24. Cheng N et al (2018) Aptasensor based on fluorophore-quencher nano-pair and smartphone
spectrum reader for on-site quantification of multi-pesticides. Biosens Bioelectron 117:75–83
25. Dhiman A, Kalra P, Bansal V, Bruno JG, Sharma TK (2017) Aptamer-based point-of-care
diagnostic platforms. Sensors Actuators B Chem 246:535–553
26. Turkevich J, Stevenson PC, Hillier J (1951) A study of the nucleation and growth processes in
the synthesis of colloidal gold. Discuss Faraday Soc 11:55–75
27. Saha K, Agasti SS, Kim C, Li X, Rotello VM (2012) Gold nanoparticles in chemical and
biological sensing. Chem Rev 112(5):2739–2779
28. Walter JG, Petersen S, Stahl F, Scheper T, Barcikowski S (2010) Laser ablation-based
one-step generation and bio-functionalization of gold nanoparticles conjugated with aptamers.
J Nanobiotechnol 8(1):21
29. Dubois LH, Nuzzo RG (1992) Synthesis, structure, and properties of model organic surfaces
30. Citartan M, Ch’ng ES, Rozhdestvensky TS, Tang TH (2016) Aptamers as the “capturing”
agents in aptamer-based capture assays. Microchem J 128:187–197
31. Liu S, Han MY (2010) Silica-coated metal nanoparticles. Chem Asian J 5(1):36–45
32. Wu Z, Liang J, Ji X, Yang W (2011) Preparation of uniform au@SiO2 particles by direct silica
coating on citrate-capped au nanoparticles. Colloids Surf A Physicochem Eng Asp 392
(1):220–224
33. Boisselier E, Astruc D (2009) Gold nanoparticles in nanomedicine: preparations, imaging,
diagnostics, therapies and toxicity. Chem Soc Rev 38(6):1759–1782
34. Li H, Rothberg L (2004) Colorimetric detection of DNA sequences based on electrostatic
interactions with unmodified gold nanoparticles. Proc Natl Acad Sci 101(39):14036–14039
35. Koczula KM, Gallotta A (2016) Lateral flow assays. Essays Biochem 60(1):111–120
36. Vaitukaitis JL, Braunstein GD, Ross GT (1972) A radioimmunoassay which specifically
measures human chorionic gonadotropin in the presence of human luteinizing hormone. Am
J Obstet Gynecol 113(6):751–758
37. Daviaud J et al (1993) Reliability and feasibility of pregnancy home-use tests: laboratory
validation and diagnostic evaluation by 638 volunteers. Clin Chem 39(1):53–59
38. Schüling T, Eilers A, Scheper T, Walter J (2018) Aptamer-based lateral flow assays. AIMS
Bioeng 5(2):78–102
39. Mirkin CA, Letsinger RL, Mucic RC, Storhoff JJ (1996) A DNA-based method for rationally
assembling nanoparticles into macroscopic materials. Nature 382(6592):607–609
40. Li X, Jiang L, Zhan Q, Qian J, He S (2009) Localized surface plasmon resonance (LSPR) of
polyelectrolyte-functionalized gold-nanoparticles for bio-sensing. Colloids Surf A
Physicochem Eng Asp 332:172–179
41. Kumar S, Gandhi KS, Kumar R (2007) Modeling of formation of gold nanoparticles by citrate
method. Ind Eng Chem Res 46(10):3128–3136
42. Sepúlveda B, Angelomé PC, Lechuga LM, Liz-Marzán LM (2009) LSPR-based
nanobiosensors. Nano Today 4(3):244–251
43. Chegel V et al (2012) Gold nanoparticles aggregation: drastic effect of cooperative functionalities in a single molecular conjugate. J Phys Chem C 116:2683–2690
44. Xia F et al (2010) Colorimetric detection of DNA, small molecules, proteins, and ions using
unmodified gold nanoparticles and conjugated polyelectrolytes. Proc Natl Acad Sci U S A 107
(24):10837–10841
45. Frohnmeyer E et al (2019) Aptamer lateral flow assays for rapid and sensitive detection of
cholera toxin. Analyst 144:1840
46. Liu J, Zeng J, Tian Y, Zhou N (2018) An aptamer and functionalized nanoparticle-based strip
biosensor for on-site detection of kanamycin in food samples. Analyst 143:182
47. Wu S, Liu L, Duan N, Li Q, Zhou Y, Wang Z (2018) Aptamer-based lateral flow test strip for
rapid detection of zearalenone in corn samples. J Agric Food Chem 66(8):1949–1954
48. Zhu Q et al (2017) Colorimetric detection of cholic acid based on an aptamer adsorbed gold
nanoprobe. RSC Adv 7(31):19250–19256
Aptamer-Modified Nanoparticles in Medical Applications
189
Précédent

- 192/216

Suivant