Acceptability and Antioxidant Activity Level of Shredded Banana Flower-Chicken Meat
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Background: Data Riskesdas 2013 shows that the average amount portion of vegetable consumption in people aged 10 years or older is only 0.5 portions while the vegetable consumption category is said to be "sufficient" is at least 5 portions per day for 7 days a week. Banana blossom is a vegetable and commonly found in Bangka Belitung Islands Province. Banana blossom processing as a source of vegetables rich in antioxidant compounds and chicken meat as a source of animal protein, needs to be done by processing into shredded banana blossom-chicken meat.
Objectives: To determine the acceptability and antioxidant activity level of shredded banana blossom-chicken meat.
Methods:This research is true experimental. Shredded banana blossom-chicken meat, made using 3 treatment, banana blossom 75%:chicken meat 25% (F1), banana blossom 50%: chicken meat 50% (F2), and banana blossom 25%:chicken meat 75% (F3). Furthermore, the acceptance of taste, colour, aroma, texture, overall, and antioxidant activity level of shredded banana blossom-chicken meat.
Results: There was a significant difference in the acceptance of the colours of shredded F1, F2 and F3 (p = 0,00), while aroma, taste, texture and overall of the shredded F1, F2 and F3 were not significant (p> 0.05). Shredded F3 (banana blossom 25%: chicken meat 75%) is most preferred based on the parameters of colour, aroma, taste, texture and overall, and has the highest antioxidant activity value are 53.74%.
Conclusions: Shredded banana blossom-chicken meat has a good acceptability and has a high antioxidant activity level.[AN1]
Badan Penelitian dan Pengembangan Kesehatan. Laporan Hasil Riset Kesehatan Dasar (Riskesdas) Indonesia tahun 2013. Riset Kesehatan Dasar 2013 (Kemenkes, 2013).
Mary Ann S. Van Duyn, E. P. Overview of the health benefits of fruit and vegetable concumption for the dietetics professional: Selected literature. Journal of the American Dietetic Association vol. 100 1025–1030 (2000).
Schroder, K. E. E. Effects of fruit consumption on body mass index and weight loss in a sample of overweight and obese dieters enrolled in a weight-loss intervention trial. Nutrition 26, 727–734 (2010).
Bazzano, L. A., Serdula, M. K. & Liu, S. Dietary intake of fruits and vegetables and risk of cardiovascular disease. Curr. Atheroscler. Rep. 5, 492–499 (2003).
Wise, J. A., Morin, R. J., Sanderson, R. & Blum, K. Changes in plasma carotenoid, alpha-tocopherol, and lipid peroxide levels in response to supplementation with concentrated fruit and vegetable extracts: a pilot study. Top. Catal. 57, 445–461 (1996).
Bhaskar, J. J., Salimath, P. V. & Nandini, C. D. Stimulation of glucose uptake by Musa sp. (cv. elakki bale) flower and pseudostem extracts in Ehrlich ascites tumor cells. J. Sci. Food Agric. 91, 1482–1487 (2011).
Velioglu, Y. S., Mazza, G., Gao, L. & Oomah, B. D. Antioxidant Activity and Total Phenolics in Selected Fruits, Vegetables, and Grain Products. J. Agric. Food Chem. 46, 4113–4117 (1998).
China, R. et al. In vitroAntioxidant Activity of Different Cultivars of Banana Flower (Musa paradicicusL.) Extracts Available in India. J. Food Sci. 76, 1292–1299 (2011).
Krishnan, A. & Sinija, V. R. Proximate Composition and Antioxidant Activity of Banana Blossom of Two Cultivars in India. Int. J. Agric. Food Sci. Technol. 7, 13–22 (2016).
Indonesia, K. K. R. Tabel Komposisi Pangan Indoesia. http://www.panganku.org/id-ID/beranda (2017).
Sugiyono, Tien R. Muchtadi, F. A. Ilmu Pengetahuan Bahan Pangan. (Penerbit Alfabeta, 2015).
Dwi Setyaningsih, Anton Apriyantono, M. P. S. Analisis Sensori untuk Industri Pangan dan Agro. (IPB Press, 2010).
Molyneux, P. The Use of the Stable Free Radical Diphenylpicryl-hydrazyl (DPPH) for Estimating Antioxidant Activity. Songklanakarin J. Sci. Technol. 26, 211–219 (2004).
Nurhasanah, B. N. & S. Sifat Fisik Pangan. (Widya Padjadjaran, 2010).
Khoo, H. E., Azlan, A., Tang, S. T. & Lim, S. M. Anthocyanidins and anthocyanins: Colored pigments as food, pharmaceutical ingredients, and the potential health benefits. Food Nutr. Res. 61, 0–21 (2017).
Nayak, P. K., Dash, U., Rayaguru, K. & Krishnan, K. R. Physio-Chemical Changes During Repeated Frying of Cooked Oil: A Review. J. Food Biochem. 40, 371–390 (2016).
Chen, B. H. & Chen, Y. C. Formation of polycyclic aromatic hydrocarbons in the smoke from heated model lipids and food lipids. J. Agric. Food Chem. 49, 5238–5243 (2001).
Erliza hambali, Ani Suryani, E. H. Membuat aneka abon. (Penerbit Swadaya, 2005).
Ross, C. F., Hoye, C. & Fernandez-Plotka, V. C. Influence of Heating on the Polyphenolic Content and Antioxidant Activity of Grape Seed Flour. J. Food Sci. 76, 884–890 (2011).
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