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改进粪便样本处理和焦磷酸测序技术,以定量检测 Trichuris trichiura 和 Necator americanus 混合卵中的苯并咪唑类药物耐药等位基因。

Improving stool sample processing and pyrosequencing for quantifying benzimidazole resistance alleles in Trichuris trichiura and Necator americanus pooled eggs.

机构信息

Instituto de Ganadería de Montaña (CSIC-Universidad de León), Grulleros, León, Spain.

Departamento de Sanidad Animal, Facultad de Veterinaria, Universidad de León, Campus de Vegazana, León, Spain.

出版信息

Parasit Vectors. 2021 Sep 25;14(1):490. doi: 10.1186/s13071-021-04941-w.

Abstract

BACKGROUND

There is an urgent need for an extensive evaluation of benzimidazole efficacy in humans. In veterinary science, benzimidazole resistance has been mainly associated with three single-nucleotide polymorphisms (SNPs) in the isotype-1 β-tubulin gene. In this study, we optimized the stool sample processing methodology and resistance allele frequency assessment in Trichuris trichiura and Necator americanus anthelmintic-related SNPs by pyrosequencing, and standardized it for large-scale benzimidazole efficacy screening use.

METHODS

Three different protocols for stool sample processing were compared in 19 T. trichiura-positive samples: fresh stool, egg concentration using metallic sieves with decreasing pore size, and egg concentration followed by flotation with saturated salt solution. Yield of each protocol was assessed by estimating the load of parasite DNA by real-time PCR. Then, we sequenced a DNA fragment of the β-tubulin gene containing the putative benzimidazole resistance SNPs in T. trichiura and N. americanus. Afterwards, resistant and susceptible-type plasmids were produced and mixed at different proportions, simulating different resistance levels. These mixtures were used to compare previously described pyrosequencing assays with processes newly designed by our own group. Once the stool sample processing and the pyrosequencing methodology was defined, the utility of the protocols was assessed by measuring the frequencies of putative resistance SNPs in 15 T. trichiura- and 15 N. americanus-positive stool samples.

RESULTS

The highest DNA load was provided by egg concentration using metallic sieves with decreasing pore size. Sequencing information of the β-tubulin gene in Mozambican specimens was highly similar to the sequences previously reported, for T. trichiura and N. americanus, despite the origin of the sample. When we compared pyrosequencing assays using plasmids constructs, primers designed in this study provided the most accurate SNP frequencies. When pooled egg samples were analysed, none of resistant SNPs were observed in T. trichiura, whereas 17% of the resistant SNPs at codon 198 were found in one N. americanus sample.

CONCLUSIONS

We optimized the sample processing methodology and standardized pyrosequencing in soil-transmitted helminth (STH) pooled eggs. These protocols could be used in STH large-scale screenings or anthelmintic efficacy trials.

摘要

背景

迫切需要对人体中苯并咪唑类药物的疗效进行广泛评估。在兽医科学中,苯并咪唑类药物的耐药性主要与 1 型β-微管蛋白基因中的三个单核苷酸多态性(SNP)有关。在这项研究中,我们通过焦磷酸测序优化了 Trichuris trichiura 和 Necator americanus 驱虫相关 SNP 的粪便样本处理方法和耐药等位基因频率评估,并将其标准化,以便大规模进行苯并咪唑类药物疗效筛选。

方法

在 19 个 T. trichiura 阳性样本中比较了三种不同的粪便样本处理方案:新鲜粪便、使用孔径逐渐减小的金属筛进行卵浓缩,以及卵浓缩后用饱和盐水浮选。通过实时 PCR 估计寄生虫 DNA 负荷来评估每种方案的产量。然后,我们对包含 T. trichiura 和 N. americanus 中假定苯并咪唑类药物耐药性 SNP 的β-微管蛋白基因的 DNA 片段进行测序。随后,制备耐药和敏感型质粒,并以不同比例混合,模拟不同的耐药水平。将这些混合物与我们自己设计的新流程的先前描述的焦磷酸测序检测进行比较。一旦确定了粪便样本处理和焦磷酸测序方法,就通过测量 15 个 T. trichiura 和 15 个 N. americanus 阳性粪便样本中假定耐药 SNP 的频率来评估方案的实用性。

结果

使用孔径逐渐减小的金属筛进行卵浓缩可提供最高的 DNA 负荷。莫桑比克标本的β-微管蛋白基因测序信息与之前报道的 T. trichiura 和 N. americanus 序列高度相似,尽管样本来源不同。当我们比较使用质粒构建物的焦磷酸测序检测时,本研究中设计的引物提供了最准确的 SNP 频率。当分析混合卵样本时,在 T. trichiura 中未观察到任何耐药 SNP,而在一个 N. americanus 样本中发现了 198 位密码子的 17%耐药 SNP。

结论

我们优化了样本处理方法,并对土壤传播性蠕虫(STH)混合卵进行了焦磷酸测序标准化。这些方案可用于 STH 的大规模筛查或驱虫效果试验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a58/8466976/fd04a7ab2f35/13071_2021_4941_Fig1_HTML.jpg

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