Vitaminlerin Elektrospinning Yöntemi Kullanılarak Enkapsüllenmesi

Yazarlar

Merve Dağcı Tekin
https://orcid.org/0000-0001-6639-8080

Özet

Vitaminler, insan sağlığı için hayati roller üstlenen ancak çevresel faktörlere karşı oldukça hassas olan bileşiklerdirBu hassas yapıyı korumak ve biyoyararlanımı artırmak amacıyla modern bir teknoloji olan enkapsülasyon yöntemiyle vitaminler özel kaplamalar içine hapsedilerek dış etkenlerden izole edilirÖzellikle elektrospinning tekniği, ultra ince nanofiberler oluşturarak vitaminlerin spesifik hedef noktalara kontrollü bir şekilde salınmasına ve gıda takviyelerinde daha etkin kullanılmasına olanak tanır.

 

Vitamins are vital compounds for human health but are highly sensitive to environmental factorsTo protect this delicate structure and enhance bioavailability, vitamins are isolated from external factors by being trapped within special coatings using encapsulation, a modern technologySpecifically, the electrospinning technique allows for the creation of ultra-fine nanofibers, enabling the controlled release of vitamins to specific target sites and their more effective use in food supplements.

Referanslar

Ottaway, P. B. Stability of vitamins in food. In The technology of vitamins in food (pp. 90-113). Springer, Boston, MA; 1993.

Melfi, M. T., Nardiello, D., Cicco, N., Candido, V., Centonze, D. Simultaneous determination of water-and fat-soluble vitamins, lycopene and beta-carotene in tomato samples and pharmaceutical formulations: Double injection single run by reverse-phase liquid chromatography with UV detection. Journal of Food Composition and Analysis; 2018;70, 9-17.

McDowell, L. R. Vitamin nutrition of livestock animals: Overview from vitamin discovery to today. Canadian journal of animal science; 2006; 86(2), 171-179.

Teleki, A., Hitzfeld, A., Eggersdorfer, M. 100 years of vitamins: The science of formulation is the key to functionality. Kona powder and particle journal; 2013; 30, 144-163.

De Benoist, B., Dary, O., Hurrell, R. Guidelines on food fortification with micronutrients (Vol. 126). L. Allen (Ed.). Geneva: World Health Organization; 2006.

Ottaway, P. B. Stability of vitamins during food processing and storage. In Chemical deterioration and physical instability of food and beverages (pp. 539-560). Woodhead Publishing; 2010.

Dhakal, S. P., He, J. Microencapsulation of vitamins in food applications to prevent losses in processing and storage: A review. Food Research International; 2020; 137, 109326.

Zehiroglu, C., Ozturk Sarikaya, S. B. The importance of antioxidants and place in today’s scientific and technological studies. Journal of food science and technology; 2019; 56(11), 4757-4774.

Quirós-Sauceda, A. E., Ayala-Zavala, J. F., Olivas, G. I., González-Aguilar, G. A. Edible coatings as encapsulating matrices for bioactive compounds: a review. Journal of Food Science and Technology; 2014; 51(9), 1674-1685.

Zuidam, N. J., Shimoni, E. Overview of microencapsulates for use in food products or processes and methods to make them. In Encapsulation technologies for active food ingredients and food processing (pp. 3-29). Springer, New York, NY; 2010.

Fang, Z., Bhandari, B. Encapsulation of polyphenols–a review. Trends in Food Science & Technology; 2010; 21(10), 510-523.

Wandrey, C., Bartkowiak, A., Harding, S. E. Materials for encapsulation. In Encapsulation technologies for active food ingredients and food processing (pp. 31-100). Springer, New York, NY; 2010.

Gökmen, S., Palamutoğlu, R., Sarıçoban, C. Gıda endüstrisinde enkapsülasyon uygulamaları. Gıda Teknolojileri Elektronik Dergisi,, 2012; 7(1), 36-50.

Desai, K. G. H., Jin Park, H. Recent developments in microencapsulation of food ingredients. Drying technology, 23(7); 2005; 1361-1394.

Nedovic, V., Kalusevic, A., Manojlovic, V., Levic, S., Bugarski, B. An overview of encapsulation technologies for food applications. Procedia Food Science; 2011; 1, 1806-1815.

Amit, S. K., Uddin, M., Rahman, R., Islam, S. M., Khan, M. S. A review on mechanisms and commercial aspects of food preservation and processing. Agriculture & Food Security; 2017; 6(1), 1-22.

Yıldırım, A., Duran, M., Koç, M. Su aktivitesinin ve farklı kurutma sistemlerinin biyoaktif bileşenlerin stabiliteleri üzerine etkisi. Gıda/The Journal of FOOD; 2018; 43(3).

Yilmaz, T. E vitamininin elektrodöndürme yöntemiyle enkapsülasyonu ve elektrodöndürmeyi etkileyen parametrelerin incelenmesi, nanoliflerin karakterizasyonu (Master's thesis, İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü); 2015.

Palamutoğlu, R., Sariçoban, C. Probiyotik Mikrororganizmaların Mikroenkapsülasyonu. Akademik Gıda; 2013; 11(1), 88-96.

Drosou, C. G., Krokida, M. K., Biliaderis, C. G. Encapsulation of bioactive compounds through electrospinning/electrospraying and spray drying: A comparative assessment of food-related applications. Drying technology; 2017; 35(2), 139-162.

Ghorani, B., & Tucker, N. Fundamentals of electrospinning as a novel delivery vehicle for bioactive compounds in food nanotechnology. Food Hydrocolloids;2015; 51, 227-240.

Sill, T. J., & Von Recum, H. A. Electrospinning: applications in drug delivery and tissue engineering. Biomaterials; 2008; 29(13), 1989-2006.

Gelecek

19 Eylül 2022

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