11 Hormone Aptamers in Endocrine-Related Diseases
347
47. Prante M, Schüling T, Roth B, Bremer K, Walter J (2019) Characterization of an aptamer
directed against 25-Hydroxyvitamin D for the development of a competitive aptamer-based
assay. Biosensors (Basel) 9(4)
48. Alyamani BJ, Alsager OA, Zourob M (2019) Label-Free fluorescent aptasensor for small
targets via displacement of groove bound curcumin molecules. Sensors (Basel) 19(19)
49. Levine A, Zagoory-Sharon O, Feldman R, Lewis JG, Weller A (2007) Measuring cortisol in
human psychobiological studies. Physiol Behav 90(1):43–53. https://doi.org/10.1016/j.phy
sbeh.2006.08.025
50. Gatti R, Antonelli G, Prearo M, Spinella P, Cappellin E, De Palo EF (2009) Cortisol assays
and diagnostic laboratory procedures in human biological fluids. Clin Biochem 42(12):1205–
1217. https://doi.org/10.1016/j.clinbiochem.2009.04.011
51. Oka K, Noguchi M, Kitamura T, Shima S (1987) Liquid chromatography and radioimmunoassay compared for determination of cortisol and corticosterone in plasma after a
dexamethasone suppression test. Clin Chem 33(9):1639–1642
52. Gatti R, Cappellin E, Zecchin B, Antonelli G, Spinella P, Mantero F, De Palo EF (2005) Urinary
high performance reverse phase chromatography cortisol and cortisone analyses before and
at the end of a race in elite cyclists. J Chromatogr B Analyt Technol Biomed Life Sci 824(1–
2):51–56. https://doi.org/10.1016/j.jchromb.2005.06.037
53. Sanghavi BJ, Moore JA, Chavez JL, Hagen JA, Kelley-Loughnane N, Chou CF, Swami NS
(2016) Aptamer-functionalized nanoparticles for surface immobilization-free electrochemical
detection of cortisol in a microfluidic device. Biosens Bioelectron 78:244–252. https://doi.
org/10.1016/j.bios.2015.11.044
54. Smith JE, Medley CD, Tang Z, Shangguan D, Lofton C, Tan W (2007) Aptamer-conjugated
nanoparticles for the collection and detection of multiple cancer cells. Anal Chem 79(8):3075–
3082. https://doi.org/10.1021/ac062151b
55. Stevens RC, Soelberg SD, Near S, Furlong CE (2008) Detection of cortisol in saliva with a
flow-filtered, portable surface plasmon resonance biosensor system. Anal Chem 80(17):6747–
6751
56. Zhang J, Gopinath SCB (2020) Quantification of cortisol for the medical diagnosis of multiple
pregnancy-related diseases. 3 Biotech 10(2):35
57. Bao X, Huo G, Li L, Cao X, Liu Y, Lakshmipriya T, Chen Y, Hariri F, Gopinath SCB (2019)
Coordinated dispersion and aggregation of gold nanorod in aptamer-mediated gestational
hypertension analysis. J Anal Methods Chem 2019:5676159
58. Fernandez RE, Umasankar Y, Manickam P, Nickel JC, Iwasaki LR, Kawamoto BK, Todoki
KC, Scott JM, Bhansali S (2017) Disposable aptamer-sensor aided by magnetic nanoparticle
enrichment for detection of salivary cortisol variations in obstructive sleep apnea patients. Sci
Rep 7(1):17992. https://doi.org/10.1038/s41598-017-17835-8
59. Liu Y, Wu B, Tanyi EK, Yeasmin S, Cheng LJ (2020) Label-Free sensitive detection of steroid
hormone cortisol based on target-induced fluorescence quenching of quantum dots. Langmuir
36(27):7781–7788. https://doi.org/10.1021/acs.langmuir.0c00513
60. Fang X, Sen A, Vicens M, Tan W (2003) Synthetic DNA aptamers to detect protein molecular
variants in a high-throughput fluorescence quenching assay. ChemBioChem 4(9):829–834.
