Suppr超能文献

推进血吸虫病监测:基于环境DNA(eDNA)方法检测巴西曼氏血吸虫的标准化与应用

Advancing schistosomiasis surveillance: standardization and application of an environmental DNA (eDNA)-based approach for detecting Schistosoma mansoni in Brazil.

作者信息

Gava Sandra Grossi, de Carvalho Isadora Rodrigues, Sato Marcello Otake, Sato Megumi, Fava Natália de Melo Nasser, Parreiras Patrícia Martins, de Oliveira Aureo Almeida, Teixeira Sueleny Silva Ferreira, Lourenço Adelina Junia, Carvalho Omar Dos Santos, Montresor Lângia Colli, Mourão Marina Moraes, Caldeira Roberta Lima

机构信息

Grupo de Pesquisa em Helmintologia e Malacologia Médica, Instituto René Rachou- Fiocruz Minas, Fundação Oswaldo Cruz- Fiocruz, Belo Horizonte, Minas Gerais, Brazil.

Division of Global Environment Parasitology - Faculty of Medical Technology, Niigata University of Pharmacy and Medical and Life Sciences, Niigata, Japan.

出版信息

BMC Infect Dis. 2025 May 15;25(1):703. doi: 10.1186/s12879-025-11069-0.

Abstract

BACKGROUND

Schistosoma sp. transmission is linked to water bodies, poor sanitation, and the presence of intermediate hosts. Nevertheless, parasite detection in snails is hampered by challenges in snail sampling and low infection rates, mainly in moderate and low-endemic areas, as well as requiring specialized personnel and being time-consuming. Thus, there is a need to improve tools to assist schistosomiasis surveillance and an environmental DNA (eDNA) approach may help to overcome these limitations. Here, we standardized and used an eDNA-based approach to monitor Schistosoma mansoni occurrence in two schistosomiasis endemic areas from Minas Gerais, Brazil.

METHODS

The eDNA approach was standardized for local conditions by evaluating the specificity of the qPCR assay in detecting the parasite DNA. Water from snail breeding tanks containing Biomphalaria glabrata, either infected or not with S. mansoni, was used to standardize the eDNA filtration and extraction protocols. Three molecular techniques- Low-Stringency PCR (LS-PCR), Loop-mediated isothermal amplification (LAMP), and quantitative PCR (qPCR)- were applied to investigate samples from snail tanks and two field surveys. Additionally, malacological surveys and measurements of water physicochemical and microbiological parameters were conducted at the same locations to know the species of mollusks present and the ideal environmental conditions to identify hotspots.

RESULTS

The qPCR assay was specifically amplified Schistosoma sp. DNA without amplifying other trematodes presents in Brazil, ensuring accurate detection without cross-amplification. All three molecular assays efficiently detected S. mansoni DNA only from eDNA samples from tanks with infected snails. The eDNA approach, associated with LAMP and qPCR assays, successfully identified S. mansoni DNA at the same collection points where snails releasing cercariae were found and at one additional site, that was missed by traditional methods, underscoring its sensitivity.

CONCLUSIONS

This study illustrates the potential of employing eDNA sampling combined with molecular techniques as an effective strategy for monitoring and identifying potential schistosomiasis transmission foci in endemic areas. This approach aligns with the WHO's roadmap for schistosomiasis elimination by 2030 and has implications for public health interventions and control measures.

摘要

背景

血吸虫的传播与水体、卫生条件差以及中间宿主的存在有关。然而,在蜗牛中检测寄生虫受到蜗牛采样挑战和低感染率的阻碍,主要是在中度和低度流行地区,而且需要专业人员且耗时。因此,需要改进工具以协助血吸虫病监测,而环境DNA(eDNA)方法可能有助于克服这些限制。在此,我们标准化并使用基于eDNA的方法来监测巴西米纳斯吉拉斯州两个血吸虫病流行地区曼氏血吸虫的存在情况。

方法

通过评估qPCR检测法在检测寄生虫DNA方面的特异性,针对当地情况对eDNA方法进行标准化。使用来自含有光滑双脐螺的蜗牛养殖池的水,无论是否感染曼氏血吸虫,来标准化eDNA过滤和提取方案。应用三种分子技术——低严格度PCR(LS-PCR)、环介导等温扩增(LAMP)和定量PCR(qPCR)——来研究来自蜗牛养殖池的样本以及两次现场调查。此外,在相同地点进行了贝类学调查以及水的物理化学和微生物参数测量,以了解存在的软体动物种类以及识别热点的理想环境条件。

结果

qPCR检测法特异性地扩增了血吸虫属DNA,而未扩增巴西存在的其他吸虫,确保了准确检测且无交叉扩增。所有三种分子检测方法仅从感染蜗牛的养殖池的eDNA样本中有效检测到曼氏血吸虫DNA。与LAMP和qPCR检测法相关联的eDNA方法,在发现释放尾蚴的蜗牛的相同采集点以及一个传统方法遗漏的额外地点成功鉴定出曼氏血吸虫DNA,突出了其敏感性。

结论

本研究说明了采用eDNA采样结合分子技术作为监测和识别流行地区潜在血吸虫病传播病灶的有效策略的潜力。这种方法符合世界卫生组织到2030年消除血吸虫病的路线图,并对公共卫生干预措施和控制措施具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f0c/12079815/a85bd99bd606/12879_2025_11069_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验