Pugliese Nicola, Camarda Antonio, Miglianti Mara, Friuli Marco, Demitri Christian, Siddique Ifra, Santos Marcos Antonio Bezerra, Rhimi Wafa, Circella Elena, Cafarchia Claudia, Otranto Domenico
Department of Veterinary Medicine, University of Bari Aldo Moro, Bari, Italy.
Department of Engineering for Innovation Organization, University of Salento, Lecce, Italy.
BMC Vet Res. 2025 Jul 17;21(1):473. doi: 10.1186/s12917-025-04923-5.
Dermanyssus gallinae poses a significant global threat to poultry production by affecting animal health and welfare. Conventional acaricidal treatments are limited by the emergence of resistant mite populations and by the risk of chemical residues in eggs and meat. In this study, we evaluated an innovative control strategy based on a hydroxyethyl cellulose (HEC)- hydrogel as a delivery matrix for Eucalyptus globulus essential oil (EO) and the entomopathogenic fungus Beauveria bassiana. Mites were collected from naturally infested hen farms and divided by life stage. Bioassays were conducted under controlled laboratory conditions to compare the effects of treatments applied both with and without pre-incubation of the HEC matrix, expressed as lethal times (LT₅₀ and LT₉₀).
The EO treatment alone or in combination with B. bassiana and without pre-incubation achieved an LT₅₀ of 7.4 ± 0.2 days in adult mites, while the B. bassiana-only treatment exhibited a slightly prolonged LT₅₀ of 8.8 ± 0.2 days. Notably, pre-incubation markedly enhanced efficacy (p < 0.001); the combined treatment reduced the LT₅₀ to 4.9 ± 0.2 days and the LT₉₀ to 10.5 ± 0.3 days, underscoring the synergistic action of EO and B. bassiana. Similar patterns were observed in nymphs, which generally exhibited higher lethal times compared to adults, with strong statistical support.
The findings indicate that HEC-based hydrogel enriched with E. globulus EO and/or B. bassiana conidia is efficacious against D. gallinae. The significant reduction in LT₅₀ and LT₉₀ in adult mites highlights the potential of this approach for integrated pest management. This novel formulation, by harnessing the synergistic effects of E. globosus EO and B. bassiana within a stable hydrogel matrix, may provide a tool for controlling D. gallinae in the poultry industry, thus reducing the use of synthetic acaricides. Results need to be validated under field conditions to provide a sustainable strategy for controlling red mite infestations.
鸡皮刺螨通过影响动物健康和福利,对全球家禽生产构成重大威胁。传统的杀螨处理受到螨虫抗性种群出现以及鸡蛋和肉类中化学残留风险的限制。在本研究中,我们评估了一种创新的控制策略,该策略基于羟乙基纤维素(HEC)水凝胶作为蓝桉精油(EO)和昆虫病原真菌球孢白僵菌的递送基质。螨虫从自然感染的母鸡养殖场采集,并按生命阶段进行划分。在受控的实验室条件下进行生物测定,以比较在有无HEC基质预孵育情况下所施用处理的效果,以致死时间(LT₅₀和LT₉₀)表示。
单独的EO处理或与球孢白僵菌联合且无预孵育时,成年螨虫的LT₅₀为7.4±0.2天,而仅球孢白僵菌处理的LT₅₀略延长至8.8±0.2天。值得注意的是,预孵育显著提高了功效(p<0.001);联合处理将LT₅₀降低至4.9±0.2天,LT₉₀降低至10.5±0.3天,突出了EO和球孢白僵菌的协同作用。若虫中观察到类似模式,与成虫相比,若虫的致死时间通常更高,且有强有力的统计支持。
研究结果表明,富含蓝桉EO和/或球孢白僵菌分生孢子的基于HEC的水凝胶对鸡皮刺螨有效。成年螨虫LT₅₀和LT₉₀的显著降低突出了这种方法在综合虫害管理中的潜力。这种新型制剂通过在稳定的水凝胶基质中利用蓝桉EO和球孢白僵菌的协同作用,可为家禽业控制鸡皮刺螨提供一种工具,从而减少合成杀螨剂的使用。结果需要在田间条件下进行验证,以提供控制红螨侵扰的可持续策略。