Mishra Avinash Kumar, Singh Kuldeep, Saha Sunam, Bhardwaj Harsh, Gupta Jeetendra Kumar, Shah Kamal, Kumar Shivendra, Jain Divya, Verma Hritik
Department of Pharmacology, Rajiv Academy for Pharmacy, Mathura, U.P. India.
Department of Pharmacology, GLA University, Mathura, India.
Comb Chem High Throughput Screen. 2024 Sep 27. doi: 10.2174/0113862073319757240912055303.
Neurodegenerative diseases present significant public health challenges, driving the search for innovative therapeutic strategies. This review explores the neuroprotective potential of furan-containing compounds, which are derived from various natural and synthetic sources. These compounds are observed for their diverse pharmacological activities, including antioxidant and anti-inflammatory properties. By scavenging free radicals and mitigating oxidative stress, they address a key aspect of neurodegeneration. Additionally, furan derivatives modulate inflammatory pathways, potentially reducing neuroinflammation, a critical factor in the progression of these disorders. The review also highlights the impact of these compounds on neuronal survival and regeneration, suggesting their role in promoting neurogenesis and enhancing neuronal plasticity. Their interactions with neurotransmitter systems further support their neuroprotective effects, particularly in maintaining synaptic function and neurotransmission. The potential applications of furan-containing compounds are discussed concerning specific neurodegenerative diseases, such as Alzheimer's and Parkinson's. Insights from preclinical studies and in vitro experiments underscore their therapeutic promise across various experimental models. While still in the early stages of research, the evidence suggests that furan-containing compounds could be valuable in developing effective interventions for neurodegenerative diseases. This review emphasizes the need for further investigation into these compounds to realize their potential as neuroprotective agents fully.
神经退行性疾病给公共卫生带来了重大挑战,促使人们寻找创新的治疗策略。本综述探讨了含呋喃化合物的神经保护潜力,这些化合物来源于各种天然和合成来源。观察到这些化合物具有多种药理活性,包括抗氧化和抗炎特性。通过清除自由基和减轻氧化应激,它们解决了神经退行性变的一个关键方面。此外,呋喃衍生物调节炎症途径,有可能减少神经炎症,而神经炎症是这些疾病进展中的一个关键因素。该综述还强调了这些化合物对神经元存活和再生的影响,表明它们在促进神经发生和增强神经元可塑性方面的作用。它们与神经递质系统的相互作用进一步支持了它们的神经保护作用,特别是在维持突触功能和神经传递方面。讨论了含呋喃化合物在特定神经退行性疾病(如阿尔茨海默病和帕金森病)中的潜在应用。临床前研究和体外实验的见解强调了它们在各种实验模型中的治疗前景。虽然仍处于研究的早期阶段,但证据表明含呋喃化合物在开发针对神经退行性疾病的有效干预措施方面可能具有价值。本综述强调需要对这些化合物进行进一步研究,以充分实现它们作为神经保护剂的潜力。