Soreni N, Apter A, Weizman A, Don-Tufeled O, Leschiner S, Karp L, Gavish M
Geha Psychiatric Hospital, Petah Tiqva, Israel.
Biol Psychiatry. 1999 Aug 15;46(4):484-8. doi: 10.1016/s0006-3223(98)00342-4.
Peripheral-type benzodiazepine receptors (PBR) are responsible for mitochondrial cholesterol uptake, the rate limiting step of steroidiogenesis. They have been shown to be increased after acute stress, and decreased during exposure to chronic stressful conditions, and in patients with generalized anxiety disorder and post-traumatic stress disorder. In view of the proven connection between adolescent suicidal behavior and stress, we hypothesized that PBR may be decreased in the suicidal adolescent population.
We measured [3H] PK 11195 binding to platelet membrane in nine adolescent (age 13-20 years) inpatients with a history of at least three suicidal attempts and ten age-matched psychiatric inpatients with no history of suicide attempts. Suicidality was assessed with the Suicide Risk Scale (SRS), and symptom severity with the Beck Depression Inventory, State-Trait Anxiety Inventory (STAI), Overt Aggression Scale (OAS), and Impulsivity Scale (IS).
Suicide Risk Scale scores were significantly higher in the suicidal group. The suicidal group showed a significant decrease in platelet PBR density (-35%) compared to the controls (p < 0.005).
Our results of PBR depletion in adolescent suicide are in accordance with the findings in patients with generalized anxiety disorder and posttraumatic stress disorder and lend further support to the role of PBR in human response to chronic stress in adolescent suicide.
外周型苯二氮䓬受体(PBR)负责线粒体胆固醇摄取,这是类固醇生成的限速步骤。研究表明,急性应激后PBR会增加,而在慢性应激条件下以及广泛性焦虑症和创伤后应激障碍患者中PBR会减少。鉴于青少年自杀行为与应激之间已证实的联系,我们推测自杀青少年人群中PBR可能会减少。
我们测量了9名有至少三次自杀未遂史的青少年(年龄13 - 20岁)住院患者以及10名年龄匹配、无自杀未遂史的精神科住院患者血小板膜上[3H] PK 11195的结合情况。使用自杀风险量表(SRS)评估自杀倾向,使用贝克抑郁量表、状态 - 特质焦虑量表(STAI)、公开攻击量表(OAS)和冲动量表(IS)评估症状严重程度。
自杀组的自杀风险量表得分显著更高。与对照组相比,自杀组的血小板PBR密度显著降低(-35%)(p < 0.005)。
我们关于青少年自杀中PBR耗竭的研究结果与广泛性焦虑症和创伤后应激障碍患者的研究结果一致,并进一步支持了PBR在青少年自杀中人类对慢性应激反应中的作用。