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List of works by David B Finlay

100 years of modelling ligand-receptor binding and response: A focus on GPCRs

scientific article published on 28 February 2020

An evaluation of the operational model when applied to quantify functional selectivity

scientific article published on 19 February 2018

An intact model for quantifying functional selectivity

scientific article published on 22 February 2019

Cannabinoid CB1 and CB2 Receptor-Mediated Arrestin Translocation: Species, Subtype, and Agonist-Dependence

scientific article published on 10 April 2019

Cannabinoid CB2 receptor ligand profiling reveals biased signalling and off-target activity.

scientific article published on 03 January 2017

Development of positive control tissue for in situ hybridisation using Alvetex scaffolds

scientific article published on 19 September 2014

Do Toxic Synthetic Cannabinoid Receptor Agonists Have Signature in Vitro Activity Profiles? A Case Study of AMB-FUBINACA

scientific article published on 24 September 2019

Evaluation of the profiles of CB1 cannabinoid receptor signalling bias using joint kinetic modelling

scientific article published on 15 April 2020

Factors influencing the specificity and bias of CB1 cannabinoid receptor signalling

2018 doctoral thesis by David Finlay at University of Auckland

Functional Characterisation of GPR18: A Putative Cannabinoid Receptor

2014 master's thesis by David Finlay at University of Auckland

GPR18 undergoes a high degree of constitutive trafficking but is unresponsive to N-Arachidonoyl Glycine

scientific article published on 21 March 2016

Gαs signalling of the CB1 receptor and the influence of receptor number

scientific article published on 18 May 2017

Model-free and kinetic modelling approaches for characterising non-equilibrium pharmacological pathway activity: Internalisation of cannabinoid CB1 receptors

scientific article published on 21 May 2019

Real-Time Measurement of Cannabinoid Receptor-Mediated cAMP Signaling.

scientific article published on 27 June 2017

Signalling profiles of a structurally diverse panel of synthetic cannabinoid receptor agonists

scientific article published on 21 February 2020