Related Experiment Video
Updated: Apr 16, 2026

Homogeneous Time-resolved Förster Resonance Energy Transfer-based Assay for Detection of Insulin Secretion
Published on: May 10, 2018
A novel antidiabetic therapy: free fatty acid receptors as potential drug target
Hiroki Sekiguchi, Mayu Kasubuchi, Sae Hasegawa
1Department of Biological Chemistry, Kyoto University Graduate School of Pharmaceutical Sciences, 46-29 Yoshida Shimoadati-cho, Sakyo-ku, Kyoto, 606-8501, Japan. ichimura.atsuhiko.2r@kyoto-u.ac.jp.
Abstract:
Excessive dietary intake of fat is strongly involved in the development of type 2 diabetes (T2D). Free fatty acids (FFAs), which are provided from dietary fat, are not only important nutrients, but also act as signaling molecules and stimulate key biological functions. Recent physiological and pharmacological studies have shown that several G-protein coupled receptors, such as FFAR1-4, are receptors for FFAs. FFAR1 and FFAR4 are activated by medium- and long-chain fatty acids, whereas FFAR2 and FFAR3 are activated by short-chain fatty acids (SCFAs). These FFA receptors (FFARs) mediate various physiological functions, depending on the carbon chain length of the FFAs and the ligand specificity of the FFARs. Functional analyses have revealed that FFARs mediate important metabolic functions, such as peptide hormone secretion and inflammation, and thereby contribute to energy homeostasis. Since imbalances in energy homeostasis lead to metabolic disorders, such as obesity and T2D, FFARs are considered to be key therapeutic targets in these diseases. In particular, recent studies have shown that the administration of selective agonists of FFAR1 and FFAR4 improved glucose metabolism and ameliorated systemic metabolic disorders. Furthermore, the biological functions of SCFAs in anti-inflammation and energy metabolism are linked with the activation of FFAR2 and FFAR3. Hence, in this review, we summarize the physiological functions of FFARs and discuss the potential of selective ligands of FFARs for development as drugs to treat metabolic disorders, such as T2D and obesity.
Insights
Free fatty acid receptors (FFARs) play a crucial role in metabolic functions and energy homeostasis. Targeting FFARs with specific drugs shows promise for treating metabolic disorders like type 2 diabetes and obesity.
Area of Science:
- Metabolic physiology
- Pharmacology
- Endocrinology
Background:
- Excessive dietary fat intake contributes to type 2 diabetes (T2D).
- Free fatty acids (FFAs) are nutrients and signaling molecules involved in biological functions.
- G-protein coupled receptors (GPCRs), specifically FFAR1-4, are receptors for FFAs.
Purpose of the Study:
- To review the physiological functions of FFARs.
- To discuss the therapeutic potential of selective FFAR ligands for metabolic disorders.
Main Methods:
- Review of recent physiological and pharmacological studies.
- Analysis of FFAR activation by different fatty acid chain lengths.
- Examination of FFARs' role in metabolic functions like hormone secretion and inflammation.
Main Results:
- FFAR1 and FFAR4 are activated by medium- and long-chain FFAs.
- FFAR2 and FFAR3 are activated by short-chain fatty acids (SCFAs).
- Selective agonists of FFAR1 and FFAR4 improve glucose metabolism and ameliorate metabolic disorders.
- SCFA activation of FFAR2 and FFAR3 is linked to anti-inflammatory and energy metabolism effects.
Conclusions:
- FFARs are key targets for treating metabolic disorders due to their role in energy homeostasis.
- Selective FFAR ligands offer potential as therapeutic agents for T2D and obesity.
More Related Videos
Related Concept Videos
Glucagon-like Receptor Agonists
GLP-1, when administered in high doses intravenously, triggers insulin secretion, inhibits glucagon release, slows gastric emptying, reduces food intake, and restores normal insulin secretion. However, its rapid inactivation by...
Dipeptidyl Peptidase 4 Inhibitors
Oral Hypoglycemic Agents: Biguanides and Glitazones
Diabetes: Management and Pharmacotherapy
Insulin remains the cornerstone of treatment for most patients with type 1 and many...
Oral Hypoglycemic Agents: α-Glucosidase Inhibitors
Acarbose and miglitol are...
Oral Hypoglycemic Agents: Glinides

