Amyloid Treatment and Research Program, and Department of Medicine, Medicine, Boston University School of Medicine and Boston Medical Center, Boston, MA 02118, USA.
Blood. 2011 Dec 15;118(25):6610-7. doi: 10.1182/blood-2011-04-351643. Epub 2011 Oct 12.
Systemic AL amyloidosis results from the aggregation of an amyloidogenic immunoglobulin (Ig) light chain (LC) usually produced by a plasma cell clone in the bone marrow. AL is the most rapidly fatal of the systemic amyloidoses, as amyloid fibrils can rapidly accumulate in tissues including the heart, kidneys, autonomic or peripheral nervous systems, gastrointestinal tract, and liver. Chemotherapy is used to eradicate the cellular source of the amyloidogenic precursor. Currently, there are no therapies that target the process of LC aggregation, fibril formation, or organ damage. We developed transgenic mice expressing an amyloidogenic λ6 LC using the cytomegalovirus (CMV) promoter to circumvent the disruption of B cell development by premature expression of recombined LC. The CMV-λ6 transgenic mice develop neurologic dysfunction and Congophilic amyloid deposits in the stomach. Amyloid deposition was inhibited in vivo by the antibiotic doxycycline. In vitro studies demonstrated that doxycycline directly disrupted the formation of recombinant LC fibrils. Furthermore, treatment of ex vivo LC amyloid fibrils with doxycycline reduced the number of intact fibrils and led to the formation of large disordered aggregates. The CMV-λ6 transgenic model replicates the process of AL amyloidosis and is useful for testing the antifibril potential of orally available agents.
系统性 AL 淀粉样变性是由免疫球蛋白 (Ig) 轻链 (LC) 的聚集引起的,该轻链通常由骨髓中的浆细胞克隆产生。AL 是系统性淀粉样变性中最致命的一种,因为淀粉样纤维可以迅速在包括心脏、肾脏、自主或外周神经系统、胃肠道和肝脏在内的组织中积聚。化疗用于根除淀粉样前体的细胞来源。目前,尚无针对 LC 聚集、纤维形成或器官损伤过程的治疗方法。我们使用巨细胞病毒 (CMV) 启动子开发了表达淀粉样蛋白 λ6 LC 的转基因小鼠,以避免通过过早表达重组 LC 破坏 B 细胞发育。CMV-λ6 转基因小鼠表现出神经功能障碍和 Congophilic 胃淀粉样沉积。抗生素强力霉素在体内抑制了淀粉样沉积。体外研究表明,强力霉素直接破坏了重组 LC 纤维的形成。此外,用强力霉素处理体外 LC 淀粉样纤维会减少完整纤维的数量,并导致形成大的无序聚集物。CMV-λ6 转基因模型复制了 AL 淀粉样变性的过程,可用于测试口服可用药物的抗纤维潜力。