Effect of Cod Liver Oil in the Commercial Feed Cholesterol, Low Density Lipoprotein (LDL) and High Density Lipoprotein (HDL) on Meat Fresh Water Prawns (Macrobrachium rosenbergii).
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Fresh water prawns are commodities freshwater fish that have economic value, particularly in Indonesia. As the development of tourism and a variety of culinary consumption in Indonesia fresh water prawns and open export opportunities. Fresh water prawns, high cholesterol is 385,03 mg/dl. Excessive cholesterol in the body will lead to a condition called atherosclerosis condition is the forerunner of heart disease and stroke. One of the efforts that must be undertaken to produce low cholesterol aquaculture products are engineered feed, supplementation with fatty acids derived from marine organisms. Through the fatty acid supplementation, it is expected that the levels of triglycerides and low density lipoprotein cholesterol (LDL) will decline so it can raise levels of high density lipoprotein cholesterol (HDL). Analysis of data using statistical test of Variant Analysis of variance (ANOVA) to determine the effect of treatment. If there are differences among the treatments continued with Duncan Multiple Range Test to determine the best treatment. Analysis of Variant (ANOVA) result a significant difference (p<0,05). The main parameters of total cholesterol, high density lipoprotein cholesterol (HDL) and low density lipoprotein (LDL) meat prawns tested at the Laboratory of Physiology, Faculty of Medicine, Universitas Brawijaya. Parameter supporters observed that the maintenance of water quality fresh water prawns. Provision of cod liver oil at a dose of 12% can lower total cholesterol with the lowest levels of the other treatments, with an average of 88.3125 mg/dl. Provision of cod liver oil at a dose of 12% can reduce low density lipoprotein (LDL) levels were lowest from other treatments with an average of 197.72 mg/dl. Provision of cod liver oil at a dose of 12% can increase high density lipoprotein (HDL) levels were highest from other treatments with an average of 128.84 mg/dl.
Keywords : Cholesterol, Low density lipoprotein (LDL), High density lipoprotein (HDL)
Arifah. 2006. Peran Lipoprotein dalam Pengangkutan Lemak Tubuh. Jurnal Kaunia Vol II (2) : 122-134.
Ceccaldi, H. J. 1989. Anatomy and Physiology of Digestive Tract of Crustaceans Decapods Reared in Aquaculture.. Advanced in Tropical Aquaculture. Tahiti. Feb 20- March
Aquacop. Ifremer, Actes de Colloque pp. 243-259.
Direktorat Jenderal Perikanan Budidaya. 2015. Udang Galah Siratu.
www.djpb.kkp.go.id/index. php/export/post/c/287/pdf/. 8
Februari 2016. 2 hal.
Drevon, C. A. 2009. Omega 3 Fatty Acids.
Journal Mollers : 1-35.
Emken, E. A., Richard, O. A., S. M. Dulvan and G. J. Nelson. 1999. Effect of dietary docosahexaenoic acid on desaturation and uptake in vivo ofisotope - labeled oleic linoleic, and linolenic acids
by male subjects. Journal Lipids 34 (8) : 785-791.
Faradilah, F. 2015. Pengaruh Cod Liver Oil pada Pakan Komersial terhadap Kolesterol, low density lipoprotein (LDL), high density lipoprotein (HDL) Daging Udang Vanamei. Skripsi.
Budidaya Perairan. Fakultas Perikanan dan Kelautan.
Universitas Airlangga. 70
hal.
Lembaga Ilmu Pengetahuan Indonesia Pangan dan Kesehatan. 2009. Kolesterol. UPT Balai Informasi Teknologi LIPI Pangan dan Kesehatan. Jakarta. hal. 1-6.
Puspitasari, A. 2015. Penambahan Asam Amino Esensial Lisin pada Pakan terhadap Laju Pertumbuhan, Efisiensi Pakan dan Kelangsungan
Hidup Ikan Bawal Air Tawar (Colossoma macropomum). Skripsi. Program Studi Budidaya Perairan. Universitas Airlangga. Surabaya. 60 hal.
Mahasri, G., A. S. Mubarak., M. A. Alamsjah dan A. Manan. 2012. Buku Ajar Manajemen Kualitas Air. Buku Ajar. Fakultas Perikanan dan Kelautan. Universitas Airlangga. Surabaya. hal. 45.
Mukti, T. A., M. Arief dan W. H. Satyantini. 2012. Dasar-Dasar Akuakultur. Buku Ajar. Fakultas Perikanan dan Kelautan. Universitas Airlangga. Surabaya. hal. 35-108.
Rader, D. J. 2006. Molecular Regulation of HDL Metabolism and Function : Implications for Novel Therapies. Journal of Clinical Investigation Vol 116 (12) : 3090-3100.
Ramprasath, V. R., P. J. H. Jones., D. D. Buckley., L. A. Woollett and J. E.
Heubi. 2012. Decreased Plasma Cholesterol Concentrations After PUFA-Rich Diets are not Due to Reduced Cholesterol Absorbtion/Synthesis. Journal Lipids 47 : 1063-1071.
Sarifin, H., K. T. Wibowo., D. Rohmana dan S. Rosellia. 2014. Untung 100
% dari Budidaya Udang Galah. Agromedia Pustaka. Jakarta. hal. 2- 6.
Stancu, C and A. Sima. 2001. Stains : Mechanism of Action and Effects. Journal Cellular Molecular Medicine Vol 5 (4) : pp 378-387.
Sukarsa, D. R. 2004. Studi Aktivitas Asam Lemak Omega-3 Ikan Laut pada Mencit Sebagai Model Hewan Percobaan. Jurnal Buletin Teknologi Hasil Perikanan VII (1) : 68-79.