Suárez-Rivero Juan M, López-Pérez Juan, Muela-Zarzuela Inés, Pastor-Maldonado Carmen, Cilleros-Holgado Paula, Gómez-Fernández David, Álvarez-Córdoba Mónica, Munuera-Cabeza Manuel, Talaverón-Rey Marta, Povea-Cabello Suleva, Suárez-Carrillo Alejandra, Piñero-Pérez Rocío, Reche-López Diana, Romero-Domínguez José M, Sánchez-Alcázar José Antonio
Institute for Biomedical Researching and Innovation of Cádiz (INiBICA) University Hospital Puerta del Mar, 11009 Cádiz, Spain.
Department of Molecular Biology Interfaculty Institute for Cell Biology, University of Tuebingen, D-72076 Tuebingen, Germany.
Metabolites. 2023 Mar 12;13(3):416. doi: 10.3390/metabo13030416.
Neurodegenerative diseases are characterized by the progressive loss of neurons, synapses, dendrites, and myelin in the central and/or peripheral nervous system. Actual therapeutic options for patients are scarce and merely palliative. Although they affect millions of patients worldwide, the molecular mechanisms underlying these conditions remain unclear. Mitochondrial dysfunction is generally found in neurodegenerative diseases and is believed to be involved in the pathomechanisms of these disorders. Therefore, therapies aiming to improve mitochondrial function are promising approaches for neurodegeneration. Although mitochondrial-targeted treatments are limited, new research findings have unraveled the therapeutic potential of several groups of antibiotics. These drugs possess pleiotropic effects beyond their anti-microbial activity, such as anti-inflammatory or mitochondrial enhancer function. In this review, we will discuss the controversial use of antibiotics as potential therapies in neurodegenerative diseases.
神经退行性疾病的特征是中枢和/或外周神经系统中神经元、突触、树突和髓鞘的渐进性丧失。针对患者的实际治疗选择稀缺,且仅仅是姑息性的。尽管它们影响着全球数百万患者,但这些病症背后的分子机制仍不清楚。线粒体功能障碍普遍存在于神经退行性疾病中,并且被认为参与了这些疾病的发病机制。因此,旨在改善线粒体功能的疗法是治疗神经退行性变的有前景的方法。尽管针对线粒体的治疗方法有限,但新的研究发现揭示了几类抗生素的治疗潜力。这些药物除了具有抗菌活性外,还具有多效性作用,如抗炎或线粒体增强功能。在这篇综述中,我们将讨论抗生素作为神经退行性疾病潜在疗法的争议性应用。