线粒体
细胞生物学
氧化应激
氧化磷酸化
化学
自愈水凝胶
移植
细胞外
功能(生物学)
木聚糖
生物化学
线粒体融合
活性氧
氧化损伤
细胞代谢
再生医学
生物
生物物理学
活力测定
膜电位
氧化代谢
疾病治疗
生物相容性材料
线粒体ROS
作者
E. Muscolino,Antonella Girgenti,Daniela Giacomazza,Clelia Dispenza,Pasquale Picone,Domenico Nuzzo
出处
期刊:Nova Science Publishers, Inc. - Nova Science Publishers
日期:2025-06-01
摘要
Mitochondria are essential for ATP production, metabolism regulation, and cellular homeostasis. Their dysfunction is implicated in neurodegenerative diseases, yet no targeted mitochondrial therapies currently exist. Mitochondrial transplantation (MT) has emerged as a promising strategy to restore bioenergetics, reduce oxidative stress, and enhance neuronal survival. However, challenges such as extracellular oxidative stress and inefficient mitochondrial delivery limit its clinical potential. This study explores a novel MT approach utilizing a degalactosylated xyloglucan (dXG) hydrogel to encapsulate mitochondria, ensuring protection and controlled release. The hydrogel shields mitochondria from oxidative stress, preserving their functionality, and facilitating sustained local delivery. Rheological analysis confirms the hydrogel stability and mechanical support, while in vitro experiments demonstrate improved mitochondrial viability and cellular uptake. By enhancing mitochondrial retention and function at the target site, this hydrogel-based strategy offers a potential breakthrough for neurodegenerative disease treatment.
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