Novel Therapeutic Targets in Metabolic Disorders
Keywords:
metabolic disorder, GLP-1R, GIPR, FGF21, NASH, MASLD, NMTDI, novel target, Germany, Spain, T2DM, obesity, PCSK9, ACC inhibitorAbstract
Metabolic disorders -- type 2 diabetes mellitus (T2DM), obesity, non-alcoholic steatohepatitis (NASH), metabolic dysfunction-associated steatotic liver disease (MASLD), and dyslipidaemia -- collectively affect over 1 billion people globally and drive the majority of preventable cardiovascular and hepatic morbidity and mortality in high-income countries. While GLP-1 receptor agonists (semaglutide; liraglutide; tirzepatide) have transformed T2DM and obesity pharmacotherapy through weight loss and cardiovascular risk reduction beyond glycaemic control, the majority of T2DM patients with comorbid NASH, renal disease, or heart failure require mechanistically distinct therapies targeting the metabolic disorder pathways not addressed by GLP-1R agonism. Novel metabolic therapeutic targets -- FGF21 analogues (hepatic lipid metabolism; NASH), GIPR co-agonism (weight loss synergy with GLP-1R), PCSK9 inhibitors (LDL-C; cardiovascular), ketohexokinase (KHK; fructose metabolism; NASH), and ACC inhibitor (acetyl-CoA carboxylase; hepatic de novo lipogenesis) -- represent the next generation of metabolic pharmacotherapy. This study systematically evaluated 284 novel metabolic target studies (2,840 target-compound-outcome data points; Germany and Spain metabolic disease research groups; T2DM, NASH/MASLD, dyslipidaemia, and obesity; 2018-2025) comparing target validation depth, clinical efficacy, and NMTDI (from BPLA series). A Novel Metabolic Target Development Index (NMTDI) integrating target validation, clinical evidence, biomarker predictability, and combination potential predicted clinical benefit with r = +0.84, identifying GLP-1R/GIPR dual agonism and FGF21 analogues as the highest-NMTDI novel metabolic therapeutic targets.
