Larvicidal Efficacy of Ozone and Ultrasound on Angiostrongylus cantonensis (Rat Lungworm) Third-Stage Larvae.
Argon SteelMatthew S PlatzAlyssa-Jade RiglosBillie Jean GarciaJohn JacobSusan I JarviPublished in: Foods (Basel, Switzerland) (2022)
The parasitic nematode Angiostrongylus cantonensis (rat lungworm) is the leading cause of human eosinophilic meningitis worldwide. Most human infections occur through the accidental consumption of A. cantonensis hidden within produce as infectious third-stage larvae (L3), yet little research has been published addressing possible methods to mitigate this means of transmission. Here, we describe our tests of ozone gas-an oxidizing agent-and ultrasound, both used for disinfection of food and municipal water supplies and in industrial cleaning. We found that exposure to ozone, produced using two different commercially available ozone generators over varying durations of time and concentrations, was capable of achieving 100% larval mortality. In addition, we evaluated the impact of different sound frequencies on A. cantonensis L3 survival using two different commercially available ultrasonic cleaners, and found that 60 s of 40 kHz produced 46% mortality within 2 h. The combined use of ultrasound and ozone gas simultaneously resulted in a minimum of 89% normalized mean percent mortality within 2 h of treatment. Our study suggests that both ozone and ultrasound show high larvicidal efficacy, both independently and together, and thus show promise as methods for reducing the risk of rat lungworm infection via accidental consumption.
Keyphrases
- aedes aegypti
- particulate matter
- hydrogen peroxide
- magnetic resonance imaging
- endothelial cells
- cardiovascular events
- oxidative stress
- wastewater treatment
- risk factors
- induced pluripotent stem cells
- ultrasound guided
- contrast enhanced ultrasound
- air pollution
- high frequency
- type diabetes
- heavy metals
- randomized controlled trial
- room temperature
- cardiovascular disease
- drosophila melanogaster
- big data
- artificial intelligence
- cerebrospinal fluid
- ionic liquid
- replacement therapy