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PERILAKU DISOLUSI KETOPROFEN DAN INDOMETASIN FARNESIL TERSALUT GEL KITOSAN-GOM GUAR Sugita, Purwantiningsih; Srijanto, Bambang; arifin, budi; amelia, fithri; mubarok, mahdi
Jurnal Sains dan Teknologi Indonesia Vol. 12 No. 1 (2010)
Publisher : Badan Pengkajian dan Penerapan Teknologi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (271.557 KB) | DOI: 10.29122/jsti.v12i1.849

Abstract

Chitosan, a modification of shrimp-shell waste, has been utilized as microcapsule. However, it’s fragile gel property needs to be strengthened by adding glutaraldehyde (glu) and natural hydrocolloid guar gum (gg). This research’s purposes were to study dissolution behaviour of ketoprofen and infar through optimum chitosan-guar gum microcapsule. Into 228.6 mL of 1.75% (w/v) chitosan solution in 1% (v/v) acetic acid,38.1 mL of gg solution was added with concentration variation of 0.35, 0.55, and 0.75% (w/v) for ketoprofen microcapsules and 0.05, 0.19, and 0.33% (w/v) for infar microcapsules, and stirred with magnetic stirrer until homogenous. Afterwards, 7.62mL of glu was added slowly under stirring, with concentrations varied: 3, 3.5, and 4% (v/v) for ketoprofen microcapsules, and 4, 4.5, and 5% (v/v) for infar microcapsules. All mixtures were shaked for 20 minutes for homogenization. All mixtures wereshaked for 20 minutes for homogenization. Into each microcapsule mixture for ketoprofen, a solution of 2 g of ketoprofen in 250 mL of 96% ethanol was added, whereas solution of 100 mg of in 250 mL of 96% ethanol was added into each microcapsule mixture for infar. Every mixture was then added with 5 mL of 2% Tween-80 and stirred with magnetic stirrer for an hour at room temperature. Everymixture was then added with 5 mL of 2% Tween-80 and stirred with magnetic stirrer for an hour at room temperature. Conversion of suspension into fine powders/granules (microcapsules) was done by using spray dryer. The data of [gg], [glu], and medicine’s content from each microcapsule were treated with Minitab 14 software to obtain optimum [gg] and [glu] for microencapsulation. The dissolution behaviour of optimum ketoprofen and infar microcapsules were investigated. The result of optimization by using Minitab Release 14 software showed that among the microcapsule compositions of [gg] and [glu] were 0.35% (w/v) and 3.75% (v/v), respectively, optimum to coat ketoprofen, whereas [gg] and [glu] of 0.05% (w/v) and4.00% (v/v), respectively, optimum to coat infar, at constant chitosan concentration (1.75% [w/v]). In vitro dissolution profile showed that chitosan-guar gum gel microcapsule was more resistant in intestinal pH condition (rather basic) compared with that in gastric pH (very acidic).
Sifat Fisika dan Mekanika Kayu Nangka (Artocarpus heterophyllus) serta Ketahanannya terhadap Marine Borers Putri, Lora Septrianda; Karlinasari, Lina; Muslich, Mohammad; Mubarok, Mahdi; Jeki, Jeki; Davinsy, Rynaldi; Adrin, Adrin; Kurniawan, Hendra; Telnoni, Sipora Petronela; So, Kristianto Wibison
Cannarium Vol 23, No 1 (2025)
Publisher : Universitas Khairun

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33387/cannarium.v23i1.9878

Abstract

Infrastruktur kelautan seperti fasilitas dan kapal sangat penting di Indonesia karena posisinya sebagai negara maritim. Kayu untuk tujuan infrastruktur kelautan ini umumnya bersumber dari hutan alam, sehingga perlu ada alternatif dari hutan tanaman untuk pemenuhan kebutuhan kayunya. Kayu nangka dari hutan rakyat dipilih sebagai objek penelitian ini karena adalah jenis kayu yang digunakan dalam penelitian ini. Kayak ini dipilih karena memiliki keawetan yang baik. Tujuan dari penelitian ini adalah untuk mengidentifikasi serangan marine borer terhadap kayu nangka pada berbagai kedalaman laut dan menentukan sifat fisis mekanis kayu setelah direndam di laut. Penelitian dilakukan di Pulau Rambut, dengan contoh uji 24 buah berukuran 30 cm x 5 cm x 2,5 cm. Semua contoh uji disusun dengan tali tambang dan direndam di laut selama tiga bulan pada kedalaman 5 cm di atas permukaan laut, serta 10 cm dan 42 cm di bawah permukaan laut. Hasilnya menunjukkan bahwa contoh uji yang disusun pada kedalaman 5 cm di atas permukaan laut sangat tahan terhadap marine borer, dan contoh uji yang disusun pada kedalaman 10 cm dan 42 cm di bawah permukaan laut tahan terhadap marine borer. Nilai MOE untuk kontrol adalah 79994 kg/cm2 dan turun menjadi 48714 kg/cm2 setelah direndam di laut; MOR adalah 1329 kg/cm2 untuk kontrol dan turun menjadi 672 kg/cm2 setelah direndam di laut. Berat kayu kontrol adalah 0,55, tetapi beratnya sedikit turun menjadi 0,51 setelah direndam di laut. Nilai mekanis MOE dan MOR antara contoh uji kontrol dan setelah direndam berbeda nyata. Namun, kedalaman perendaman contoh uji tidak berpengaruh nyata terhadap nilai mekanisnya.