Related Experiment Video
Updated: Jul 16, 2026

Investigation of Beige Fat Biology and Metabolism Using the CRISPR SunTag-p65-HSF1 Activation System
Published on: January 6, 2023
Investigation of an ALDH1A1-Specific Inhibitor, FSI-TN42, as a Treatment for Obesity in Female Mice
Jisun Paik1, Haley Martin1, Andy Jinpyo Kim1
1Department of Comparative Medicine, University of Washington, Seattle, WA 98195, USA.
Abstract:
Background/Objectives: Retinoic acids (RA) are involved in regulation of weight and energy metabolism. Mice lacking a RA synthesis enzyme, ALDH1A1, are resistant to diet-induced obesity. We previously identified an ALDH1A1-specific inhibitor, FSI-TN42 (N42), and demonstrated its efficacy in suppressing weight gain in male C57BL/6 mice fed a high-fat diet (HFD). In this report, we evaluated whether N42 is similarly effective in female mice. Methods: Two studies were performed. In the first study, C57BL/6 female mice were fed a HFD for 12 weeks to induce obesity, after which half were switched to a HFD supplemented with N42 (1 g/kg diet). A control group of mice was maintained on a low-fat purified diet throughout the study. Body weight was determined weekly, and fasting or fed blood glucose was determined at 4-8-week intervals. In the second study, obese female C57BL/6 mice were transitioned from a HFD to either (1) a moderate-fat diet (MFD) or (2) MFD + N42 for 9 weeks. Results: N42 significantly suppressed weight gain in female mice maintained on a HFD. However, it did not enhance weight loss when administered alongside a MFD diet, which alone induced significant weight loss comparable to mice fed a control diet throughout the study. Conclusions: The ALDH1A1 inhibitor N42 suppresses weight gain in female mice, consistent with prior findings in male mice. However, unlike in males, N42 did not enhance weight loss under conditions of caloric reduction, likely due to more profound weight loss induced by the lower-calorie diet in female mice.
Insights
The ALDH1A1 inhibitor FSI-TN42 (N42) suppresses weight gain in female mice on a high-fat diet. However, N42 did not enhance weight loss when combined with a moderate-fat diet in females.
Area of Science:
- Metabolism and Endocrinology
- Obesity Research
- Pharmacology
Background:
- Retinoic acids (RA) play a role in regulating energy metabolism and body weight.
- Mice deficient in ALDH1A1, a RA synthesis enzyme, exhibit resistance to diet-induced obesity.
- An ALDH1A1 inhibitor, FSI-TN42 (N42), previously showed efficacy in reducing weight gain in male mice on a high-fat diet (HFD).
Purpose of the Study:
- To investigate the efficacy of the ALDH1A1 inhibitor N42 in preventing and managing obesity in female mice.
- To compare the effects of N42 in female mice with previously observed effects in male mice.
Main Methods:
- Two studies were conducted using C57BL/6 female mice.
- Study 1: Obese mice on HFD received either HFD or HFD + N42 for 12 weeks.
- Study 2: Obese mice on HFD were switched to a moderate-fat diet (MFD) or MFD + N42 for 9 weeks. Body weight and blood glucose were monitored.
Main Results:
- N42 significantly suppressed weight gain in female mice maintained on a HFD.
- N42 did not enhance weight loss when administered with a MFD.
- The MFD alone induced significant weight loss in female mice, comparable to a control diet.
Conclusions:
- The ALDH1A1 inhibitor N42 effectively suppresses weight gain in female mice, mirroring findings in males.
- N42's efficacy in promoting weight loss under caloric restriction differs between sexes.
- Female mice experienced substantial weight loss on a MFD alone, potentially masking N42's additive effect.
