Department of Animal Science, Faculty of Agriculture, Universitas Sebelas Maret, Surakarta, Indonesia.
EcoHealth and Climate Resilience Centre of Tropical Hemisphere, Surakarta, Indonesia.
Sci Rep. 2024 Oct 26;14(1):25568. doi: 10.1038/s41598-024-76754-7.
Coccidiosis poses a significant threat to the poultry industry, with synthetic antibiotics and disinfectants being the primary tools for control. This study investigated the potential of Piper betle L essential oil (PBEO) as a natural alternative against Eimeria tenella, one of the most pathogenic Eimeria species affecting poultry. Our findings revealed that PBEO exhibits significant anticoccidial effects through two primary mechanisms: (i) oocysticidal activity by disintegrating oocyst walls and (ii) inhibition of the sporulation process. PBEO demonstrated oocysticidal activities ranging from 8.67 to 95.33% across concentrations from 0.04 to 40%. Notably, at 72 h post-incubation, a 0.04% PBEO concentration significantly reduced the number of sporulated oocysts (P ≤ 0.05) to 71.67%, showing effects comparable to those of formalin. PBEO reduced 50% of oocyst sporulation (IC) in the concentration of 1.31% at 72 h. Gas chromatography-mass spectrometry (GC-MS) identified the primary constituents of PBEO, including eugenol, beta-caryophyllene, and other key compounds, collectively constituting 96% of the oil. This research underscores the potential of PBEO as a natural anticoccidial agent and lays the groundwork for further studies aimed at identifying, isolating, and developing active compounds that may specifically target the sporogony process in coccidian parasites.
球虫病对家禽养殖业构成重大威胁,而合成抗生素和消毒剂是主要的控制手段。本研究调查了菝葜精油(PBEO)作为天然替代品对抗家禽中最具致病性的艾美耳球虫之一——柔嫩艾美耳球虫的潜力。我们的研究结果表明,PBEO 通过两种主要机制表现出显著的抗球虫作用:(i)通过破坏卵囊壁发挥杀卵囊作用,(ii)抑制孢子形成过程。PBEO 在 0.04 至 40%的浓度范围内表现出 8.67%至 95.33%的杀卵囊活性。值得注意的是,在孵育 72 小时后,0.04%的 PBEO 浓度可将孢子化卵囊数量显著减少至 71.67%(P≤0.05),效果可与福尔马林相媲美。PBEO 在 72 小时时,浓度为 1.31%,可减少 50%的卵囊孢子形成(IC)。气相色谱-质谱联用(GC-MS)鉴定了 PBEO 的主要成分,包括丁香酚、β-石竹烯和其他关键化合物,它们共同构成了油的 96%。这项研究强调了 PBEO 作为天然抗球虫剂的潜力,并为进一步研究奠定了基础,旨在鉴定、分离和开发可能专门针对球虫寄生虫孢子形成过程的活性化合物。