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Therapeutic potential for thyroid hormone receptor-beta selective agonists for treating obesity, hyperlipidemia and
Gary J Grover1, Karin Mellström, Johan Malm
1Department of Pharmacology, Eurofins Scientific-PSL, 2394 Rt. 130, Dayton, NJ 08810, USA. garygrover@productsafetylabs.com
Abstract:
Obesity and metabolic syndrome are increasing dramatically worldwide, contributing to cardiovascular morbidity and mortality. There are currently few safe and efficacious therapeutics for obesity and most strategies are focused on appetite suppression. Thyroid hormones reduce adiposity via increased metabolic rate, but unfortunately they cause large changes in metabolic rate and direct cardiac acceleration, making them useless for treating obesity. Thyroid hormone receptors (TRs) work as transcription factors and two subtypes exist: TRalpha and TRbeta. TRalpha mediates tachycardia and much of the metabolic rate effect, while TRbeta mediates cholesterol and TSH lowering effects of thyroid hormones. TRbeta activation modestly increases metabolic rate such that a therapeutic window of 5-10 fold increases in metabolic rate can be seen without tachycardia. This was initially studied in TRalpha(1)(-/-) mice. Recent structure activity work has resulted in the discovery of several TRbeta selective thyromimetics such as KB-141. Studies with KB-141 show that it has a 10-fold window in which therapeutic increases in metabolic rate are seen without tachycardia or cardiac hypertrophy. This agent lowers cholesterol in rats and primates. In primates, KB-141 causes significant weight and cholesterol reduction in addition to the independent risk factor Lp(a). These effects were seen without any effect on heart rate, unlike thyroid hormone (T(3)). Further work with TRbeta selective agents is warranted and recent work suggests the possibility of developing compounds that selectively penetrate different tissues which may have an even more desirable therapeutic window. Selective thyromimetics, therefore, may be useful as adjunctive therapy to appetite suppressants along with exercise and diet restriction.
Insights
Selective thyroid hormone receptor beta (TRbeta) agonists offer a promising therapeutic strategy for obesity and metabolic syndrome. These agents increase metabolic rate and reduce weight and cholesterol without cardiac side effects, unlike traditional thyroid hormones.
Area of Science:
- Endocrinology
- Metabolic Diseases
- Cardiovascular Health
Background:
- Global rise in obesity and metabolic syndrome contributes to cardiovascular morbidity and mortality.
- Current obesity therapeutics are limited, with many focusing on appetite suppression.
- Thyroid hormones increase metabolic rate but cause adverse cardiac effects, limiting their therapeutic use.
Purpose of the Study:
- To investigate the therapeutic potential of selective thyroid hormone receptor beta (TRbeta) agonists for obesity and metabolic syndrome.
- To evaluate the efficacy and safety of TRbeta-selective thyromimetics, such as KB-141, in preclinical models.
Main Methods:
- Studied TRbeta selective thyromimetics, including KB-141, focusing on their effects on metabolic rate, heart rate, and cardiac function.
- Utilized preclinical models, including TRalpha(1)(-/-) mice, rats, and primates, to assess therapeutic effects and safety profiles.
- Examined the impact on body weight, cholesterol levels, and Lp(a) in primate studies.
Main Results:
- TRbeta activation demonstrated a therapeutic window (5-10 fold increase in metabolic rate) without tachycardia.
- KB-141 showed significant weight and cholesterol reduction in primates without affecting heart rate.
- KB-141 also reduced Lp(a), an independent cardiovascular risk factor, in primate studies.
Conclusions:
- Selective TRbeta thyromimetics represent a potentially safe and effective therapeutic approach for obesity and metabolic syndrome.
- These agents may offer a valuable adjunctive therapy to diet, exercise, and appetite suppressants.
- Further research into tissue-selective TRbeta compounds could yield even more favorable therapeutic windows.
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