← 返回

Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.

Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.

期刊: General physiology and biophysics 日期: 2026-05-01 PMID: 42305063 DOI: 10.4149/gpb_2026003 浏览: 43
作者: Lee SH, Ahn SH, Ok SH, Sim G, Park KE, Park S, Sohn JT
SH, L., SH, A., SH, O., G, S., KE, P., S, P., & JT, S. (2026). Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.. General physiology and biophysics. https://doi.org/10.4149/gpb_2026003
SH L, SH A, SH O, G S, KE P, S P, et al. Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.. General physiology and biophysics. 2026; doi: 10.4149/gpb_2026003
SH L, SH A, SH O, et al. Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.[J]. General physiology and biophysics. 2026. DOI: 10.4149/gpb_2026003.
@article{sh2026,
  author = {Lee SH and Ahn SH and Ok SH and Sim G and Park KE and Park S and Sohn JT},
  title = {Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.},
  journal = {General physiology and biophysics},
  year = {2026},
  doi = {10.4149/gpb_2026003},
  note = {PMID: 42305063},
}
TY  - JOUR
AU  - Lee SH
AU  - Ahn SH
AU  - Ok SH
AU  - Sim G
AU  - Park KE
AU  - Park S
AU  - Sohn JT
TI  - Lipid emulsion attenuates theophylline-induced cardiotoxicity in rat cardiomyoblasts.
T2  - General physiology and biophysics
PY  - 2026
DO  - 10.4149/gpb_2026003
AN  - PMID:42305063
ER  - 

摘要

Theophylline, a bronchodilator, induces cardiotoxicity due to its narrow therapeutic index. Lipid emulsion is used as a nonspecific antidote. However, its effects on theophylline-induced cardiotoxicity remain unknown. This study aimed to examine the effects of lipid emulsion on cardiotoxicity induced by toxic doses of theophylline in H9c2 rat cardiomyoblasts. The effects of theophylline and lipid emulsion (Lipofundin MCT/LCT), alone or in combination, on cell viability and migration were examined. Moreover, their effects on cleaved caspase-3, Bax/Bcl-XL ratio, and cleaved caspase-9 and caspase-8 expression, nuclear factor-κβ (NF-κβ) phosphorylation, and TUNEL-positive cells were examined. Theophylline treatment decreased cell viability. Lipofundin MCT/LCT (0.1-1%) with 50% longchain and 50% medium-chain fatty acids inhibited the theophylline-induced reduction in cell viability (3×10-3 M). It partially inhibited the theophylline-induced decrease in cell migration. Further, it reversed the theophylline-induced increase in cleaved caspase-3, Bax/Bcl-XL ratio, and cleaved caspase-9 expression as well as NF-κβ (Ser536) phosphorylation. However, theophylline treatment did not alter cleaved caspase-8 expression. Additionally, lipid emulsion inhibited theophylline-induced increase in TUNELpositive cells. Taken together, these results suggest that lipid emulsion reverses theophylline-induced apoptosis in cardiomyoblasts via inhibition of the mitochondrial apoptotic pathway associated with NF-κβ (Ser536) phosphorylation, indicating its potential for treating theophylline-induced cardiotoxicity.

AI 智能解读

相关文献

返回分类: 心血管 查看原文 (DOI)
已选择 0 篇文献