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1.
Biomed Pharmacother ; 176: 116762, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38788597

ABSTRACT

Obesity is a multifaceted medical condition characterized by the pathological accumulation of excessive lipids in the body. We investigated the effects of morroniside, a bioactive compound derived from Cornus officinalis, on adipogenesis. We used a preadipocyte 3T3-L1 stable cell line and primary cultured adipose-derived stem cells (ADSCs) in vitro and ovariectomized (OVX) and a high-fat diet (HFD)-fed obese mouse model in vivo. Preadipocyte 3T3-L1 cells and ADSCs incubated with morroniside during adipocyte differentiation and obese mice subjected to OVX and HFD received oral morroniside treatment for 12 weeks. Morroniside treatment significantly reduced adipocyte differentiation and fatty acid accumulation and downregulated adipogenesis-related gene expression, concomitant with a decrease in triglyceride content and an increase in glycerol release in cells. The results of the in vivo study showed that morroniside ameliorated obesity-related phenotypes by reducing body weight gain, hepatic steatosis, and adipose tissue in obese mice. These findings suggest that morroniside is a promising compound for preventing and treating obesity.


Subject(s)
3T3-L1 Cells , Adipogenesis , Anti-Obesity Agents , Diet, High-Fat , Mice, Inbred C57BL , Obesity , Animals , Mice , Adipogenesis/drug effects , Obesity/drug therapy , Obesity/metabolism , Anti-Obesity Agents/pharmacology , Female , Diet, High-Fat/adverse effects , Adipocytes/drug effects , Adipocytes/metabolism , Glycosides/pharmacology , Adipose Tissue/drug effects , Adipose Tissue/metabolism , Cell Differentiation/drug effects , Mice, Obese , Triglycerides/metabolism , Ovariectomy , Fatty Liver/drug therapy
2.
Polymers (Basel) ; 15(12)2023 Jun 06.
Article in English | MEDLINE | ID: mdl-37376229

ABSTRACT

As the world is shifting from internal combustion engine vehicles to electric vehicles in response to environmental pollution, the tire industry has been conducting research on tire performance to meet the requirements of electric vehicles. In this experiment, functionalized liquid butadiene rubber (F-LqBR) with triethoxysilyl groups at both ends was introduced into a silica-filled rubber compound as a substitute for treated distillate aromatic extract (TDAE) oil, and comparative evaluation was conducted according to the number of triethoxysilyl groups. The results showed that F-LqBRs improved silica dispersion in the rubber matrix through the formation of chemical bonds between silanol groups and the base rubber, and reduced rolling resistance by limiting chain end mobility and improving filler-rubber interaction. However, when the number of triethoxysilyl groups in F-LqBR was increased from two to four, self-condensation increased, the reactivity of the silanol groups decreased, and the improvement of properties was reduced. As a result, the optimized end functionality of triethoxysilyl groups for F-LqBR in silica-filled rubber compound was two. The 2-Azo-LqBR with the optimized functionality showed an improvement of 10% in rolling resistance, 16% in snow traction, and 17% in abrasion resistance when 10 phr of TDAE oil was substituted.

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