Pengaruh Jenis Asam dalam Isolasi Gelatin dari Kulit Ikan Nila (Oreochromis niloticus) terhadap Karakteristik Emulsi

https://doi.org/10.22146/agritech.13025

Suryanti Suryanti(1*), Djagal Wiseso Marseno(2), Retno Indrati(3), Hari Eko Irianto(4)

(1) Pusat Penelitian dan Pengembangan Daya Saing Produk dan Bioteknologi Kelautan dan Perikanan, Jl. K.S. Tubun, Petamburan VI, Jakarta 12060
(2) Departemen Teknologi Pangan dan Hasil Pertanian, Fakultas Teknologi Pertanian, Universitas Gadjah Mada, Jl. Flora No. 1, Bulaksumur, Yogyakarta
(3) Departemen Teknologi Pangan dan Hasil Pertanian, Fakultas Teknologi Pertanian, Universitas Gadjah Mada, Jl. Flora No. 1, Bulaksumur, Yogyakarta
(4) Pusat Penelitian dan Pengembangan Daya Saing Produk dan Bioteknologi Kelautan dan Perikanan, Jl. K.S. Tubun, Petamburan VI, Jakarta 12060
(*) Corresponding Author

Abstract


The isolation of gelatin from nila fish (Oreochromis niloticus) skin with two types of acid (acetic acid 0,10 M and citric acid 0,05 M) was carried out on the characteristics of the emulsion to know the ability of gelatin as an emulsifier. The observation has been made for gelatin including native molecule weight with non-SDS PAGE (polyacrylamide gel electrophoresis), pH, isoelectric point, and amino acid content. The characteristics of emulsion were analysed for the emulsion properties (activity and stability), viscosity, particle size, microstructure, and zeta potential. The concentrations of gelatin used in the formation of the emulsion were 0%, 0.5%, 1.0%, 2.0%, and 3.0% with soybean oil ratio was 3:1 (v/v). The results showed that the molecular weight of native gelatin from acetic acid 0.10 M was > 260 kD, whereas from citric acids 0.05 M was 260 kD. The isoelectric point of both gelatin was at pH 8.5 whereas the pH of gelatin obtained using acetic acid 0.10 M was 5.35 and citric acid 0.05 M was 4.33. The level of lipophilic amino  acid was higher than hydrophilic amino acid with the highest amount was glycine. The emulsifying properties of gelatin obatined from both acids reached the highest value of EAI (Emulsion Activity Index) at a concentration of 0.5% which decreased with the increasing of concentration. In contrary, the value of ESI (Emulsion Stability Index) and viscosity increased with the increasing of concentration. The particle size and microstructure of gelatin emulsion with acetic acid 0.10 M were greater than those with citric acid 0.05 M at the same concentration and showed to increase with the increasing of concentration. Zeta potentials of both gelatin were positive charge at all concentrations which increased with the increasing of concentration.

 

