Lo Vasco Vincenza Rita, Leopizzi M, Della Rocca C, Fais P, Montisci M, Cecchetto G
Sense Organs Department, Policlinico Umberto I, Faculty of Medicine and Dentistry, Sapienza University of Rome, viale del Policlinico 155, 00185 Rome, Italy.
Department of Medico-Surgical Sciences and Biotechnology, Sapienza University- Polo Pontino, Rome, Italy.
J Affect Disord. 2015 Mar 15;174:324-8. doi: 10.1016/j.jad.2014.12.006. Epub 2014 Dec 11.
A number of studies suggested that suicide may be associated with specific neurobiological abnormalities. Neurobiology studies focused upon abnormalities of signalling mechanisms with special regard to the serotonin system and the related Phosphoinositide (PI) signalling system. Previous data suggested the involvement of the PI-specific phospholipase C (PLC) family in neuropsychiatric disorders. By using PCR and morphological microscopy observation we examined the whole panel of expression of PLC isoforms in the brains of 28 individuals who committed suicide and in normal controls in order to evaluate the involvement of specific PLC isoforms. The overall PLC expression was reduced and a complex reorganization of the isoforms was observed. The knowledge of the complex network of neurobiological molecules and interconnected signal transduction pathways in the brain of suicide victims might be helpful to understand the natural history and the pathogenesis of the suicidal behavior. That might lead to obtain prognostic suggestions in order to prevent suicide and to new therapeutic agents targeting specific sites in this signalling cascade.
多项研究表明,自杀可能与特定的神经生物学异常有关。神经生物学研究聚焦于信号传导机制的异常,尤其关注血清素系统和相关的磷酸肌醇(PI)信号系统。先前的数据表明,PI特异性磷脂酶C(PLC)家族参与了神经精神疾病。通过聚合酶链反应(PCR)和形态显微镜观察,我们检测了28名自杀者大脑以及正常对照者大脑中PLC同工型的全部表达情况,以评估特定PLC同工型的参与情况。整体PLC表达降低,且观察到同工型的复杂重组。了解自杀受害者大脑中神经生物学分子的复杂网络以及相互连接的信号转导途径,可能有助于理解自杀行为的自然病程和发病机制。这可能会得出预后建议,以预防自杀,并研发针对该信号级联反应中特定位点的新型治疗药物。