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        <full_title>Farm Animal Health and Nutrition</full_title>
        <abbrev_title> Farm Anim. Health Nutr.</abbrev_title>
        <issn media_type="electronic">2980-7905</issn>
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        <publication_date media_type="online">
          <month>08</month>
          <day>28</day>
          <year>2023</year>
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        <journal_volume>
          <volume>2</volume>
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        <issue>3</issue>
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          <title>Effects of Nigella Sativa Seed on Rumen Parameters, Digestibility, and Nitrogen Balance of Nubian Goat Fed Aflatoxin Contaminated Diet </title>
        </titles>
        <contributors>
          <person_name contributor_role="author" sequence="first" language="en">
            <given_name>Mahmoud O. A.</given_name>
            <surname>Elfaki</surname>
          </person_name>
          <person_name contributor_role="author" sequence="additional" language="en">
            <given_name>Nawal M.</given_name>
            <surname>Elkhair</surname>
          </person_name>
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          <jats:p>Introduction: Animal health and productivity can be affected by Aflatoxin in feeds, which leads to reduced growth, decrease feed efficiency and potential contamination of animal-derived products. The current study investigated the influences of supplementing Nigella sativa (NS) seeds to an Aflatoxin-contaminated diet on rumen parameters, digestibility, and nitrogen balance of male Nubian goats.
Materials and methods: A total number of 20 healthy male Nubian goat kids aged 8-9 months and an average weight of 11 ± 0.5 kg were randomly assigned to 5 equal groups. The control group (T1) received a basal diet. The second treatment group (T2) received the same diet contaminated with 150 ppb Aflatoxin and other treatments received an aflatoxin-contaminated diet supplemented with different levels of crushed NS seeds including 2% (T3), 4% (T4), and 6% (T5) of the total dry matter. Through using naturally infected groundnut cake, Aflatoxin was mixed with other ingredients of ration in different proportions to formulate treated diets. High-performance liquid chromatography was used to determine Aflatoxin concentration. Rumen liquor samples were collected after 40 days feeding period to evaluate rumen pH, volatile fatty acids (VFAs), ammonia nitrogen (NH3-N), rumen electrolytes, and protozoa count.
Results:  Rumen pH, ammonia nitrogen, ruminal sodium, and potassium were not significantly affected by the treatment groups. Rumen volatile fatty acids, protozoa count, nutrient digestibility, and nitrogen retention were significantly reduced by an Aflatoxin-contaminated diet (T2) compared to other groups. Supplementation of NS seeds to an Aflatoxin-contaminated diet caused a significant increase in VFAs, decreased protozoa count, and improved digestibility and nitrogen retention in all treated groups compared to T2 and T1 groups.
Conclusion: Supplementing NS seeds to an Aflatoxin-contaminated diet positively affected rumen ecology and improved digestibility and nitrogen retention. The study recommended supplementing 6% of NS seeds to goat diets can reduce the negative effects of Aflatoxin in the diet. </jats:p>
        </jats:abstract>
        <publication_date media_type="online">
          <month>08</month>
          <day>29</day>
          <year>2023</year>
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        <pages>
          <first_page>43</first_page>
          <last_page>50</last_page>
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        <citation_list>
          <citation key="1189">
            <unstructured_citation>Aycicek H, Aksoy A, and Saygi S. Determination of aflatoxin levels in some dairy and food products which consumed in Ankara, Turkey. Food Control. 2005; 16(3): 263-266. DOI: 10.1016/j.foodcont.2004.03.004</unstructured_citation>
          </citation>
          <citation key="1190">
            <unstructured_citation>Paterson RRM. Aflatoxins contamination in chilli samples from Pakistan. Food Control. 2007; 18(7): 817-820. DOI: h10.1016/j.foodcont.2006.04.005</unstructured_citation>
