IGF-1/GLP-1信号激活在脑出血中的潜在作用

Ehraz Mehmood Siddiqui, Sidharth Mehan, Sonalika Bhalla, Ambika Shandilya
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摘要

IGF-1和GLP-1受体在所有组织中都是必不可少的,通过上调合成代谢过程来促进防御。它们丰富地分布于整个中枢神经系统,促进神经元的增殖、存活和分化。IGF-1/GLP-1是一种刺激神经元发育、重组、髓鞘形成和存活的生长因子。在原发性和继发性脑损伤中,IGF-1/GLP-1受体受损,导致进一步的神经并发症,如脑组织降解、神经炎症、氧化应激和萎缩。脑出血是一种由中风引起的严重疾病,目前尚无有效的治疗方法。虽然一些临床前研究和药物正在临床试验中作为对症治疗开发,但对于改善强化治疗患者的术后状况有特定的药理学意义。确定潜在的分子过程和认识到恶化的情况可以帮助研究人员制定有效的治疗方案,以预防出血性症状和相关的神经功能障碍。因此,在当前的综述中,我们讨论了由于IGF-1和GLP-1受体下调而加重的疾病表现,这可能导致脑出血或其他神经退行性疾病。我们的综述总结了IGF-1/GLP-1激活剂可能有助于治疗脑出血及其相关的神经变性。
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Potential role of IGF-1/GLP-1 signaling activation in intracerebral hemorrhage

IGF-1 and GLP-1 receptors are essential in all tissues, facilitating defense by upregulating anabolic processes. They are abundantly distributed throughout the central nervous system, promoting neuronal proliferation, survival, and differentiation. IGF-1/GLP-1 is a growth factor that stimulates neurons' development, reorganization, myelination, and survival. In primary and secondary brain injury, the IGF-1/GLP-1 receptors are impaired, resulting in further neuro complications such as cerebral tissue degradation, neuroinflammation, oxidative stress, and atrophy. Intracerebral hemorrhage (ICH) is a severe condition caused by a stroke for which there is currently no effective treatment. While some pre-clinical studies and medications are being developed as symptomatic therapies in clinical trials, there are specific pharmacological implications for improving post-operative conditions in patients with intensive treatment. Identifying the underlying molecular process and recognizing the worsening situation can assist researchers in developing effective therapeutic solutions to prevent post-hemorrhagic symptoms and the associated neural dysfunctions. As a result, in the current review, we have addressed the manifestations of the disease that are aggravated by the downregulation of IGF-1 and GLP-1 receptors, which can lead to ICH or other neurodegenerative disorders. Our review summarizes that IGF-1/GLP-1 activators may be useful for treating ICH and its related neurodegeneration.

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