Spectroscopy and Spectral Analysis, Volume. 41, Issue 8, 2372(2021)
Research Advances and Trends of Rapid Detection Technologies for Pathogenic Bacteria Based on Fingerprint Spectroscopy
[1] Ab Mutalib N-S, Chan K-G, Law J W-F et al[D]. Front. Microbiol., 5, 770(2015).
[2] Liu K, Wang S, Zhang J et al[D]. Anal. Chem., 87, 2959(2015).
[4] Liu X, Liu X, Rong P et al[D]. TrAC, Trends Anal. Chem., 123, 115765(2020).
[5] Fortes F J, Lucena P, Moros J et al[D]. Anal. Chem., 85, 640(2013).
[7] Krishnan K S, Raman C V[D]. Nature, 121, 501(1928).
[8] Jachtenberg J-W, Scholtes-Timmerman M J, Willemse-Erix D F M et al[D]. J. Clin. Microbiol., 47, 652(2009).
[9] Efrima S, Zeiri L[D]. J Raman Spectrosc., 40, 277(2010).
[10] Baek M, Dalterio R A, Nelson W H et al[D]. Appl. Spectrosc., 41, 241(1987).
[11] Spiro T G[D]. Acc. Chem. Res., 7, 339(1974).
[12] Hamilton T, Nelson W H, Wu Q et al[D]. Anal. Chem., 73, 3432(2001).
[13] Manoharan R, Nelson W, Sperry J[D]. Appl. Spectrosc. Rev., 27, 67(1992).
[14] Fleischmann M, Hendra P J, McQuillan A J[D]. Chem. Phys. Lett., 26, 163(1974).
[15] Wang Z, Wu L, Zong S et al[D]. Chem. Rev., 117, 7910(2017).
[16] Goodacre R. Anal. Chem, Jarvis R M[D], 76, 40(2004).
[17] Henzie J, Ling X Y, Mulvihill M J et al[D]. J. Am. Chem. Soc., 132, 268(2010).
[18] Irudayaraj J, Lee K, Wang Y[D]. J. Phys. Chem. C, 114, 16122(2010).
[19] Chen L, Daikuara L, Mungroo N et al[D]. J. Nanobiotechnol., 13, 45(2015).
[20] Efrima S, Zeiri L[D]. J. Raman Spectrosc., 40, 277(2009).
[21] Hu Z, Liu Y, Zhou H et al[D]. Biosens. Bioelectron., 94, 131(2017).
[22] Chen N, Meng X, Wang H et al[D]. Anal. Chem., 90, 5646(2018).
[23] Ko J, Lee S, Park S-G et al[D]. ACS Appl. Mater. Interfaces, 10, 6831(2018).
[24] Liu G K, Panneerselvam R, Wang Y H et al[D]. Chem. Commun., 54, 10(2018).
[25] Ding Y, Huang Y F, Li J F et al[D]. Nature, 464, 392(2010).
[26] Anema J R, Li J F, Yang Z L et al[D]. Annu. Rev. Anal. Chem., 4, 129(2011).
[27] Li Z, Qian K, Yang L et al[D]. J. Raman Spectrosc., 44, 21(2013).
[28] Li P, Liu H, Yang L et al[D]. Chem. Soc. Rev., 44, 2837(2015).
[29] Su M, Tian L, Yu F et al[D]. Nat. Commun., 9, 3642(2018).
[30] Su M, Tian L, Yu F et al[D]. Anal. Chem., 90, 5232(2018).
[31] Liu H, Meng L, Yang Z et al[D]. J. Am. Chem. Soc., 136, 5332(2014).
[32] Ivleva N P, Yang D, Zhou H et al[D]. Anal. Chem., 86, 1525(2014).
[33] Chai Y, Li H, Wang L et al[D]. Nanotoxicology, 12, 1230(2018).
[34] Ramsden S A, Savic P[D]. Nature, 203, 1217(1964).
[35] , Bryan F R, Minck R W, Runge E F[D]. Acta, 20, 733(1964).