          </citation>
          <citation key="1191">
            <unstructured_citation>Massey TE, Stewart RK, Daniels JM, and Liu L. Biochemical and molecular aspects of mammalian susceptibility to aflatoxin B1 carcinogenicity. Proc Soc Exp Biol Med. 1995; 208(3): 213-227. DOI: 10.3181/00379727-208-43852A</unstructured_citation>
          </citation>
          <citation key="1192">
            <unstructured_citation>Prescott LM, Harley JP, and Klein DA. Clinical microbiology. Microbiology 6th edition, published by McGraw-Hill Science 725; 2005.</unstructured_citation>
          </citation>
          <citation key="1193">
            <unstructured_citation>Yang, C, Song G, and Lim W. Effects of mycotoxin-contaminated feed on farm animals. J Hazard Mater. 2020; 389: 122087. DOI: 10.1016/j.jhazmat.2020.122087</unstructured_citation>
          </citation>
          <citation key="1194">
            <unstructured_citation>Bakhiet AES, and Ahmed Musa AA. Survey and determination of Aflatoxin levels in stored peanut in Sudan. Jordan J Biol Sci. 2011; 4(1): 13-20. Available at: http://www.jjbs.hu.edu.jo/ files/v4n1/Paper 2 modified.pdf</unstructured_citation>
          </citation>
          <citation key="1195">
            <unstructured_citation>Udomkun P, Wiredu AN, Nagle M, Müller J, Vanlauwe B, and Bandyopadhyay R. Innovative technologies to manage aflatoxins in foods and feeds and the profitability of application – A review. Food Control. 2017; 76: 127-138. DOI: 10.1016/j.foodcont.2017.01.008</unstructured_citation>
          </citation>
          <citation key="1196">
            <unstructured_citation>Liu JB, Yan HL, Cao SC, Hu YD, and Zhang HF. Effects of absorbents on growth performance, blood profiles, and liver gene expression in broilers fed diets naturally contaminated with aflatoxin. Asian-Australas J Anim Sci. 2020; 33(2): 294-304. DOI: 10.5713/ajas.18.0870</unstructured_citation>
          </citation>
          <citation key="1197">
            <unstructured_citation>Farouk, A, Abdel-Razek, AG, Gromadzka, K, and Badr AN. Prevention of Aflatoxin occurrence using nuts-edible coating of ginger oil nanoemulsions and investigate the molecular docking strategy. Plants. 2022; 11(17): 2228. DOI: 10.3390/plants11172228</unstructured_citation>
          </citation>
          <citation key="1198">
            <unstructured_citation>Khan, A, Rehman, M, editors. Black seeds (Nigella sativa) pharmacological and therapeutic applications. Elsevier; 2021. DOI: 10.1016/C2020-0-01733-0</unstructured_citation>
          </citation>
          <citation key="1199">
            <unstructured_citation>Al-Ghamdi MS. The anti-inflammatory, analgesic and antipyretic activity of Nigella sativa. J Ethnopharmacol. 2001; 76(1): 45-48. DOI: 10.1016/S0378-8741(01)00216-1</unstructured_citation>
          </citation>
          <citation key="1200">
            <unstructured_citation>Morsi NM. Antimicrobial effect of crude extracts of Nigella sativa on multiple antibiotics-resistant bacteria. Acta Microbiol Pol. 2000; 49(1): 63-74. PMID: 10997492</unstructured_citation>
          </citation>
          <citation key="1201">
            <unstructured_citation>Khosravi AR, Shokri H, and Minooeianhaghighi M. Inhibition of aflatoxin production and growth of Aspergillus parasiticus by Cuminum cyminum, Ziziphora clinopodioides, and Nigella sativa essential oils. Foodborne Pathog Dis. 2011; 8(12): 1275-1280. DOI: 10.1089/fpd.2011.0929</unstructured_citation>
          </citation>
          <citation key="1202">
            <unstructured_citation>Khattab HM, El Basiony AZ, Hamdy SM, and Marwan AA. Immune response and productive performance of dairy buffaloes and their offspring supplemented with black seed oil. Iran J Appl Anim Sci. 2011; 1(4): 227-234. Available at: https://ijas.rasht.iau.ir/article_514097.html</unstructured_citation>
          </citation>
          <citation key="1203">
            <unstructured_citation>Jamroz D, and Kamel C. Plant extracts enhance broiler performance. In non-ruminant nutrition: Antimicrobial agents and plant extracts on immunity, health and performance. J Anim Sci. 2002; 80(1): 41-46.</unstructured_citation>
          </citation>
          <citation key="1204">