ABSTRAK

Isolasi gelatin dari kulit ikan nila (Oreochromis niloticus) dengan dua jenis asam (asam asetat 0,10 M dan asam sitrat 0,05 M) terhadap karakteristik emulsi telah dilakukan untuk mengetahui kemampuan gelatin sebagai emulsifier. Pengamatan terhadap gelatin meliputi berat molekul native dengan non-SDS PAGE (polyacrylamide gel electrophoresis), titik isoelektrik, pH dan asam amino. Pengamatan terhadap karakteristik emulsi meliputi sifat (aktivitas dan stabilitas), viskositas, ukuran partikel, dan mikrostruktur emulsi serta zeta potensial. Konsentrasi gelatin yang digunakan dalam pembentukan emulsi yaitu 0%, 0,5%, 1,0%, 2,0%, dan 3,0% dengan menambahkan minyak kedele pada rasio 3:1 (v/v). Hasil penelitian menunjukkan berat molekul gelatin native dari asam asetat 0,10 M adalah > 260 kD sedangkan dari asam sitrat 0,05 M sebesar 260 kD. Titik isoelektrik kedua gelatin pada pH = 8,5 sedangkan pH gelatin dari asam asetat 0,10 M sebesar 5,35 dan dari asam sitrat 0,05 M sebesar 4,33. Kandungan asam amino lipofilik dari kedua gelatin lebih banyak daripada asam amino hidrofilik dengan kandungan yang terbesar adalah glisin. Sifat emulsi gelatin dari kedua proses asam tersebut memiliki nilai EAI (Emulsion Activity Index) tertinggi pada konsentrasi 0,5%, yang semakin menurun dengan semakin meningkatnya konsentrasi. Sebaliknya nilai ESI (Emulsion Stability Index) dan viskositas emulsi semakin meningkat dengan semakin meningkatnya konsentrasi. Ukuran partikel droplet dan mikrostruktur emulsi gelatin dari proses asam asetat 0,10 M lebih besar daripada proses asam sitrat 0,05 M pada konsentrasi yang sama dan menunjukkan peningkatan dengan semakin meningkatnya konsentrasi. Zeta potensial kedua gelatin bernilai positif pada semua konsentrasi dan meningkat dengan semakin besarnya konsentrasi.


Keywords


Acid; emulsion; fish; gelatin; skin

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References

Anonim (2012). Waters Acquity UPLC H Class and H Class Bio amino Acid Analysis System Guide. USA.

Anonim (2016). A guide to Polyacrylamide Gel Electrophoresis and Detection. Biorad Laboratories. Life Science Group. California. USA. (www.bio-rad.com/webroot/web/pdf/lsr/literature/Bulletin_6040. [7 Maret 2016].

Ahmad, M. dan Benjakul, S. (2011). Characteristics of gelatin from the skin of unicorn leatherjacket (Aluterus monoceros) as influenced) by acid pretreatment and extraction time. Food Hydrocolloids 25: 381–388.

Badan Standarisasi Nasional (2006). Penentuan kadar protein (SNI 01-2354.4-2006). Jakarta.

Balti, R., Iridi, M., Sila, A., Souissi, N., Nedjar-Arroume, N., Guillochon, D. dan Nasri, M. (2011). Extraction and functional properties of gelatin from the skin of cuttlefish (Sepia officinalis) using smooth hound crude acid protease-aided process. Food Hydrocolloids 25: 943–950.

Belitz, H.D., Grosch, W. dan Scriberle, P. (2009). Food Chemistry. Springer-Verlag Berlin Heidelberg.

Foegeding, E.A. dan Davis, J.P. (2011). Food protein functionality: A comprehensive approach. Food Hydrocolloids 25: 1853–1864.

Gao, Z., Zhao, J., Huang, Y., Yao, X., Zhang, K., Fang, Y., Nishinari, K., Phillips, G., Jiang, F. dan Yang, H. (2011). Edible Pickering emulsion stabilized by proteinfibrils. Part 1: Effects of pH andfibrils concentration. LWT - Food Science and Technology 76: 1–8.

Gelatin Manufacture Institute of America. (2012). GMIA. Gelatin Handbook. http://www.gelatin-gmia.com/images/GMIA_Gelatin_Manual_2012.pdf.[5 Desember 2013].

Hattrem, M.N., Molnes, S., Haug, I.J. dan Draget, K.J. (2015). Interfacial and rheological properties of gelatin based solid emulsions prepared with acid or alkali pretreated gelatins. Food Hydrocolloids 43: 700–707.

Hasenhuetll, G.L. dan Hartel, R.W. (2008). Food Emulsifier and Their Applications. Second Edition. Springer.

Ktari, N., Mourad, I., Rim, N., Imen, L., Hanen, B.A., Barkia, A. dan Moncef, N. (2014). Characteristics and functional properties of gelatin from zebra blenny (Salaria basilisca) skin. LWT - Food Science and Technology 58: 602–608.

