Neuroregeneration Improved by Sodium-D,L-Beta-Hydroxybutyrate in Primary Neuronal Cultures.

IF 4.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Pharmaceuticals Pub Date : 2024-08-31 DOI:10.3390/ph17091160
Csilla Ari, Dominic P D'Agostino, Byeong J Cha
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Abstract

Ketone bodies are considered alternative fuels for the brain when glucose availability is limited. To determine the neuroregenerative potential of D,L-sodium-beta-hydroxybutyrate (D/L-BHB), Sprague Dawley rat primary cortical neurons were exposed to simulated central nervous system injury using a scratch assay. The neuronal cell migration, cell density and degree of regeneration in the damaged areas (gaps) in the absence (control) and presence of BHB (2 mM) were documented with automated live-cell imaging by the CytoSMART system over 24 h, which was followed by immunocytochemistry, labeling synapsin-I and β3-tubulin. The cell density was significantly higher in the gaps with BHB treatment after 24 h compared to the control. In the control, only 1.5% of the measured gap areas became narrower over 24 h, while in the BHB-treated samples 49.23% of the measured gap areas became narrower over 24 h. In the control, the gap expanded by 63.81% post-injury, while the gap size decreased by 10.83% in response to BHB treatment, compared to the baseline. The cell density increased by 97.27% and the gap size was reduced by 74.64% in response to BHB, compared to the control. The distance travelled and velocity of migrating cells were significantly higher with BHB treatment, while more synapsin-I and β3-tubulin were found in the BHB-treated samples after 24 h, compared to the control. The results demonstrate that D/L-BHB enhanced neuronal migration and molecular processes associated with neural regeneration and axonogenesis. These results may have clinical therapeutic applications in the future for nervous system injuries, such as for stroke, concussion and TBI patients.

原代神经元培养物中的 D,L-β-羟基丁酸钠可促进神经再生
当葡萄糖供应有限时,酮体被认为是大脑的替代燃料。为了确定 D,L-beta-羟基丁酸钠(D/L-BHB)的神经再生潜力,使用划痕试验将 Sprague Dawley 大鼠初级皮层神经元暴露于模拟的中枢神经系统损伤中。使用 CytoSMART 系统对损伤区域(间隙)在无 BHB(对照组)和有 BHB(2 mM)的情况下的神经细胞迁移、细胞密度和再生程度进行了 24 小时的自动活细胞成像记录,随后进行了免疫细胞化学分析,标记了突触素-I 和 β3-微管蛋白。与对照组相比,经过 24 小时 BHB 处理的隙间细胞密度明显更高。在对照组中,只有 1.5% 的测量间隙面积在 24 小时内变窄,而在 BHB 处理的样本中,49.23% 的测量间隙面积在 24 小时内变窄。在对照组中,与基线相比,损伤后的间隙扩大了 63.81%,而 BHB 处理后的间隙缩小了 10.83%。与对照组相比,细胞密度增加了 97.27%,间隙缩小了 74.64%。与对照组相比,BHB 处理 24 小时后细胞迁移的距离和速度明显增加,同时在 BHB 处理的样本中发现了更多的突触素-I 和 β3-微管蛋白。这些结果表明,D/L-BHB 能增强神经元迁移以及与神经再生和轴突生成相关的分子过程。这些结果未来可能会应用于神经系统损伤的临床治疗,如中风、脑震荡和创伤性脑损伤患者。
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来源期刊
Pharmaceuticals
Pharmaceuticals Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
6.10
自引率
4.30%
发文量
1332
审稿时长
6 weeks
期刊介绍: Pharmaceuticals (ISSN 1424-8247) is an international scientific journal of medicinal chemistry and related drug sciences.
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