Please use this identifier to cite or link to this item: http://repository.ipb.ac.id/handle/123456789/156386
Title: Nanoenkapsulasi Fikosianin dari Spirulina platensis Menggunakan Kitosan dengan Panjang Polimer Berbeda untuk Aplikasi Transdermal Delivery
Other Titles: Nanoencapsulation of Phycocyanin from Spirulina platensis Using Chitosan with Different Polymer Lengths for Transdermal Delivery Applications
Authors: Hardiningtyas, Safrina Dyah
Setyaningsih, Iriani
Tentua, Eirene
Issue Date: 2024
Publisher: IPB University
Abstract: Fikosianin dari Spirulina platensis memiliki sifat bioaktif seperti antioksidan dan antikanker, tetapi kemurniannya sulit dicapai dengan metode konvensional. Sistem aqueous two phase dengan Natural Deep Eutectic Solvent (NaDES) menawarkan pemurnian lebih efisien. Tantangan stabilitas dan berat molekul tinggi diatasi dengan nanoenkapsulasi menggunakan kitosan. Penelitian ini menentukan metode pemurnian terbaik dan formulasi nanopartikel fikosianin-kitosan, serta mengevaluasi pengantaran transdermal dan aktivitas bioaktifnya. Hasil menunjukkan formula nanopartikel terbaik adalah NPC-LC dengan ukuran partikel 275,43 nm. Aktivitas antioksidan meningkat, dan nano-fikosianin tidak toksik terhadap sel normal, tetapi efektif melawan sel kanker melanoma.
Phycocyanin from Spirulina platensis possesses bioactive properties such as antioxidant and anticancer activities, but its purity is challenging to achieve using conventional methods. The aqueous two-phase system with natural deep eutectic solvents (NaDES) offers more efficient purification. The challenges of stability and high molecular weight are addressed through nanoencapsulation using chitosan. This study determines the best purification method and the formulation of phycocyanin-chitosan nanoparticles, as well as evaluates their transdermal delivery and bioactive activity. Results showed that the best nanoparticle formulation is NPC-LC with a particle size of 275.43 nm. Antioxidant activity increased, and nano-phycocyanin is non-toxic to normal cells but effective against melanoma cancer cells.
URI: http://repository.ipb.ac.id/handle/123456789/156386
Appears in Collections:MT - Fisheries

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