Lam, R.S.H., Michael, T. dan Nickerson (2103). Food proteins: A review on their emulsifying properties using a structure–function approach. Food Chemistry 141: 975–984.

Liu, H., Wong, B., Barrow, C.J. dan Adhikari, B. (2014). Relating the variation of secondary structure of gelatin at fish oil–water interface to adsorption kinetics, dynamic interfacial tension and emulsion stability. Food Chemistry 143: 484–491.

Mc. Clement D.J. (2005). Food Emulsions, Principles, Practices, and Techniques. Second Edition. CRC Press. Washington DC.

Niu, L., Zhou, X., Yuan, C., Bai, Y., Yang, F. dan Huang, Y. (2013). Characterization of tilapia (Oreochromis niloticus) skin gelatin extracted with alkaline and different acid pretreatments. Food Hydrocolloids 33: 336–341.

Nagarajana, M., Benjakul, S., Prodpran, T. dan Songlipya, P. (2015). Effects of pHs on properties of bio-nanocomposite based on tilapia skin gelatin and Cloisite Na+. International Journal of Biological Macromolecules 75: 388–397.

Nollet, Leo, M.L. (2004). Handbook of Food Analysis. Second Edition, Revised and Expanded. Amino Acid. Marcel Dekker, Inc,.

Pearce, K.N dan Kinsella, J.E. (1978). Emulsifying properties of proteins: evaluation of a turbidimetric technique. Journal of Agric. Food Chem. 26(3).

Peranginangin, R., Taswir, Suryanti dan Lestari D.A. (2006). Optimalisasi Pemanfaatan Limbah Tulang dan Kulit Ikan. Laporan Teknis. Balai Riset Pengolahan Produk dan Bioteknologi Kelautan dan Perikanan. Jakarta.

Phillip, G.O. dan Williams, P.A. (2009). Handbook of Hydrocolloids. Second edition. CRC Press. Washington. DC.

Pranoto, Y., Marseno, D.W. dan Rahmawati, H. (2011). Characteristics of gelatins extracted from fresh and sun-dried seawater fish skins in Indonesia. International Food Research Journal 18(4): 1335–1341.

Shakila, R.J., Jeevithan, E., Varatharajakumar, A., Jeyasekaran, G. dan Sukumar, D. (2012). Comparison of the properties of multi-composite fish gelatin films with that of mammalian gelatin films. Food Chemistry 135: 2260–2267.

Shyni, K., Hema, G.S., Ninan, G., Mathew, S., Joshy, C.G. dan Lakshmanan, P.T. (2014). Isolation and characterization of gelatin from the skins of skipjack tuna (Katsuwonus pelamis), dog shark (Scoliodon sorrakowah), and rohu (Labeo rohita). Food Hydrocolloids 39: 68–76.

Sinthusamran, S., Benjakul, S. dan Kishimura, H. (2014). Characteristics and gel properties of gelatin from skin of seabass (Latescalcarifer) as influenced by extraction conditions. Food Chemistry 152: 276–284.

Surh, J., Decker, E.A. dan McClement, D.J. (2006). Properties and stability of oil-in-water emulsions stabilized by fish gelatin. Food Hydrocolloids 20: 596–606.

Suryanti, Indrati, R., Irianto. H.E. dan Marseno. D.W. (2016). Comparison study on the extraction of gelatin from nila fish (Oreochromis nilotichus) skin using acetic acid and citric acid. Pakistan Journal of Nutrition 15(8): 777–783.

Vančik, H. (2014). Basic Organic Chemistry for the Life Sciences. Springer Cham Heidelberg New York Dordrecht London.

Ward, A.G. dan Courts, A. (1977). The Science and Technology of Gelatin. Academic Press. London.

Wang, L., Liu, H., Lin, L., Wang, Q., Li, S. dan Li, Q. (2017). Prediction of peanut protein solubility based on the evaluation model established by supervised principal component regression. Food Chemistry 218: 553–560.



DOI: https://doi.org/10.22146/agritech.13025

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