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March 15, 20260 citationsOpen Access

A reproducible, host-free feeding system for adult Haemaphysalis longicornis

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AGAbdul GhafarBMBahar E. MustafaCGCharles G. Gauci

Key Points

  • To develop a reliable artificial feeding system for the study of Haemaphysalis longicornis ticks without animal hosts.
  • Established an artificial in vitro feeding platform using a thin silicone membrane.
  • Conducted six independent experiments with field-collected adult females from Australia.
  • Measured tick attachment, engorgement weight, egg mass, and egg hatchability.
  • 67% of ticks attached and 74.3% engorged.
  • Mean engorgement weight was 161 mg with a bloodmeal-to-egg conversion efficiency of 40%.
  • Egg hatchability exceeded 92%, supporting reproductive performance.

Abstract

Haemaphysalis longicornis is a parthenogenetic three-host tick that has expanded from East Asia into Australasia and the Americas, where it poses increasing veterinary and public-health concern. Yet, laboratory research has been constrained partly by the absence of a reliable artificial feeding system. Here, we establish and optimise an artificial, host-free in vitro feeding platform for adult H. longicornis, utilising a thin silicone membrane that overcomes the species’ short hypostome and limited mouthpart mobility. Across six independent experiments using field-collected parthenogenetic adult females from Australia, 67 % (35/52) of ticks attached and 74.3 % (26/35) engorged, achieving a mean engorgement weight of 161 mg (range: 44.8–275 mg), a mean egg mass of 67 mg (11.4–137 mg) and mean bloodmeal-to-egg conversion efficiency of 40 % (range: 16.7–59.9 %). All engorged females oviposited and produced viable larvae, with egg hatchability exceeding 92 % (mean ∼98 %) and engorgement weight strongly associating with fecundity (r = 0.82). Feeding was completed within 2–7 days, comparable to, or shorter than, feeding on live hosts; hair extract treatment did not enhance feeding or reproductive performance. This host-free system essentially replicates natural feeding performance under controlled laboratory conditions and supports the complete reproductive cycle of adult H. longicornis without an animal host. It provides a reproducible and ethical platform for acaricide and vaccine discovery and studies of tick physiology and pathogen–vector interactions, establishing a foundation for standardised, scalable and welfare-compliant tick research within a One Health framework.

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Cite This Study

Ghafar et al. (2026) studied this question.

synapsesocial.com/papers/69b606c483145bc643d1d0f6https://doi.org/10.17169/refubium-51593
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Successful completion of the life cycle of Amblyomma variegatum using tick artificial membrane feeding system2025
  2. 2Haem as a maternal factor of ticks2026
  3. 3Comparative Analysis of Bisexual and Parthenogenetic Populations in Haemaphysalis Longicornis2024 · 14 citations
  4. 4The ‘teabag method’: tick feeding protocol and the effects of tick feeding on hematological parameters in the canine host2026
  5. 5Pathogen Surveillance of Haemaphysalis longicornis Ticks in Southern Pennsylvania, USA Using Targeted and Metatranscriptomic Screening2025