    39 Chen H W,Yang S P,Wortmann A,Zenobi R.Angew.Chem.Int.Edit.,2007,46(40):7591-7594
    40 Chen H W,Wortmann A,Zhang W H,Zenobi R.Angew.Chem.Int.Edit.,2007,46(4):580-583
    41 Wang H,Liu J J,Cooks R G,Ouyang Z.Angew.Chem.Int.Edit.,2010,49(5):877-880
    42 Liu J J,Wang H,Cooks R G,Ouyang Z.Anal.Chem.,2011,83(20):7608-7613
    43 Deng J W,Yang Y Y,Fang L,Li L,Zhou H Y,Luan T G.Anal.Chem.,2014,83(22):11159-11166
    44 Hu B,So P K,Chen H W,Yao Z P.Anal.Chem.,2011,83(21):8201-82107
    45 Chan S L,Wong M Y,Tang H W,Che C M,Ng K M.Rapid Commun.Mass Spectrom.,2011,25(19):2837-2843
    46 Wong H Y,Hu B,So P K,Chan C O,Mok D K,Xin G Z,Li P,Yao Z P.Anal.Chim.Acta,2016,938:90-97
    47 Ahmad S,Tucker M,Spooner N,Murnane D,Gerhard U.Anal.Chem.,2015,87(1):754-759
    48 Wu M X,Wang H Y,Zhang J T,Guo Y L.Anal.Chem.,2016,88(19):9547-9553
    49 Yao X H,Xu J Y,Hao J Y,Wan Y,Chen T,Zhang D Y,Li L.J.Chromatogr.B,2018,1092:82-87
    50 Rajchl A,Cusimamani E F,Prchalova J,Sevcik R,Cizkova H,J Ziarovska,Hrdlickova M.Int.J.Mass Spectrom.,2018,424:27-34
    51 Lennert E,Bridge C.Forensic Sci.Int.,2018,292:11-22
    52 Lin R K,Xie B B,Du C,Hang W,Huang B L.Int.J.Mass Spectrom.,2018,434:123-129
    53 Lara-Ortega F J,Robles-Molina J,Brandt S,Schütz A,Gilbert-López B,Molina-Díaz A,García-Reyes JF,Franzke J.Anal.Chim.Acta,2018,1020:76-85
    54 Koyanagi G K,Blagojevic V,Bohme D K.Int.J.Mass Spectrom.,2015,379:146-150
    55 Deng M,Yu T H,Luo H L,Zhu T G,Huang X Y,Luo L P.Int.J.Mass Spectrom.,2017,422:111-118
    56 Fideler J,Johanningsmeier S D,Ekelof M,Muddiman D C.Food Chem.,2019,271:715-723
    57 Sanders N L,Kothari S,Huang G M,Cooks R G.Anal.Chem.,2010,82(10):5313-5316
    58 Huang G M,Xu W,Visbal-Onufrak M A,Ouyang Z,Cooks R G.Analyst,2010,135(4):705-711
    59 Ma Q,Bai H,Li W T,Li X S,Cooks R G,Ouyang Z.Anal.Chim.Acta,2016,912:65-73
    60 Ren Y,Zhang W P,Lin Z P,Bushman L R,Anderson P L,Ouyang Z.Talanta,2018,189:451-457
    61 Wang X,Zhou X Y,Ouyang Z.Anal.Chem.,2016,88(1):826-831
    62 Smith J N,Noll R J,Cooks R G.Rapid Commun.Mass Spectrom.,2011,25(10):1437-1444
    63 Guo X Y,Bai H,Lv Y G,Xi G C,Li J F,Ma X X,Ren Y,Ouyang Z,Ma Q.Talanta,2018,180:182-192
    64 Zhai Y,Liu S,Gao L,Hu L,Xu W.Anal.Chem.,2018,90(9):5696-5702
    65 Gao L,Cooks R G,Ouyang Z.Anal.Chem.,2008,80(11):4026-4032
    66 Gao L,Sugiarto A,Harper J D,Cooks R G,Ouyang Z.Anal.Chem.,2008,80(19):7198-7205
    67 Li L,Chen T C,Ren Y,Hendricks P I,Cooks R G,Ouyang Z.Anal.Chem.,2014,86(6):2909-2916
    68 Hendricks P I,Dalgleish J K,Shelley J T,Kirleis M A,Mc Nicholas M T,Li L F,Chen T C,Chen C H,Duncan J S,Boufreau F,Noll R J,Denton J P,Roach T A,Ouyang Z,Cooks R G.Anal.Chem.,2014,86(6):2900-2908
    69 Gao L,Song Q Y,Patterson G E,Cooks R G,Ouyang Z.Anal.Chem.,2006,78(17):5994-6002
