Merge version_26 into main #43

Merged
bender merged 2 commits from version_26 into main 2026-04-07 00:41:29 +00:00
2 changed files with 4 additions and 4 deletions

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@@ -35,8 +35,8 @@ export default function RetatrutidePage() {
title="Retatrutide"
subtitle="Biological Mechanisms & Research Applications"
sections={[
{ heading: "Biological Mechanism", content: { type: "paragraph", text: "Retatrutide acts as a triple agonist, targeting GIP, GLP-1, and glucagon receptors. This triple-action approach allows researchers to observe more complex metabolic regulation, focusing on signaling pathways that govern energy balance and lipid metabolism." } },
{ heading: "Research Value", content: { type: "paragraph", text: "As a novel research compound, Retatrutide is being utilized to investigate advanced metabolic pathways and the synergistic effects of multi-receptor agonism on cellular response." } }
{ heading: "Biological Mechanism", content: { text: "Retatrutide acts as a triple agonist, targeting GIP, GLP-1, and glucagon receptors. This triple-action approach allows researchers to observe more complex metabolic regulation, focusing on signaling pathways that govern energy balance and lipid metabolism." } },
{ heading: "Research Value", content: { text: "As a novel research compound, Retatrutide is being utilized to investigate advanced metabolic pathways and the synergistic effects of multi-receptor agonism on cellular response." } }
]}
/>
<FooterSimple

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@@ -35,8 +35,8 @@ export default function TirzepatidePage() {
title="Tirzepatide"
subtitle="Biological Mechanisms & Research Applications"
sections={[
{ heading: "Biological Mechanism", content: { type: "paragraph", text: "Tirzepatide acts as a dual agonist for the Glucose-dependent Insulinotropic Polypeptide (GIP) and Glucagon-Like Peptide-1 (GLP-1) receptors. By stimulating these receptors, it influences insulin secretion, glucagon suppression, and gastric emptying, playing a critical role in metabolic pathway studies." } },
{ heading: "Research Value", content: { type: "paragraph", text: "Widely studied for its impact on metabolic health, Tirzepatide serves as a significant compound for understanding glucose homeostasis and appetite regulation mechanisms in research environments." } }
{ heading: "Biological Mechanism", content: { text: "Tirzepatide acts as a dual agonist for the Glucose-dependent Insulinotropic Polypeptide (GIP) and Glucagon-Like Peptide-1 (GLP-1) receptors. By stimulating these receptors, it influences insulin secretion, glucagon suppression, and gastric emptying, playing a critical role in metabolic pathway studies." } },
{ heading: "Research Value", content: { text: "Widely studied for its impact on metabolic health, Tirzepatide serves as a significant compound for understanding glucose homeostasis and appetite regulation mechanisms in research environments." } }
]}
/>
<FooterSimple