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改变寄生虫生命周期过程是人类镰状细胞贫血症感染的特征。

Altered parasite life-cycle processes characterize infection in human sickle cell anemia.

机构信息

Department of Blood-Borne Parasites Lindsley F. Kimball Research Institute, New York Blood Center, New York, NY.

Medical Services New York Blood Center, New York, NY.

出版信息

Haematologica. 2019 Nov;104(11):2189-2199. doi: 10.3324/haematol.2018.214304. Epub 2019 Mar 28.

DOI:10.3324/haematol.2018.214304
PMID:30923098
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6821620/
Abstract

is an intra-erythrocytic parasite that causes malaria-like symptoms in infected people. As the erythrocyte provides the parasite with the infra-structure to grow and multiply, any perturbation to the cell should impact parasite viability. Support for this comes from the multitude of studies that have shown that the sickle trait has in fact been selected because of the protection it provides against a related Apicomplexan parasite, , that causes malaria. In this paper, we examine the impact of both the sickle cell anemia and sickle trait red blood cell (RBC) environment on different aspects of the life-cycle, and reveal that multiple aspects of parasite biological processes are altered in the mutant sickle anemia RBC. Such processes include parasite population progression, caused potentially by defective merozoite infectivity and/or defective egress from the sickle cell, resulting in severely lowered parasitemia in these cells with sickle cell anemia. In contrast, the sickle trait RBC provide a supportive environment permitting infection rates comparable to those of wild-type RBC. The elucidation of these naturally occurring RBC resistance mechanisms is needed to shed light on host-parasite interaction, lend evolutionary insights into these related blood-borne parasites, and to provide new insights into the development of therapies against this disease.

摘要

疟原虫是一种红细胞内寄生虫,会导致感染人群出现类似疟疾的症状。由于红细胞为寄生虫的生长和繁殖提供了基础结构,因此任何对细胞的干扰都应该会影响寄生虫的生存能力。这一观点得到了大量研究的支持,这些研究表明,镰状细胞特征实际上是被选择的,因为它提供了对相关顶复门寄生虫的保护,这种寄生虫会导致疟疾。在本文中,我们研究了镰状细胞贫血和镰状特征红细胞(RBC)环境对生命周期不同方面的影响,并揭示了寄生虫生物过程的多个方面在突变的镰状贫血 RBC 中发生了改变。这些过程包括寄生虫群体进展,这可能是由于裂殖子感染性缺陷和/或从镰状细胞中异常逸出引起的,导致这些镰状贫血细胞中的寄生虫血症严重降低。相比之下,镰状特征 RBC 提供了支持性环境,允许感染率与野生型 RBC 相当。阐明这些自然发生的 RBC 抗性机制对于阐明宿主-寄生虫相互作用、为这些相关的血源性寄生虫提供进化见解以及为开发针对这种疾病的治疗方法提供新的见解是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/a4b9d996ee37/1042189.fig4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/f76eb3670f3d/1042189.fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/8f7475d78761/1042189.fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/d6030af97db4/1042189.fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/a4b9d996ee37/1042189.fig4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/f76eb3670f3d/1042189.fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/8f7475d78761/1042189.fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/d6030af97db4/1042189.fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf5/6821620/a4b9d996ee37/1042189.fig4.jpg

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Blood Adv. 2018 Dec 11;2(23):3462-3478. doi: 10.1182/bloodadvances.2018026468.
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Resistance to in sickle cell trait erythrocytes is driven by oxygen-dependent growth inhibition.镰状细胞特征红细胞对 的抗性是由氧依赖性生长抑制驱动的。
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A novel non-invasive method to measure splenic filtration function in humans.
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