American Society of Hirudotherapy

Application of invertebrate-derived DNA barcoding (iDNA) in blood sucking leeches from West Sumatra

iDNA methodology study published in Ecology and Evolution (2025)

Last Updated: June 18, 2026Reviewed by: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Research reportGenomics & ProteomicsIrawan AD et al. · Ecology and evolution, 2025

Abstract

Indonesia is one of the world's most biodiversity-rich countries, including a wide variety of vertebrate and plant species. However, assessing biodiversity in tropical rainforests remains challenging itself. The use of conventional tools has commonly been employed for monitoring and research purposes. Invertebrate-derived DNA (iDNA), a subdiscipline of environmental DNA (eDNA), has emerged as a noninvasive tool that complements traditional methods for biodiversity assessment. It enables the detection of vertebrate species and the monitoring of their populations through molecular approaches. Utilizing abundant haematophagous leeches provides a promising approach to sample a broader range of host species within an area, as these leeches retain high-quality host DNA in their guts for extended periods. Using Sanger sequencing with five primer sets (16Scp, 16Sed, 12S, ND2, and RepCOI) designed to target broad taxonomic groups, 272 Haemadipsa spp. samples were successfully amplified, resulting in the identification of 17 unique vertebrate hosts, including mammals, amphibians, and reptiles. Within our 16Sed results, we noted that the primer sets could capture a broader range of taxa than originally targeted, encompassing both mammals and reptiles, thereby enhancing species richness detection. Notably, we present evidence of the first iDNA-based detection of the rare blue-eyed litter frog, Leptobrachium waysepuntiense, from western Sumatra. Therefore, this study suggests that the use of haematophagous leeches represents a promising approach for biodiversity monitoring in Indonesia. This method offers a complementary strategy that can be integrated with existing practices to strengthen conservation efforts.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal Article

Summary

Uses blood meals in West Sumatran leeches as invertebrate-derived DNA (iDNA) to identify host species, including discovery of cryptic frog species.

Why This Matters for Hirudotherapy

This study explored the use of invertebrate-derived DNA (iDNA) from haematophagous leeches (Haemadipsa spp.) as a noninvasive tool for monitoring vertebrate biodiversity in Indonesia. By analyzing host DNA retained in leech guts using Sanger sequencing, 272 leech samples yielded identification of 17 unique vertebrate hosts, including a rare frog species detected in western Sumatra. The relevance to ASH is indirect: the study focuses on conservation and biodiversity monitoring rather than the leech secretome, anticoagulants, or clinical hirudotherapy. It illustrates an ecological application of sanguivorous leeches but does not investigate therapeutic or pharmacological properties.

Citation

Application of invertebrate-derived DNA barcoding (iDNA) in blood sucking leeches from West Sumatra.

Irawan AD et al. · Ecology and evolution, 2025

Added to ASH library: May 27, 2026 · Site last updated: June 18, 2026

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