Nove Hidajati
Division of Basic Veterinary Medicine, Faculty of Veterinary Medicine, Universitas Airlangga, Surabaya, Indonesia

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Effect of green tea (Camellia sinensis L.) extract on the quality of Gaok rooster spermatozoa stored in a fructose-egg yolk-milk diluent at room temperature Raffael Darrel Juliano; Nove Hidajati; Sri Hidanah; Tatik Hernawati; Tita Damayanti Lestari; Pudji Srianto
Ovozoa: Journal of Animal Reproduction Vol. 15 No. 1 (2026): Ovozoa: Journal of Animal Reproduction
Publisher : Universitas Airlangga

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20473/ovz.v15i1.2026.44-55

Abstract

This study evaluated the effect of a fructose-egg yolk-milk diluent supplemented with different concentration of green tea leaf extract (Camellia sinensis L.) on the quality of rooster semen stored at room temperature (25 °C). Semen was collected from five healthy Gaok roosters (1.5-2 years old), pooled and allocated into four treatment groups: T0 (diluent only, control), T1 (diluent + 0.005 mg green tea extract/10 mL), T2 (diluent + 0.010 mg/10 mL), and T3 (diluent + 0.015 mg/10 mL). Semen quality was evaluated over a 6-hour storage period, focusing on progressive motility, viability, plasma membrane integrity (assessed using the hypoosmotic swelling test), and morphological abnormalities. The addition of green tea extract significantly improved progressive motility, sperm viability, and membrane integrity compared to the control throughout the storage period (p <0.05). These improvements followed a dose–response trend, with the intermediate dose (T2, 0.010 mg/10 mL) showing the most stable and sustained protective effects. No significant differences were observed in spermatozoa morphological abnormalities among treatments (p >0.05), with values remaining low and comparable across all groups. Overall, the results suggest that incorporating green tea leaf extract into a fructose-egg yolk-milk diluent can enhance the short-term preservation of rooster semen by maintaining motility, viability, and membrane functionality at 25 °C, without adversely affecting morphology. The optimal dose identified in this study was 0.010 mg per 10 mL diluent (T2), which provided effective protection for up to 6 hours of storage. In conclusion, green tea extract shows promise as a practical antioxidant additive for improving the short-term handling and transport of rooster semen under field conditions.      
The effect of epigallocatechin 3-gallate (EGCG) on Sertoli and Leydig cells counts and spermatozoa quality of rats (Rattus norvegicus) exposed to monosodium glutamate Sitti Az-Zahra Indira; A Ashiila Tsabita; Suherni susilowati; Sri Pantja Madyawati; Ira Sari Yudaniayanti; kusnoto kusnoto; Djoko Legowo; Nove Hidajati; Kadek Rachmawati
Ovozoa: Journal of Animal Reproduction Vol. 15 No. 1 (2026): Ovozoa: Journal of Animal Reproduction
Publisher : Universitas Airlangga

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20473/ovz.v15i1.2026.56-64

Abstract

This study aimed to determine the preventive effect of epigallocatechin 3-gallate (EGCG) on the number of Sertoli and Leydig cells in white rats (Rattus norvegicus) exposed to monosodium glutamate (MSG). This study used 25 male rats which were divided into five groups. The C– group was given only 1% Na-CMC, while the C+ group received 1% Na-CMC and 120 mg/kg BW of MSG. The T1, T2, and T3 groups were administered EGCG at doses of 4, 8, and 16 mg/kg BW, respectively, along with 120 mg/kg BW of MSG. All treatments were administered orally for 28 days. After the treatment period, the rats were sacrificed on day 29. Their testes were collected and processed into histological specimens using hematoxylin eosin (H&E) staining. The results showed that MSG exposure significantly decreased (p <0.05) the number of Sertoli and Leydig cells in the C+ group compared to the C– group. In contrast, the T1, T2, and T3 groups showed increased cell counts following EGCG administration. Epigalocathecin-3-gallate at a dose of 8 mg/kg BW showed the best potential in maintaining spermatozoa motility, viability, and plasma membrane integrity in rats exposed to MSG. EGCG, as an antioxidant, can reduce lipid peroxidation in the spermatozoa plasma membrane, thereby improving spermatozoa viability, motility, and plasma membrane integrity. In conclusion, the administration of EGCG mitigates the harmful effects of MSG on Sertoli and Leydig cell counts in white rats, with an optimal dose of 8 mg/kg BW.