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Molecular Mechanisms of Bipolar Disorder: Progress Made and Future Challenges

机译:躁郁症的分子机制:进展和未来的挑战。

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摘要

Bipolar disorder (BD) is a chronic and progressive psychiatric illness characterized by mood oscillations, with episodes of mania and depression. The impact of BD on patients can be devastating, with up to 15% of patients committing suicide. This disorder is associated with psychiatric and medical comorbidities and patients with a high risk of drug abuse, metabolic and endocrine disorders and vascular disease. Current knowledge of the pathophysiology and molecular mechanisms causing BD is still modest. With no clear biological markers available, early diagnosis is a great challenge to clinicians without previous knowledge of the longitudinal progress of illness. Moreover, despite recommendations from evidence-based guidelines, polypharmacy is still common in clinical treatment of BD, reflecting the gap between research and clinical practice. A major challenge in BD is the development of effective drugs with low toxicity for the patients. In this review article, we focus on the progress made and future challenges we face in determining the pathophysiology and molecular pathways involved in BD, such as circadian and metabolic perturbations, mitochondrial and endoplasmic reticulum (ER) dysfunction, autophagy and glutamatergic neurotransmission; which may lead to the development of new drugs.
机译:躁郁症(BD)是一种慢性和进行性精神病,特征是情绪波动,躁狂和抑郁发作。 BD对患者的影响可能是毁灭性的,多达15%的患者自杀。这种疾病与精神病和医学合并症以及药物滥用,代谢和内分泌失调以及血管疾病的高风险患者有关。导致BD的病理生理学和分子机制的最新知识仍然很少。由于没有明确的生物学标记物,对于没有事先了解疾病纵向进展的临床医生来说,早期诊断是一个巨大的挑战。此外,尽管有循证指南的建议,但多药治疗在BD的临床治疗中仍然很常见,这反映了研究与临床实践之间的差距。 BD的主要挑战是开发对患者低毒性的有效药物。在这篇综述文章中,我们关注于确定BD的病理生理和分子途径方面所取得的进展和未来的挑战,例如昼夜节律和代谢紊乱,线粒体和内质网(ER)功能障碍,自噬和谷氨酸能神经传递;这可能会导致新药的开发。

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