[36] Correll T, Gornushkin I B, Winefordner J D et al[D]. J. Anal. Atom. Spectrom., 19, 1061(2004).
[37] De Lucia J F C, Gottfried J L, Munson C A et al[D]. J. Anal. Atom. Spectrom., 23, 205(2008).
[38] Östmark H, Pettersson A, Wallin S et al[D]. Anal. Bioanal. Chem., 395, 259(2009).
[39] Rehse S J[D]. The Physics Teacher, 47, 152(2009).
[40] Pathak A K, Sharma J, Singh V K et al[D]. Biophys. Rev., 10, 1221(2018).
[41] Rehse S J[D]. Spectrochim Acta B, 154, 50(2019).
[42] Liu X Y, Zhang W J[D]. J. Biomed. Sci. Eng., 1, 147(2008).
[43] Rai A K, Singh V K[D]. Laser Med. Sci., 26, 673(2011).
[44] Adam P, Leone N, Morel S et al[D]. Appl. Opt., 42, 6184(2003).
[45] DeLucia F C, McNesby K L, Samuels A C et al[D]. Appl. Opt., 42, 6205(2003).
[46] Kim T, Specht Z G, Vary P S et al[D]. J. Phys. Chem. B, 108, 5477(2004).
[47] Diwakar P K, Freeman J R, Harilal S S et al[D]. Spectrochim Acta B, 87, 43(2013).
[48] Méjean G, Rohwetter P, Yu J et al[D]. J. Anal. Atom. Spectrom., 19, 437(2004).
[49] Rohwetter P, Stelmaszczyk K, Wöste L et al[D]. Spectrochim Acta B, 60, 1025(2005).
[50] Baudelet M, Guyon L, Yu J et al[D]. Appl. Phys. Lett., 88, 063901(2006).
[51] Bostian M L, Cremers D A, Multari R A[D]. Appl. Opt., 51, B57(2012).
[52] Bostian M L, Cremers D A, Multari R A et al[D]. Journal of Pathogens, 2013, 1(2013).
[53] Manzoor S, Moncayo S, Navarro-Villoslada F et al[D]. Talanta, 121, 65(2014).
[54] Malenfant D J, Paulick A E, Rehse S J[D]. Spectrochim Acta B, 158, 105629(2019).
[55] Malenfant D J, Paulick A E, Rehse S J[D]. Spectrochim Acta B, 157, 68(2019).
[56] Liao W, Lin Q, Yang E et al[D]. Anal. Chem., 92, 8090(2020).
[57] DeLucia F C, Harmon R S, Samuels A C et al[D]. IEEE Sens. J., 5, 681(2005).
[58] De Lucia J F C, Gottfried J L, Munson C A et al[D]. Appl Optics, 47, G112(2008).
[59] Ayala J A, Izquierdo-Hornillos R C, Marcos-Martinez D et al[D]. Talanta, 84, 730(2011).
[60] Mazura M, Prochazka D, Samek O et al[D]. Spectrochim Acta B, 139, 6(2018).
[61] Liao W, Lin Q, Xie S et al[D]. Anal. Chim. Acta, 1043, 64(2018).
[62] Liao W, Lin Q, Xu Y et al[D]. Nanoscale, 11, 5346(2019).
[63] Cui Y, Liu Y, Wu J et al[D]. Biosens. Bioelectron., 142, 111508(2019).
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Wen-long LIAO, Kun-ping LIU, Jian-ping HU, Ya GAN, Qing-yu LIN, Yi-xiang DUAN. Research Advances and Trends of Rapid Detection Technologies for Pathogenic Bacteria Based on Fingerprint Spectroscopy[J]. Spectroscopy and Spectral Analysis, 2021, 41(8): 2372
Category: Research Articles
Received: May. 30, 2020
Accepted: --
Published Online: Sep. 8, 2021
The Author Email: Wen-long LIAO (liaowenlong@cdu.edu.cn)