GSEA analysis on the effect of tirzepatide on fatty acid metabolism showed that tirzepatide treatment exerted no significant effect on the mRNA expression of genes involved in fatty acid synthesis (SREBP2, FASN, ACC1, and SCD-1), fatty acid transport (FATP4 and FATP5), lipolysis (Mgll, Lipe, and ATGL), or inflammation (TNF, IL-1, and IL-6), suggesting that tirzepatide has limited effects on multiple metabolic pathways. Since metabolic dysregulation in MASLD also involves the extra-hepatic tissues, the authors analyzed the effect of tirzepatide on white & brown adipose tissues and skeletal muscle
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For instance, traditional IGF-1 has a shorter half-life, which may limit its effectiveness in promoting sustained muscle growth and recovery
It works by binding directly to the IGF-1 receptor (IGF-1R) on muscle and other tissue, activating the PI3K/Akt and MAPK signaling cascades that drive cell growth and proliferation