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العنوان
Effect of nano-encapsulated Moringa leaves ethanolic extract on reproductive performance of rabbits =
المؤلف
EL-DESOKY, NAGWA IBRAHIM,
هيئة الاعداد
باحث / NAGWA IBRAHIM EL-DESOKY
مشرف / Zahraa R. Abo-Elezz
مشرف / Nesrein M. Hashem
مشرف / Ahmed M. G. Elkomy
الموضوع
ANIMAL.
تاريخ النشر
2022.
عدد الصفحات
54 p. :
اللغة
الإنجليزية
الدرجة
الدكتوراه
التخصص
العلوم الزراعية والبيولوجية
تاريخ الإجازة
6/7/2022
مكان الإجازة
اتحاد مكتبات الجامعات المصرية - ANIMAL
الفهرس
Only 14 pages are availabe for public view

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from 63

Abstract

The effects of free and nano-encapsulated ME supplementations on the metabolism, im-munity, milk production and composition, and reproductive performance of rabbit does during premating, mating, pregnancy, and lactation were investigated. Multiparous rabbit does (n = 26 per group) received 50 mg of free ME (FME) daily, 25 mg of nano-encapsulated ME (HNME), or 10 mg of nano-encapsulated ME (LNME) per kilogram of body weight or were not supplemented (C) dur-ing a whole reproductive cycle.
The ME contained 30 fatty acids with 54.27% total unsaturated fatty acids (USFAs). The fatty acid encapsulation efficiency of alginate nanoparticles was 70.46%. Com-pared with the C group, rabbits in all ME treatments had significantly increased body weight, feed intake, and glucose concentration and significantly decreased non-esterified free fatty acids and β-hydroxybutyrate concentrations. Rabbits
supplemented with ME also had significantly increased white blood cell counts, phagocytic activity,
lysozyme activity, and immunoglobulin G and de-creased interleukin-1β concentrations. Moreover, ME
supplementation significantly increased the concentrations of colostrum immunoglobulins, milk yield and
energy content, and milk USFAs (omega-3 and 6). Rabbit does in the ME treatments had significantly higher conception and parturition rates and better litter characteristics than the C rabbit does. These results demonstrate the positive role of ME fatty acids on the health status and productive and reproductive
performance of rabbit does at different physiological stages. Compared with the FME treatment, these parameters were further improved in rabbits that received nano-encapsulated ME at lower doses, illustrating how nano-encapsulation technology improves the bioavailability of ME.