AbstractC2C12 cells are a well-established model system for studying myogenesis. We examined whether inhibiting the process of myogenesis via expression of dominant negative (DN) mitogen-activated protein kinase kinase-3 (MKK3) facilitated the trans-differentiation of these cells into adipocytes. Cells expressing DN MKK3 respond to rosiglitazone, resulting in adipocyte formation. The effects of rosiglitazone appear to be potentiated through peroxisome proliferator activating receptor-γ. This trans-differentiation is inhibited by the use of the phosphoinositide-3 (PI3) kinase inhibitor, LY294002. These results indicate that preventing myogenesis through expression of DN MKK3 facilitates adipocytic trans-differentiation, and involves PI3 kina...
Mesenchymal stem cells (MSCs) provide us an excellent cellular model to uncover the molecular mechan...
Exercise-generated signals are pro-osteogenic and anti-adipogenic within the marrow. In vitro studie...
AIMS/HYPOTHESIS: Satellite cells are responsible for postnatal skeletal muscle regeneration. It has ...
AbstractC2C12 cells are a well-established model system for studying myogenesis. We examined whether...
<p>(A) 3T3-L1 cells infected with an empty lentiviral vector (EV) or with a lentivirus expressing hu...
The downstream targets of insulin/IGF-1 that lead to adipocyte differentiation appear to include the...
Abstract Background Multipotent stem cells exist within adipose tissue throughout life. An abnormal ...
The role of AMP-activated protein kinase (AMPK) in adipocyte differentiation is not completely under...
<p><b>A.</b> 3T3-L1 preadipocytes were exposed to differentiation medium and MK mRNA expression was ...
Recently, new molecular pathways are being investigated to find potential treatments for obesity. On...
Excessive preadipocyte differentiation is linked with obesity. Although previous studies have shown ...
During 3T3-L1 preadipocyte differentiation induction, the insulin-stimulated insulin-like growth fac...
Obesity is a major risk for diabetes. Brown adipose tissue (BAT) mediates production of heat while w...
The growing obesity epidemic has led to an increased interest in the study of adipogenesis, which ca...
<p>(A) Compounds inhibit the transcription activity of PPAR-γ. (B) Compound 1 suppresses 3T3-L1 adip...
Mesenchymal stem cells (MSCs) provide us an excellent cellular model to uncover the molecular mechan...
Exercise-generated signals are pro-osteogenic and anti-adipogenic within the marrow. In vitro studie...
AIMS/HYPOTHESIS: Satellite cells are responsible for postnatal skeletal muscle regeneration. It has ...
AbstractC2C12 cells are a well-established model system for studying myogenesis. We examined whether...
<p>(A) 3T3-L1 cells infected with an empty lentiviral vector (EV) or with a lentivirus expressing hu...
The downstream targets of insulin/IGF-1 that lead to adipocyte differentiation appear to include the...
Abstract Background Multipotent stem cells exist within adipose tissue throughout life. An abnormal ...
The role of AMP-activated protein kinase (AMPK) in adipocyte differentiation is not completely under...
<p><b>A.</b> 3T3-L1 preadipocytes were exposed to differentiation medium and MK mRNA expression was ...
Recently, new molecular pathways are being investigated to find potential treatments for obesity. On...
Excessive preadipocyte differentiation is linked with obesity. Although previous studies have shown ...
During 3T3-L1 preadipocyte differentiation induction, the insulin-stimulated insulin-like growth fac...
Obesity is a major risk for diabetes. Brown adipose tissue (BAT) mediates production of heat while w...
The growing obesity epidemic has led to an increased interest in the study of adipogenesis, which ca...
<p>(A) Compounds inhibit the transcription activity of PPAR-γ. (B) Compound 1 suppresses 3T3-L1 adip...
Mesenchymal stem cells (MSCs) provide us an excellent cellular model to uncover the molecular mechan...
Exercise-generated signals are pro-osteogenic and anti-adipogenic within the marrow. In vitro studie...
AIMS/HYPOTHESIS: Satellite cells are responsible for postnatal skeletal muscle regeneration. It has ...