Validation and application of solid-phase chemiluminescent immunoassays for diagnosis of endocrine diseases in animals

被引:70
作者
Reimers, TJ
Salerno, VJ
Lamb, SV
机构
[1] Diagnostic Laboratory, College of Veterinary Medicine, Cornell University, Ithaca, NY
来源
COMPARATIVE HAEMATOLOGY INTERNATIONAL | 1996年 / 6卷 / 03期
关键词
automation; chemiluminescence; endocrinology; immunoassay; validation; veterinary medicine;
D O I
10.1007/BF00368462
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Significant progress has been made in the ability of veterinarians to diagnose endocrine diseases since introduction and development of the radioimmunoassay (RIA) in the 1960s. Alternatives to the radioactive label have been commercialised for human diagnostic applications. Because healthy animals have concentrations of several hormones in serum that are lower than in humans, these non-isotopic assays generally lack the sensitivity for measuring hormones in animals. However, the chemiluminescent enzyme immunoassay may provide this needed sensitivity. We validated the DPC-Cirrus Immulite(R) automated chemiluminescent immunoassay system for measurement of cortisol in dogs, cats and horses. Serial dilutions of serum inhibited binding of alkaline phosphatase-labelled cortisol in a manner that was parallel with inhibition produced by the stored master calibration curve. Six dogs were injected with adrenocorticotropin (ACTH; 2.2 IU/kg i.m.) and five dogs were injected with dexamethasone (0.015 mg/kg i.v.). Changes in cortisol concentrations measured with the Immulite(R) were as expected based on published results. Similar tests of biological specificity in other species yielded similar results. Accuracy of the Immulite(R) cortisol assay was evaluated by comparing cortisol concentrations in serum with concentrations obtained by a validated RIA. The regression equations were: y = 14.6 + 0.8x for dogs (n = 59, r(2) = 0.91), y = 13.5 + 0.9x for horses (n = 23, r(2) = 0.90), and y = 29.8 + 1.Ox for cats (n = 18, r(2) = 0.96), where y = Immulite(R) result (nmol/l) and x = RIA result (nmol/l). The regression equation for the canine urinary cortisol: creatinine ratio was y = 0.43 + 1.55x, where y = ratio calculated from Immulite(R) cortisol concentrations and x = ratio using RIA concentrations (n = 35, r(2) = 0.93). Initially, the lower limit of the reportable range by the Immulite(R) was 27.6 nmol/l, a value that was unacceptable for veterinary diagnostics. After consultation with DPC-Cirrus, we adjusted the lower limit to 1.4 nmol/l. Coefficients of variation for two canine, one feline, and two equine quality-control serum samples included in 73 consecutive Immulite(R) assays ranged from 0.29 (mean = 29.0 nmol/l) to 0.09 (mean = 261.6 nmol/l). We are using the Immulite(R) routinely for the diagnosis of adrenal disease in animals and have found it to provide diagnostically useful cortisol results for dexamethasone-suppression and ACTH-stimulation tests. Its diagnostic accuracy on single baseline samples is probably less than for the RIA, particularly at concentrations of cortisol less than 27.6 nmol/l.
引用
收藏
页码:170 / 175
页数:6
相关论文
共 50 条
[31]   Validation and application of sub-2 μm core–shell UHPLC–UV–ESI–Orbitrap MS for identification and quantification of β-carotene and selected cleavage products with preceding solid-phase extraction [J].
G. Martano ;
E. Bojaxhi ;
I. C. Forstenlehner ;
C. G. Huber ;
N. Bresgen ;
P. M. Eckl ;
H. Stutz .
Analytical and Bioanalytical Chemistry, 2014, 406 :2909-2924
[32]   Development of Solid-Phase Extraction and HPLC Method for Simultaneous Estimation of Ilaprazole and Glimepiride in Rat Plasma: Application to Pharmacokinetic Studies [J].
Dewani, A. P. ;
Tripathi, A. S. ;
Shelke, P. G. ;
Bakal, R. L. ;
Mohale, D. S. ;
Chandewar, A. V. .
JOURNAL OF CHROMATOGRAPHIC SCIENCE, 2017, 55 (03) :327-333
[33]   Application of Response Surface Methodology to Optimize Solid-Phase Extraction of Benzoic Acid and Sorbic Acid from Food Drinks [J].
Kefi, Bochra Bejaoui ;
Baccouri, Sana ;
Torkhani, Rachel ;
Koumba, Sidrine ;
Martin, Patrick ;
M'Hamdi, Naceur .
FOODS, 2022, 11 (09)
[34]   Application of pseudo-template molecularly imprinted polymers by atom transfer radical polymerization to the solid-phase extraction of pyrethroids [J].
Zhang, Ming ;
He, Juan ;
Shen, Yanzheng ;
He, Weiye ;
Li, Yuanyuan ;
Zhao, Dongxin ;
Zhang, Shusheng .
TALANTA, 2018, 178 :1011-1016
[35]   Validation of a chromatographic method to determine E-6006 and its metabolite E-6332 in rat and dog plasma by solid-phase extraction and capillary gas chromatography.: Application in pharmacokinetics [J].
Puig, S ;
Moragon, T ;
García-Soret, A ;
Martínez, L .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2001, 24 (5-6) :887-896
[36]   Sulfonated poly(styrene-divinylbenzene) modified with amines and the application for pipette-tip solid-phase extraction of carbendazim in apples [J].
Ma, Yuxin ;
Liu, Lingling ;
Tang, Weiyang ;
Zhu, Tao .
JOURNAL OF SEPARATION SCIENCE, 2017, 40 (20) :3938-3945
[37]   Application of molecularly imprinted solid-phase extraction coupled with liquid chromatography method for detection of penicillin G in pasteurised milk samples [J].
Pourtaghi, Abbas ;
Mohammadinejad, Arash ;
Rezaee, Mitra Asgharian ;
Saberi, Mohammad Reza ;
Motamedshariaty, Vahideh Sadat ;
Mohajeri, Seyed Ahmad .
INTERNATIONAL JOURNAL OF DAIRY TECHNOLOGY, 2022, 75 (01) :83-93
[38]   The comparison of skin prick test, serological specific IgE test and solid phase immunoassay in the diagnosis of infantile allergic diseases [J].
Yan, Junmei ;
Chen, Jing ;
LI, Haiqi ;
Hu, Yan .
MINERVA PEDIATRICS, 2023, 75 (04) :455-459
[39]   Application of Hydrophilic Interaction Type Solid-Phase Extractant Immobilizing Zwitter-Ionic Macromolecule to the Analysis of Patulin in Apple Juices [J].
Kobayashi, Yasuyuki ;
Kamichatani, Waka ;
Inoue, Yoshinori ;
Yamamoto, Atsushi .
BUNSEKI KAGAKU, 2011, 60 (08) :635-639
[40]   Development and validation of a differential pulse polarographic method for quinolinic acid determination in human plasma and urine after solid-phase extraction: a chemometric approach [J].
Furlanetto, S ;
Pinzauti, S ;
La Porta, E ;
Chiarugi, A ;
Mura, P ;
Orlandini, S .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 1998, 17 (6-7) :1015-1028