DeCicco RePass Maria A, Chen Ying, Lin Yinan, Zhou Wenda, Kaplan David L, Ward Honorine D
Tufts University Sackler School of Graduate Biomedical Sciences, Boston, Massachusetts, USA.
Tufts Medical Center, Boston, Massachusetts, USA.
Infect Immun. 2017 Feb 23;85(3). doi: 10.1128/IAI.00731-16. Print 2017 Mar.
spp. are apicomplexan parasites of global importance that cause human diarrheal disease. culture models that may be used to study this parasite and that have physiological relevance to infection remain suboptimal. Thus, the pathogenesis of cryptosporidiosis remains poorly characterized, and interventions for the disease are limited. In this study, we evaluated the potential of a novel bioengineered three-dimensional (3D) human intestinal tissue model (which we developed previously) to support long-term infection by Infection was assessed by immunofluorescence assays and confocal and scanning electron microscopy and quantified by quantitative reverse transcription-PCR. We found that infected and developed in this tissue model for at least 17 days, the extent of the study time used in the present study. Contents from infected scaffolds could be transferred to fresh scaffolds to establish new infections for at least three rounds. Asexual and sexual stages and the formation of new oocysts were observed during the course of infection. Additionally, we observed ablation, blunting, or distortion of microvilli in infected epithelial cells. Ultimately, a 3D model system capable of supporting continuous infection will be a useful tool for the study of host-parasite interactions, identification of putative drug targets, screening of potential interventions, and propagation of genetically modified parasites.
隐孢子虫属是具有全球重要性的顶复门寄生虫,可导致人类腹泻疾病。可用于研究这种寄生虫且与感染具有生理相关性的培养模型仍不尽人意。因此,隐孢子虫病的发病机制仍未得到充分描述,针对该疾病的干预措施也很有限。在本研究中,我们评估了一种新型生物工程三维(3D)人类肠道组织模型(我们之前开发的)支持长期感染的潜力。通过免疫荧光测定、共聚焦和扫描电子显微镜评估感染情况,并通过定量逆转录PCR进行定量。我们发现,在该组织模型中感染并发育至少17天,这是本研究中使用的研究时间长度。来自感染支架的内容物可转移到新鲜支架上以建立新的感染,至少可进行三轮。在感染过程中观察到无性和有性阶段以及新卵囊的形成。此外,我们观察到感染上皮细胞中微绒毛的消融、变钝或扭曲。最终,能够支持连续感染的3D模型系统将成为研究宿主 - 寄生虫相互作用、鉴定假定药物靶点、筛选潜在干预措施以及繁殖转基因寄生虫的有用工具。