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纳米溴隐亭对蛋鸡产蛋性能及催乳素表达的影响

Impact of Nano-Bromocriptine on Egg Production Performance and Prolactin Expression in Layers.

作者信息

Dawod Ahmed, Osman Noha, Heikal Hanim S, Ali Korany A, Kandil Omaima M, Shehata Awad A, Hafez Hafez M, Mahboub Hamada

机构信息

Department of Husbandry and Animal Wealth Development, Faculty of Veterinary Medicine, University of Sadat City, Menofia 32897, Egypt.

Center of Excellence for Advanced Science, Advanced Materials and Nanotechnology Group, Applied Organic Chemistry Department, National Research Centre, Dokki, Giza 12622, Egypt.

出版信息

Animals (Basel). 2021 Sep 29;11(10):2842. doi: 10.3390/ani11102842.

Abstract

The current study aimed to investigate the potential use of nano-bromocriptine in improving the laying performance of late laying hens by modulating the prolactin gene expression. A total of 150 NOVOgen brown laying hens aged 70 weeks were randomly allocated into three groups of 50 birds each. The first group was kept as a control, while the second and the third groups were treated with bromocriptine and nano-bromocriptine, respectively, at a dose of 100 µg/kg body weight per week. The pause days, egg production, feed per dozen egg, and Haugh unit were determined on a monthly basis. Also, the relative prolactin gene expression in the pituitary gland was quantified using qPCR and the number of the ovarian follicles was determined after slaughtering at the 84th week of age. It was found that nano-bromocriptine and bromocriptine improved egg laying performance with minimal pause days, reduced feed per dozen egg, and depressed the relative prolactin gene expression; however, nano-bromocriptine treatment was significantly effective compared to bromocriptine. In conclusion, nano-bromocriptine might be beneficial for elongating sequences and reducing pauses.

摘要

本研究旨在探讨纳米溴隐亭通过调节催乳素基因表达来改善后期产蛋母鸡产蛋性能的潜在用途。将150只70周龄的诺沃根褐壳蛋鸡随机分为三组,每组50只。第一组作为对照组,第二组和第三组分别以每周100μg/kg体重的剂量用溴隐亭和纳米溴隐亭处理。每月测定休产天数、产蛋量、每打鸡蛋的耗料量和哈夫单位。此外,使用qPCR定量垂体中催乳素基因的相对表达,并在84周龄屠宰后测定卵巢卵泡数量。结果发现,纳米溴隐亭和溴隐亭均能改善产蛋性能,减少休产天数,降低每打鸡蛋的耗料量,并抑制催乳素基因的相对表达;然而,与溴隐亭相比,纳米溴隐亭处理的效果显著。总之,纳米溴隐亭可能有助于延长产蛋序列并减少休产。

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