    70 Ouyang Z,Noll R J,Cooks R G.Anal.Chem.,2009,81(7):2421-2425
    71 Keil A,Talaty N,Janfelt C,Noll R J,Gao L,Ouyang Z,Cooks R G.Anal.Chem.,2007,79(20):7734-7739
    72 Zhai Y B,Feng Y,Wei Y Z,Wang Y Z,Xu W.Analyst,2015,140(10):3406-3414
    73 Zhai Y B,Zhang X H,Xu H L,Zheng Y C,Yuan T,Xu W.Anal.Chem.,2017,89(7):4177-4183
    74 Guo Q,Gao L J,Zhai Y B,Xu W.Chinese Chem.Lett.,2017,28(8):1640-1652
    75 Jiang T,Zhang H G,Tang Y,Zhai Y B,Xu W,Zhao X Y,Li D Y,Xu W.Anal.Chem.,2017,89(10):5578-5584
    76 Sinha M P,Neidholdt E L,Hurowitz J,Sturhahn W,Beard B,Hecht M H.Rev.Sci.Instrum.,2011,82(9):094102
    77 Sinha M P,Tomassian A D.Rev Sci.Instrum.,1991,62(11):2618-2620
    78 Paul W,Steinwedel H.Z.Naturforsh.Sect.A,1953,8:448-450
    79 Grebner T L,Neusser H J.Int.J.Mass Spectrom.,1994,137(137):L1-L6
    80 Mikami N,Miyata Y,Sato S,Sasaki T.Chem.Phys.Lett.,1990,166(5):470-474
    81 Blain M G,Riter L S,Cruz D,Austin D E,Wu G X,Plass W R,Cooks R G.Int.J.Mass Spectrom.,2004,236(1):91-104
    82 Pau S,Pai C S,Low Y L,Moxom J,Reilly P T,Whitten W B,Ramwey J M.Phys.Rev.Lett,2006,96(12):120801
    83 Ouyang Z,Badman E R,Cooks R G.Rapid Commun.Mass Spectrom.,1999,13(24):2444-2449
    84 Badman E R,Johnson R C,Plass W R,Cooks R G.Anal.Chem.,1998,70(23):4896-4901
    85 Van Amerom F H W,Chaudhary A,Bumgarner J,Short R T.Chem.Eng.Commun.,2008,195(2):98-114
    86 Patterson G E,Guymon A J,Riter L S,Griep-Raming J,Laughlin B C,Quyang Z,Cooks R G.Anal.Chem.,2002,74(24):6145-6153
    87 Riter L S,Peng Y A,Noll R J,Petterson G E,Aggerholm T,Cooks R G.Anal.Chem.,2002,74(24):6154-6162
    88 Yang M,Kim T Y,Hwang H C,Yi S K,Kim D H.J.Am.Soc.Mass Spectrom.,2008,19(10):1442-1448
    89 Cornish T J,Cotter R J.Anal.Chem.,1997,69:4615-4618
    90 Cotter R J,Fancher C,Cornish T J.J.Mass Spectrom.,1999,34:1368-1372
    91 Ecelberger S A,Cornish T J,Collins B F,Lewis D L,Bryden W A.Johns Hopkins APL Tech.Dig.,2004,25(1):14-19
    92 Sinha M P,Gutnikov G.Anal.Chem.,1991,63(18):2012-2016
    93 Sinha M P,Langstaff D P,Narayan D J,Birkinshaw K.Int.J.Mass Spectrom.,1998,176(1):99-102
    94 Sinha M P,Wadsworth M.Rev.Sci.Instrum.,2005,76(2):025103
    95 Diaz J A,Giese C F,Gentry W R.J.Am.Soc.Mass Spectrom.,2001,12(6):619-632
    96 Burgoyne T W,Hieftje G M,Hites R A.J.Am.Soc.Mass Spectrom.,1997,8(4):307-318
    97 Freidhoff C B,Young R M,Sriram S,Braggins T T,O'Keefe T W,Adam J D.J.Vac.Sci.Technol.A,1999,17(4):2300-2307
    98 Syms R R A,Tate T J,Ahmad M M,Taylor S.Electron.Lett.,1996,32(22):2094-2095
    99 Syms R R A,Tate T J,Ahmad M M,Taylor S.IEEE Trans.Electron Devevics,1998,45(11):2304-2311
    100 Taylor S,Tunstall J J,Leck J H,Tindall R F,Jullien J P,Batey J,Syms R R A,Tate T,Ahmad M M.Vacuum,1999,53(1-2):203-206
