drugset / Trial / NCT04137029
Methacholine, Long-acting M-cholinolytic and beta2-agonist on the Activity of Beta-receptors in Healthy Volunteers
Unknown
20 enrolled
Federal State Budgetary Institution, Pulmonology Scientific Research Institute
Branch of Shemyakin-Ovchinnikov Institute of Bioorganic chemistry of RAS · collabMoscow State University of Medicine and Dentistry · collabNational Medical Research Center for Cardiology, Ministry of Health of Russian Federation · collab
RandomizedParallel-groupOpen-labelHealth-services research
Summary
Interventional open-labeled study in parallel groups is aimed to evaluate changes of beta receptors in healthy volunteers under the influence of inhaled metacholine, long-acting anticholinergics and beta-agonists using modified radioligand method.
Timeline
- Start
- 2019-04-24
- Primary completion
- 2020-07
- Completion
- 2020-10
Publications
- Results Agapova OY, Skoblov YS, Zykov KA, Rvacheva AV, Beilina VB, Masenko VP, Chazova IE. [Radioligand Method of Assessment of beta-Adrenoceptor's Activity on Human T-Lymphocytes]. Bioorg Khim. 2015 Sep-Oct;41(5):592-8. doi: 10.1134/s1068162015050027. Russian.
- Results Agapova OY, Skoblov YS, Tkachev GA, Mironova NA, Golitsyn SP, Masenko VP, Chazova IE, Zykov KA. [Changes in the receptor activity of beta2-adrenoreceptors of human T-lymphocytes under the effect of beta2-agonists]. Mol Biol (Mosk). 2016 Nov-Dec;50(6):999-1006. doi: 10.7868/S0026898416050025. Russian.
- Results Smolyakova E.V., Skoblov Y.S., Skoblova N.A., Agapova O.Y., Ambat'ello L.G., Klimova A.A., Kuznetsova T.V., Masenko V.P., Nistor S.Yu., Rvacheva A.V., Chazova I.E., Zykov K.A. Specificity and Selectivity of the Modified Radioligand Method for Assessment of β1-Adrenoreceptor's Binding Activity on Human T-Lymphocytes. Russian Journal of Bioorganic Chemistry 45(3): 295-301, 2019
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Formoterol | Other / unclassified | 12 ug | Inhaled |
| Subject | Tiotropium | Other / unclassified | 18 ug | Inhaled |