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Journal : Bioscientia Medicina : Journal of Biomedicine and Translational Research

Novel Enhalus acoroides Phytosomes: Formulation, Characterization, and Bioavailability Enhancement Siti Mardiyanti; Effionora Anwar; Yesi Desmiaty; Siti Sadiah
Bioscientia Medicina : Journal of Biomedicine and Translational Research Vol. 9 No. 7 (2025): Bioscientia Medicina: Journal of Biomedicine & Translational Research
Publisher : HM Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37275/bsm.v9i7.1333

Abstract

Background: Enhalus acoroides (seagrass) possesses valuable bioactive compounds, including quercetin, with potential therapeutic applications, notably antidiabetic effects. However, the poor solubility and low bioavailability of compounds like quercetin limit their clinical efficacy. Phytosomes, phospholipid-based nanocarriers, represent a promising strategy to overcome these limitations. This study aimed to develop and characterize E. acoroides extract-loaded phytosomes to enhance its potential bioavailability. Methods: E. acoroides was collected, processed, and extracted using ultrasound-assisted extraction (UAE). Total phenolic (TPC) and flavonoid content (TFC) were determined. Phytosomes were prepared using the thin-layer hydration method with varying extract-to-soya lecithin ratios (F1=1:1, F2=1:2, F3=1:3). Characterization involved particle size analysis, zeta potential measurement, Fourier Transform Infrared Spectroscopy (FTIR), Transmission Electron Microscopy (TEM), entrapment efficiency (EE%) determination via HPLC, and in vitro dissolution studies. Results: The UAE extract yielded TPC of 0.318 ± 0.036 mg GAE/g and TFC of 1.023 ± 0.022 mg QE/g. Phytosome formulation F1 (1:1 ratio) exhibited optimal characteristics: particle size of 276.4 nm, PDI of 0.591, zeta potential of -18.0 mV, EE% of 80.47 ± 2.62%, and a spherical morphology. FTIR confirmed complexation. F1 phytosomes demonstrated significantly enhanced dissolution, releasing 87.13% of the entrapped compound over 12 hours compared to the crude extract. Conclusion: E. acoroides extract was successfully encapsulated into phytosomes using a thin-layer method. The F1 formulation (1:1 extract:phospholipid ratio) demonstrated favorable physicochemical properties (nanoparticle size, moderate stability, high EE%) and markedly improved in vitro dissolution, suggesting enhanced bioavailability potential for E. acoroides phytoconstituents.
Co-Authors AFIZZA ANBAR Ali Timucin Atayoglu Amanda, Reistha Fazlia Andam Dewi, Mira Apriandini, Lisya Apriliana, Amalia Zahra Ardi, Maria Yedida Ariani, Lusiana Arif Tatak Berna Elya Camalia Hartantrie, Rovida Chandra, Amelia Ciang, Windy Danty Nur Alvionitasari Deby Faradhila Deni Rahmat Diah Kartika Pratami Dianita Ayu Noviastuti Djamil, Ratna Effionora Anwar Endah Wulandari Engita, Elvira Esti Mumpuni, Esti Evita Maria Simorangkir Fadlina Chany Saputri Fahleni Fahleni Fahrauk Faramayuda, Fahrauk Fahri Muhammad FAIZATUN, FAIZATUN Fajar, In Rahmi Fatria Fauzia Noprima Okta Fikri Alatas Greesty F. Swandiny Greesty Finotory Swandiny Griselda, Agnes Gumilar Adhi Nugroho Hakim, Ratu Mayra Handayani, Rizqya Cahya Haura Usna Rahmah Haura Usna Rahmah Iis Irawatty Dewi Irtan, Levina Diva Kartiningsih Kartiningsih Kharinta Adella Meynderth kurnia agustini Lhu Muslimah, Lhu Liliek Nurhidayati Lilik Sulasti Lilik Sulastri Lim, Helsa Lindawati Lindawati LOLA DYAH PITHALOKA Mardiyanti, Siti Mari Okatini Armandari Marvel, Nadya Sekar Moch Futuchul Arifin Muhammad Hanafi Narrij Lotulung, Puspa Dewi Nattika Sari Darmastuti Neneng Siti Silfi Ambarwati Ni Made Dwi Sandhiutami Nilam Sari Maulidina Nina Artanti Noor, Siti Umrah Noviani, Yuslia Okta , Fauzia Noprima Okta, Fauzia Noprima Partomuan Simanjuntak Prayoga, Tria Priyanti, Ike Ari R, Julia R, Julia R., Ika R., Ika RAHMAT, DENI Reczky Muhammad Ramdhan Hasan Risma Marisi Tambunan Rizky Adam Hidayat Shafira, Elza Siti Mardiyanti Siti Sadiah Siti Sadiah Sri Irta Widjajanti Suherman, Sandra Loretta Sumiyati , Yati Syamsudin Syamsudin Triastity, Sarinah Triyani, Yulia Valeria Wahyudi, Dion Wiwi Winarti Yashinta Larasati YATI SUMIYATI Yati Sumiyati Yati Sumiyati, Yati Yolanti