            <unstructured_citation>Papich MG. Saunders handbook of veterinary drugs: Small and large animal. 4th ed. Elsevier Health Sciences; 2016. Available at: https://www.sciencedirect.com/book/9780323244855/saunders-handbook-of-veterinary-drugs#book-info</unstructured_citation>
          </citation>
          <citation key="1205">
            <unstructured_citation>Morgan RV. Handbook of small animal practice. 5th ed. Saunders: Elsevier; 2008. DOI: 10.1016/B978-1-4160-3949-5.X5001-8</unstructured_citation>
          </citation>
          <citation key="1206">
            <unstructured_citation>Sanyal PK. Effect of single and divided dose administration on thepharmacokinetics of albendazole in sheep and goat. Vet J. 1998; 155(3): 311-316. DOI: 10.1016/S1090-0233(05)80028-0</unstructured_citation>
          </citation>
          <citation key="1207">
            <unstructured_citation>Sobolev VS. Simple, rapid, and inexpensive cleanup method for quantitation of aflatoxins in important agricultural products by HPLC. J Agric Food Chem. 2007; 55(6): 2136-2141. DOI: 10.1021/jf063669j</unstructured_citation>
          </citation>
          <citation key="1208">
            <unstructured_citation>National research council (NRC). Nutrient requirement of poultry. 7th ed. Washington, DC, USA: Nutritional Academy Of Science; 1994.</unstructured_citation>
          </citation>
          <citation key="1209">
            <unstructured_citation>Association of official analytical chemist (AOAC). Official methods of analysis. 12th ed. Washington, DC: 1980.</unstructured_citation>
          </citation>
          <citation key="1210">
            <unstructured_citation>Ministry of agriculture, fisheries, and food (MAFF). Energy allowance and feeding system for ruminants. Technical bulletin . London: Her majesty’s stationary office; 1975.</unstructured_citation>
          </citation>
          <citation key="1211">
            <unstructured_citation>Abdulrazak SA, and Fujihara T. Animal nutrition. A laboratory manual. Kashiwangi printing company matsue-shim Japan; 1999.</unstructured_citation>
          </citation>
          <citation key="1212">
            <unstructured_citation>Puga DC, Galina HM, Peréz-Gil RF, Sangines GL, Aguilera BA, Haenlein GFW et al. Effect of a controlled-release urea supplementation on feed intake, digestibility, nitrogen balance and ruminal kinetics of sheep fed low quality tropical forage. Small Rumin Res. 2001; 41(1): 9-18. DOI: 10.1016/s0921-4488(01)00171-7</unstructured_citation>
          </citation>
          <citation key="1213">
            <unstructured_citation>Steel RGD, and Torrie JH. Principles and procedures of statistics. 2nd ed. New York: McGraw-Hill Book Co. In Inc; 1980.</unstructured_citation>
          </citation>
          <citation key="1214">
            <unstructured_citation>Verma J, Swain BK, and Johri TS. Effect of various levels of aflatoxin and ochratoxin A and combinations thereof on protein and energy utilisation in broilers. J Sci Food Agric. 2002; 82(12), 1412-1417. DOI: 10.1002/jsfa.1203</unstructured_citation>
          </citation>
          <citation key="1215">
            <unstructured_citation>Verma J, Johri TS, and Swain BK. Effect of aflatoxin, ochratoxin and their combination on protein and energy utilisation in white leghorn laying hens. J Sci Food Agric. 2007; 87(5): 760-764. DOI: 10.1002/jsfa.2655</unstructured_citation>
          </citation>
          <citation key="1216">
            <unstructured_citation>Devegowda G, and Murthy TNK. Mycotoxins: Their effects in poultry and some practical solutions. The mycotoxin blue book. Nottingham University Press; 2005. p. 25-56.</unstructured_citation>
          </citation>
          <citation key="1217">
            <unstructured_citation>Nasir Z, and Grashorn MA. Effects of Echinacea purpurea and Nigella sativa supplementation on broiler performance, carcass and meat quality. J Anim Feed Sci. 2010; 19(1): 93-103. DOI: 10.22358/jafs/66273/2010</unstructured_citation>
          </citation>
          <citation key="1218">
            <unstructured_citation>Atta Elmnan BA. Effect of ammoniation and tree foliage supplementation on Bagasse NDF degradability, digestibility and rumen fermentation. PhD Thesis, University of Khartoum, Sudan; 2006.</unstructured_citation>
          </citation>
        </citation_list>
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