Back

Assessment of Hyptis suaveolens Extract-Infused Candle Wax as a Mosquito Biorepellent

Tuleasi, E. Q.; Hayford, M. N.; Assantewaa, B.

2026-07-28 plant biology
10.64898/2026.07.22.740051 bioRxiv
Show abstract

Neurotoxic chemicals, including pyrethroids, neonicotinoids, and chlorinated hydrocarbons, have been effective for mosquito control; however, their continued use has resulted in widespread insecticide resistance. This resistance has necessitated increased insecticide application, a phenomenon known as the pesticide treadmill, which poses significant risks to both environmental and human health. Consequently, there is a growing need for sustainable alternatives with minimal adverse impacts. Although plant-based repellents have shown promise, many are formulated as topical products that may be costly, inconvenient, or culturally unacceptable in some communities. Despite the documented mosquito-repellent properties of Hyptis suaveolens, its traditional use relies largely on fresh plant material, which is limited by seasonality and may not provide year-round protection. In addition, evidence on practical, sustained-release delivery systems for plant-derived mosquito repellents remains limited. Candle wax represents a readily available and culturally familiar medium that may facilitate the gradual release of volatile repellent compounds during combustion without requiring direct skin application. This study therefore evaluated the mosquito-repellent efficacy of Hyptis suaveolens extracts infused into candle wax as a simple plant-based delivery system. Leaves of H. suaveolens were collected, air-dried, ground, and extracted using ethanol and water. The crude extracts were incorporated into melted candle wax at a 5:10 concentration, then solidified and burned in a mosquito-infested room for 30 minutes. Results indicated that rooms with infused candles had significantly fewer mosquitoes than the control room. These findings support the mosquito-repellent properties of Hyptis suaveolens and demonstrate that its incorporation into candle wax is a promising plant-based delivery system for mosquito control, warranting further evaluation under field conditions.

Matching journals

The top 2 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.