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Neonatal intramuscular injection of plasmid DNA encoding GLP-1 reduces serum insulin level and modifies skeletal muscle myosin heavy chain composition in adult rats
L. Wang, F. Guo, S. Wei, R. Zhao
Jazyk angličtina Země Česko
NLK
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- MeSH
- down regulace MeSH
- elektroporace MeSH
- financování organizované MeSH
- glukagonu podobný peptid 1 biosyntéza genetika MeSH
- injekce intramuskulární MeSH
- inzulin krev MeSH
- kosterní svaly metabolismus růst a vývoj MeSH
- krevní glukóza metabolismus MeSH
- krysa rodu rattus MeSH
- messenger RNA metabolismus MeSH
- novorozená zvířata MeSH
- pankreas metabolismus růst a vývoj MeSH
- plazmidy aplikace a dávkování MeSH
- poruchy růstu genetika metabolismus MeSH
- potkani Wistar MeSH
- přenašeč glukosy typ 4 genetika MeSH
- protein - isoformy MeSH
- proteiny vázající RNA genetika MeSH
- tělesná hmotnost MeSH
- těžké řetězce myosinu genetika metabolismus MeSH
- transfekce MeSH
- transkripční faktory genetika MeSH
- věkové faktory MeSH
- velikost orgánu MeSH
- zvířata MeSH
- Check Tag
- krysa rodu rattus MeSH
- mužské pohlaví MeSH
- ženské pohlaví MeSH
- zvířata MeSH
To test the hypothesis that neonatal GLP-1 exposure may program myosin heavy chain (MyHC) composition in adult skeletal muscle, two-day-old rats were transfected intramuscularly with vacant vector plasmid (VP), or recombinant plasmid expressing secretory GLP-1 at the doses of 60 µg (LG) and 120 µg (HG), respectively. Expression of GLP-1 mRNA was detected in muscles of both LG and HG rats 7 days after transfection, with more abundant GLP-1 transcript seen in LG rats. In accordance with the GLP-1 expression, LG rats demonstrated more significant responses to neonatal GLP-1 exposure. Small yet significant growth retardation was observed in LG rats, which is accompanied with significantly reduced serum insulin concentration at 8 weeks of age compared to VP rats. The responses of skeletal muscle were dependent on muscle type. Significant increase of PGC-1? and GLUT4 mRNA expression was detected in soleus of LG rats, whereas a MyHC type switch from ?B to ? was seen in gastrocnemius. These results indicate that neonatal exposure of healthy pups to ectopic GLP-1 causes growth retardation with decreased serum insulin as well as muscle type-dependent modifications in MyHC type composition and metabolic gene expression in adult rats.
Citace poskytuje Crossref.org
Lit.: 32
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- $a To test the hypothesis that neonatal GLP-1 exposure may program myosin heavy chain (MyHC) composition in adult skeletal muscle, two-day-old rats were transfected intramuscularly with vacant vector plasmid (VP), or recombinant plasmid expressing secretory GLP-1 at the doses of 60 µg (LG) and 120 µg (HG), respectively. Expression of GLP-1 mRNA was detected in muscles of both LG and HG rats 7 days after transfection, with more abundant GLP-1 transcript seen in LG rats. In accordance with the GLP-1 expression, LG rats demonstrated more significant responses to neonatal GLP-1 exposure. Small yet significant growth retardation was observed in LG rats, which is accompanied with significantly reduced serum insulin concentration at 8 weeks of age compared to VP rats. The responses of skeletal muscle were dependent on muscle type. Significant increase of PGC-1? and GLUT4 mRNA expression was detected in soleus of LG rats, whereas a MyHC type switch from ?B to ? was seen in gastrocnemius. These results indicate that neonatal exposure of healthy pups to ectopic GLP-1 causes growth retardation with decreased serum insulin as well as muscle type-dependent modifications in MyHC type composition and metabolic gene expression in adult rats.
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