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Your search keyword '"Shaili Aggarwal"' showing total 18 results

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18 results on '"Shaili Aggarwal"'

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1. Structural studies of the human α1 glycine receptor via site-specific chemical cross-linking coupled with mass spectrometry

2. Allosteric modulation of serotonin and dopamine transporters: New insights from computations and experiments

3. Functional Characterization of the Dopaminergic Psychostimulant Sydnocarb as an Allosteric Modulator of the Human Dopamine Transporter

4. Uterine Neoplasms, Version 1.2023, NCCN Clinical Practice Guidelines in Oncology

7. Individual differences in dopamine uptake in the dorsomedial striatum prior to cocaine exposure predict motivation for cocaine in male rats

8. Site-specific Crosslinking Coupled with Mass Spectrometry as a Structural Tool in Studies of the Human α1Glycine Receptor

9. Development of Clickable Photoaffinity Ligands for Metabotropic Glutamate Receptor 2 Based on Two Positive Allosteric Modulator Chemotypes

10. ANTI-HYPERTENSIVE MECHANISMS OF CYCLIC DEPSIPEPTIDE INHIBITOR LIGANDS FOR G(q/11) CLASS G PROTEINS

11. In Vitro Assays for the Functional Characterization of the Dopamine Transporter (DAT)

12. Overview of Monoamine Transporters

13. Structural and functional interaction of (±)-2-(N-tert-butylamino)-3′-iodo-4′-azidopropiophenone, a photoreactive bupropion derivative, with nicotinic acetylcholine receptors

14. Bupropion Binds to Two Sites in the Torpedo Nicotinic Acetylcholine Receptor Transmembrane Domain: A Photoaffinity Labeling Study with the Bupropion Analogue [125I]-SADU-3-72

15. (±)-2-(N-tert-Butylamino)-3′-[125I]-iodo-4′-azidopropiophenone: A dopamine transporter and nicotinic acetylcholine receptor photoaffinity ligand based on bupropion (Wellbutrin, Zyban)

17. A novel photoaffinity ligand for the dopamine transporter based on pyrovalerone

18. Corrigendum to: 'Structural and functional interaction of (±)-2-(N-tert-butylamino)-3′-iodo-4′-azidopropiophenone, a photoreactive bupropion derivative, with nicotinic acetylcholine receptors', [Neurochem Int 2012 61 (8), 1433–1441]

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