    101 Taylor S,Tunstall J J,Syms R R A,Tate T,Ahmad M M.Electron.Lett.,1998,34(6):546-547
    102 Holkeboer D H,Karandy T L,Currier F C,Frees L C,Ellefson R E.J.Vac.Sci.Technol.A,1998,16(3):1157-1162
    103 Orient O J,Chutjian A,Garkanian V.Rev.Sci.Instrum.,1997,68:1393-1397
    104 Syms R.Anal.Bioanal.Chem.,2009,393(2):427-429
    105 Sillon N,Baptist R.Sens.Actuators B,2002,83(1-3):129-137
    106 Hauschild J P,Wapelhorst E,Müller J.Int.J.Mass Spectrom.,2007,264(1):53-60
    107 Yoon H J,Kim J H,Choi E S,Yang S S,Jung K W.Sens.Actuators A,2002,97(02):441-447
    108 Geear M,Syms R R A,Wright S,Holmes A S.Microelectromech.Syst.J.,2005,14(5):1156-1166
    109 Pau S,Whitten W B,Ramsey J M.Anal.Chem.,2007,79(17):6857-6861
    110 Keil A,Hernande-zsoto H,Noll R J,Fico M,Gao L,Ouyang Z,Cooks R G.Anal.Chem.,2008,80(3):734-741
    111 Song Q,Kothari S,Senko M A,Schwartz J C,Amy J W,Stafford G C.Anal.Chem.,2006,78(3):718-725
    112 Soparawalla S,Tadjimukhamedov F K,Wiley K T,Ouyang Z,Cooks R G.Analyst,2011,136(21):4392-4396
    113 Pulliam C J,Bain R M,Wiley J S,Ouyang Z,Cooks R G.J.Am.Soc.Mass Spectrom.,2015,26(2):224-230
    114 Dalgleish J K,Hou K,Ouyang Z,Cooks R G.Anal.Lett.,2012,45(11):1440-1446
    115 Ma Q,Bai H,Li W T,Wang C,Cooks R G,Ouyang Z.Talanta,2015,142:190-196
    116 Bruno A M,Cleary S R,O'Leary A E,Gizzi,M C,Mulligan C C.Anal.Methods,2017,9(34):5015-5022
    117 Lawton Z E,Traub A,Fatigante W L,Mancias J,O'Leary A E,Hall S E,Wieland J R,Oberacher H,Gizzi M C,Mulligan C C.J.Am.Soc.Mass Spectrom.,2017,28(6):1048-1059
    118 Janfelt C,Talaty N,Mulligan C C,Keil A,Ouyang Z,Cooks R G.Int.J.Mass Spectrom.,2008,278(2-3):166-169
    119 Sokol E,Noll R J,Cooks R G,Beegle L W,Kim H I,Kanik I.Int.J.Mass Spectrom.,2011,306(2-3):187-195
    120 Chen C H,Lin Z Q,Tian R,Shi R,Cooks R G,Ouyang Z.Anal.Chem.,2015,87(17):8867-8873
    121 Zhu Z Q,Xiong C Q,Xu G P,Liu H,Zhou X Y,Chen R,Peng W P,Nie Z X.Analyst,2011,136(7):1305-1309
    122 Jjunju F P M,Maher,LI A,Badu-Tawiah A K,Taylor S,Cooks R G.J.Am.Soc.Mass Spectom.,2015,26(2):271-280
    123 Kudryavtsev A S,Makas A L,Troshkov M L,Grachev M A,Pod'yachev S P.Talanta,2014,123:140-145
    124 Sokol E,Edwards K E,Cooks R G.Analyst,2008,133(8):1064-1071
    125 Huang G M,Gao L,Duncan J,Harper J D,Sanders N L,Ouyang Z,Cooks R G.J.Am.Soc.Mass Spectrom.,2010,21(1):132-135
    126 Browne D L,Wright S,Deadman B J,Dunnage S,Baxendale I R,Turner R M,Ley S V.Rapid.Commun.Mass Spectrom.,2012,26(17):1999-2010
    127 Bristow T W,O'Kearney-Mc Mullan A D,Lim L,Mc Cullough B,Zammataro A.J.Am.Soc.Mass Spectrom.,2014,25(10):1794-1802
    128 Jjunju F P M,Li A,Badu-Tawiah A,Wei P,Li L,Ouyang Z,Roqan I S,Cooks R G.Analyst,2013,138:3740-3748

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700