https://doi.org/10.1002/cbic.200300615
61. Li W, Yang X, Wang K, Tan W, Li H, Ma C (2008) FRET-based aptamer probe for rapid
angiogenin detection. Talanta 75(3):770–774. https://doi.org/10.1016/j.talanta.2007.12.012
62. Harbeck N, Penault-Llorca F, Cortes J, Gnant M, Houssami N, Poortmans P, Ruddy K, Tsang
J, Cardoso F (2019) Breast cancer. Nat Rev Dis Primers 5(1):66. https://doi.org/10.1038/s41
572-019-0111-2
63. Ahirwar R, Dalal A, Sharma JG, Yadav BK, Nahar P, Kumar A, Kumar S (2019) An aptasensor
for rapid and sensitive detection of estrogen receptor alpha in human breast cancer. Biotechnol
Bioeng 116(1):227–233. https://doi.org/10.1002/bit.26819
64. Brisken C (2013) Progesterone signalling in breast cancer: a neglected hormone coming into
the limelight. Nat Rev Cancer 13(6):385–396. https://doi.org/10.1038/nrc3518
347
47. Prante M, Schüling T, Roth B, Bremer K, Walter J (2019) Characterization of an aptamer
directed against 25-Hydroxyvitamin D for the development of a competitive aptamer-based
assay. Biosensors (Basel) 9(4)
48. Alyamani BJ, Alsager OA, Zourob M (2019) Label-Free fluorescent aptasensor for small
targets via displacement of groove bound curcumin molecules. Sensors (Basel) 19(19)
49. Levine A, Zagoory-Sharon O, Feldman R, Lewis JG, Weller A (2007) Measuring cortisol in
human psychobiological studies. Physiol Behav 90(1):43–53. https://doi.org/10.1016/j.phy
sbeh.2006.08.025
50. Gatti R, Antonelli G, Prearo M, Spinella P, Cappellin E, De Palo EF (2009) Cortisol assays
and diagnostic laboratory procedures in human biological fluids. Clin Biochem 42(12):1205–
1217. https://doi.org/10.1016/j.clinbiochem.2009.04.011
51. Oka K, Noguchi M, Kitamura T, Shima S (1987) Liquid chromatography and radioimmunoassay compared for determination of cortisol and corticosterone in plasma after a
dexamethasone suppression test. Clin Chem 33(9):1639–1642
52. Gatti R, Cappellin E, Zecchin B, Antonelli G, Spinella P, Mantero F, De Palo EF (2005) Urinary
high performance reverse phase chromatography cortisol and cortisone analyses before and
at the end of a race in elite cyclists. J Chromatogr B Analyt Technol Biomed Life Sci 824(1–
2):51–56. https://doi.org/10.1016/j.jchromb.2005.06.037
53. Sanghavi BJ, Moore JA, Chavez JL, Hagen JA, Kelley-Loughnane N, Chou CF, Swami NS
(2016) Aptamer-functionalized nanoparticles for surface immobilization-free electrochemical
detection of cortisol in a microfluidic device. Biosens Bioelectron 78:244–252. https://doi.
org/10.1016/j.bios.2015.11.044
54. Smith JE, Medley CD, Tang Z, Shangguan D, Lofton C, Tan W (2007) Aptamer-conjugated
nanoparticles for the collection and detection of multiple cancer cells. Anal Chem 79(8):3075–
3082. https://doi.org/10.1021/ac062151b
55. Stevens RC, Soelberg SD, Near S, Furlong CE (2008) Detection of cortisol in saliva with a
flow-filtered, portable surface plasmon resonance biosensor system. Anal Chem 80(17):6747–
6751
56. Zhang J, Gopinath SCB (2020) Quantification of cortisol for the medical diagnosis of multiple
pregnancy-related diseases. 3 Biotech 10(2):35
57. Bao X, Huo G, Li L, Cao X, Liu Y, Lakshmipriya T, Chen Y, Hariri F, Gopinath SCB (2019)
Coordinated dispersion and aggregation of gold nanorod in aptamer-mediated gestational
hypertension analysis. J Anal Methods Chem 2019:5676159
58. Fernandez RE, Umasankar Y, Manickam P, Nickel JC, Iwasaki LR, Kawamoto BK, Todoki
KC, Scott JM, Bhansali S (2017) Disposable aptamer-sensor aided by magnetic nanoparticle
enrichment for detection of salivary cortisol variations in obstructive sleep apnea patients. Sci
Rep 7(1):17992. https://doi.org/10.1038/s41598-017-17835-8
59. Liu Y, Wu B, Tanyi EK, Yeasmin S, Cheng LJ (2020) Label-Free sensitive detection of steroid
hormone cortisol based on target-induced fluorescence quenching of quantum dots. Langmuir
36(27):7781–7788. https://doi.org/10.1021/acs.langmuir.0c00513
60. Fang X, Sen A, Vicens M, Tan W (2003) Synthetic DNA aptamers to detect protein molecular
variants in a high-throughput fluorescence quenching assay. ChemBioChem 4(9):829–834.
https://doi.org/10.1002/cbic.200300615
61. Li W, Yang X, Wang K, Tan W, Li H, Ma C (2008) FRET-based aptamer probe for rapid
angiogenin detection. Talanta 75(3):770–774. https://doi.org/10.1016/j.talanta.2007.12.012
62. Harbeck N, Penault-Llorca F, Cortes J, Gnant M, Houssami N, Poortmans P, Ruddy K, Tsang
J, Cardoso F (2019) Breast cancer. Nat Rev Dis Primers 5(1):66. https://doi.org/10.1038/s41
572-019-0111-2
63. Ahirwar R, Dalal A, Sharma JG, Yadav BK, Nahar P, Kumar A, Kumar S (2019) An aptasensor
for rapid and sensitive detection of estrogen receptor alpha in human breast cancer. Biotechnol
Bioeng 116(1):227–233. https://doi.org/10.1002/bit.26819
64. Brisken C (2013) Progesterone signalling in breast cancer: a neglected hormone coming into
the limelight. Nat Rev Cancer 13(6):385–396. https://doi.org/10.1038/nrc3518
