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First molecular identification of the zoonotic parasite Anisakis pegreffii(Nematoda: Anisakidae) in a paraffin-embedded granuloma taken from a case of human intestinal anisakiasis in Italy

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TLDR
This is the first instance of human intestinal anisakiasis diagnosed using PCR of DNA purified from a fixed eosinophilic granuloma embedded in paraffin, reinforcing the pathological significance of the species A. pegreffii to humans.
Abstract
Anisakiasis is an important fish-borne zoonosis provoked by larval stages of nematodes belonging to the genus Anisakis. The detection and identification of human infections is difficult. This is due to: a) the low specificity of the clinical features and symptomatology related to human infections; b) the paucity of diagnostic features of larvae found in granulomatous lesions characteristic of "invasive anisakiasis"; and c) the lack morphological characters diagnostic at the specific level when larvae of Anisakis are detected. Thus, molecular-based diagnostic approaches are warranted. We have developed a PCR method that amplifies the DNA of Anisakis spp. in fixed paraffin-embedded tissues. This method was applied to a granuloma removed from a human case of intestinal anisakiasis in Italy. Specific primers of the mtDNA cox2 gene were used and sequence analysis was performed according to the procedures already established for species of Anisakis. The sequence obtained (629 bp) was compared with those of the other species of Anisakis which have so far been genetically characterized and with sequences obtained from larval stages of Anisakis collected from the Mediterranean fish Engraulis encrasicolus. This enabled the genetic identification of the larva in the human tissue as A. pegreffii. This is the first instance of human intestinal anisakiasis diagnosed using PCR of DNA purified from a fixed eosinophilic granuloma embedded in paraffin. The case of human anisakiasis presented reinforces the pathological significance of the species A. pegreffii to humans. The molecular/genetic methodological approach based on mtDNA cox2 sequence analysis, described here, can allow easy and rapid identification of Anisakis spp. in formalin-fixed and paraffin embedded tissues removed from cases of either gastric or intestinal human anisakiasis.

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Journal ArticleDOI

Molecular identification of Anisakis spp. from fishes collected in the Tyrrhenian Sea (NW Mediterranean).

TL;DR: A molecular approach based on restriction profiles obtained after digestion of the nuclear ribosomal ITS region was used to identify Anisakis spp.
Journal ArticleDOI

Molecular identification and population dynamic of Anisakis pegreffii (Nematoda: Anisakidae Dujardin, 1845) isolated from the European anchovy (Engraulis encrasicolus L.) in the Adriatic Sea.

TL;DR: It is necessary to include anchovy into more firm risk assessment frames in order to develop measures that will support the safe alimentary production and consumption of seafood.
Journal ArticleDOI

Reviewing biodiversity and epidemiological aspects of anisakid nematodes from the North-east Atlantic Ocean.

TL;DR: An inventory of the biodiversity of the anisakid species identified so far from fish and marine mammals of the NE Atlantic Ocean is provided and an update of their zoonotic potential as causative agents of anisAKidosis in humans is discussed.
Journal ArticleDOI

A case report of Anisakis pegreffii (Nematoda, Anisakidae) identified from archival paraffin sections of a Croatian patient.

TL;DR: Screening of archival suspicious sections is feasible in order to study epidemiology of this zoonotic disease poorly recognised in Croatia, evidenced from an archival paraffin- embedded and hematoxylin-eosin stained tissue section.
Journal ArticleDOI

Repertory of eukaryotes (eukaryome) in the human gastrointestinal tract: taxonomy and detection methods.

TL;DR: In this article, a broad survey of the eukaryotic communities in the human gut based on high throughput tools such as next generation sequencing might lead to uncovering the real diversity of these ubiquitous organisms.
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