Barreto-Vieira Debora Ferreira, Miranda Milene Dias, da Silva Marcos Alexandre Nunes, de Almeida Andressa Santos, de Almeida Ana Luisa Teixeira, Bandeira Derick Mendes, Ferreira Vivian Neuza S, Rosa Alice Santos, Girard-Dias Wendell, Archanjo Bráulio Soares, Barth Ortrud Monika
Laboratório de Morfologia e Morfogênese Viral, Instituto Oswaldo Cruz, Fundação Oswaldo Cruz-Fiocruz, Rio de Janeiro, Brazil.
Plataforma de Microscopia Eletrônica Rudolf Barth, Instituto Oswaldo Cruz, Fundação Oswaldo Cruz-Fiocruz, Rio de Janeiro, Brazil.
J Med Virol. 2025 Jan;97(1):e70180. doi: 10.1002/jmv.70180.
An unprecedented global outbreak caused by the monkeypox virus (MPXV) prompted the World Health Organization to declare a public health emergency of international concern on July 23, 2022. Therapeutics and vaccines for MPXV are not widely available, necessitating further studies, particularly in drug repurposing area. To this end, the standardization of in vitro infection systems is essential. The most robust in vitro studies on poxviruses concern the Vaccinia virus, and there are significant gaps in understanding the replicative cycle of MPXV. Herein, we conducted ultrastructural studies using transmission and scanning electron microscopies and 3D reconstruction to describe and elucidate the step-by-step morphogenesis of MPXV. Vero cells, derived from the kidney lineage of Cercopithecus aethiops monkeys, were infected with a strain isolated from an oropharyngeal swab of a patient with suspected Mpox, collected during an observational cohort study conducted between June 12 and August 19, 2022, in Rio de Janeiro, Brazil. Infected Vero cells exhibited several morphological alterations, including cell lysis plaque formation, nuclei with altered chromatin profiles, thickening of the rough endoplasmic reticulum (RER), presence of myelin figures, disorganization of mitochondrial cristae, and the formation of a granular and fibrous matrix (viral factory) surrounded by mitochondria and RER cisternae in a perinuclear space. Viral entry into cells occurred via endocytosis MPXV particles were observed adhering to cytoskeletal filaments, and viral progeny extrusion occurred through exocytosis. This article presents novel data on the morphogenesis of MPXV that have not been previously documented in the literature.
猴痘病毒(MPXV)引发的一场前所未有的全球疫情促使世界卫生组织于2022年7月23日宣布构成国际关注的突发公共卫生事件。MPXV的治疗方法和疫苗尚未广泛可得,因此有必要开展进一步研究,尤其是在药物重新利用领域。为此,体外感染系统的标准化至关重要。关于痘病毒的最可靠的体外研究涉及痘苗病毒,而在了解MPXV的复制周期方面存在重大差距。在此,我们使用透射电子显微镜和扫描电子显微镜以及三维重建进行了超微结构研究,以描述和阐明MPXV一步一步的形态发生过程。在2022年6月12日至8月19日于巴西里约热内卢进行的一项观察性队列研究期间,从一名疑似猴痘患者的口咽拭子中分离出的毒株感染了源自非洲绿猴肾谱系的Vero细胞。被感染的Vero细胞表现出几种形态学改变,包括细胞裂解斑块形成、染色质轮廓改变的细胞核、粗面内质网(RER)增厚、髓鞘样结构的存在、线粒体嵴的紊乱,以及在核周空间中形成由线粒体和RER池包围的颗粒状和纤维状基质(病毒工厂)。MPXV颗粒通过内吞作用进入细胞,观察到病毒颗粒附着于细胞骨架丝,病毒子代通过胞吐作用挤出。本文提供了关于MPXV形态发生的新数据,这些数据此前在文献中未曾有过记载。