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Ditemukan 5 dokumen yang sesuai dengan query
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Rimania Dwi Haryani
"Beberapa jenis obat memiliki sifat sukar larut dalam air sehingga perlu ditingkatkan kelarutannya menggunakan sistem pembawa obat. Pada penelitian ini digunakan miselbiosurfaktan sebagai pembawa obat carvedilol, obat yang memiliki kelarutan 0.0044 mg/mL dalam air. Biosurfakan saponin didapatkan dari ekstrak daun mengkudu Morinda citrifolia L. yang mudah didapat di Indonesia. Saponin dalam fraksi air diidentifikasi dengan uji fitokimia dan dikarakterisasi dengan FTIR, spektrofotometer UV-Vis, dan mikroskop optik. Nilai CMC saponin didapatkan 500 ppm dalam air, 300 ppm dalam media pH 1.2, dan 600 ppm dalam media pH 7.4. Nilai solubilisasi carvedilol dalam misel dilakukan dengan spektrofotometer UV-Vis. Solubilisasi optimum didapatkan pada konsentrasi saponin 1000 ppm, konsentrasi carvedilol 300 ppm, dan waktu kontak 5 jam. Dalam media pH 7.4, carvedilol dapat terdisolusi lebih baik dibandingkan dalam media pH 1.2 dalam waktu 1 jam.

Some of medicines have the characteristic of insoluble in water so they require a drug carrier system to enhance its solubilization. This research uses a micelle drug carrier system to carry carvedilol, which is a drug with 0.0044 mg mL of water solubility. Bio surfactant saponin got from the extract of noni Morinda citrifolia L. leaves that easily get in Indonesia. The saponin is extracted from the water fraction that has been identified byfito chemical test and has been characterized using FTIR, spectrophotometer UV VIS, and through optical microscope. The CMC value is 500 ppm in water, 300 ppm in pH 1.2, and 600 ppm in pH 7.4. The measurement of micelles rsquo s optimum solubilization for carvedilol is measured by UV Vis spectrofotometry. Result shows that the maximum solubilization of carvedilol in the maximum saponin concentration of 1000 ppm is 300 ppm, and the time required of making contact is 5 hours. The disolution percentage of carvedilol better in pH 7.4 than in pH 1.2 within 1 hour.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
S66830
UI - Skripsi Membership  Universitas Indonesia Library
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Nur Fitriana Ariyanti
"Klebsiella sp. GMD08 is one of the bacteria that has the capability to dissolve insoluble inorganic phosphate into soluble phosphate ion through their organic acid production. Transposon is a genetic element agent usually used to generate mutant through mutagenesis. Thus it can be used to identify the genetic functions involved in those phosphate solubilizing mechanisms. This research was conducted to identify the genes of Klebsiella sp. GMD08 involved in phosphate solubilization through sequence detection obtained from a hyper-solubilizing phosphate mutant library. Mutation was conducted by inserting mini-Tn5 transposon hosted in Escherichia coli S17-1/λpir [pBSL202] into Klebsiella sp. GMD08 chromosome by the filter mating conjugation method. Trans conjugant mutant candidates were then qualitatively and quantitatively analyzed for their solubilizing ability to dissolve tricalcium phosphate [Ca3(PO4)2] using pikovskaya medium. The organic acid characteristics of transconjugant mutants were detected using High-performance liquid chromatography (HPLC). Meanwhile, suspected genes involved in phosphate solubilizing were detected using the sequencing method obtained from the transposon insertion result. Nucleotide Basic Local Alignment Search Tool (nucleotide BLAST) was used to identify the nucleotide base sequence similarity with the database. The results showed that PB116 and PB122 were the two main transconjugant mutants obtained from transposon mutagenesis which had higher tricalcium phosphate dissolving ability. Gluconic acid was the main organic acid produced by Klebsiella sp. GMD08 phosphate solubilizing mechanism. Moreover, arginine repressor (ArgR) and malate dehydrogenase gene (mdh) coding gene were involved in Klebsiella sp. GMD08 phosphate solubilizing mechanism."
Bogor: Seameo Biotrop, 2020
634.6 BIO 27:3 (2020)
Artikel Jurnal  Universitas Indonesia Library
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Yayang Nurkarima Deastri
"ABSTRAK
Kurkumin yang berasal dari kunyit dapat digunakan sebagai pewarna alami minuman, namun kurkumin sukar larut dalam air dan rentan terhadap suhu dan cahaya. Pada penelitian ini, telah diuji kemampuan mikroemulsi untuk meningkatkan kelarutan kurkumin dalam air dan meningkatkan kestabilannya terhadap suhu dan cahaya. Mikroemulsi dibuat dengan menggunakan biosurfaktan saponin dari ekstrak daun pletekan, span 20 sebagai kosurfaktan, palm oil sebagai fasa minyak, dan air. Ekstraksi daun pletekan dilakukan dengan cara maserasi. Hasil uji fitokimia menunjukkan saponin terkandung dalam fraksi air, selanjutnya daun pletekan fraksi air dikarakterisasi menggunakan spektrofotometer UV-Vis dan FTIR. Formulasi mikroemulsi optimum adalah pada perbandingan saponin terhadap span 20 Sm 9:1 v/v dan perbandingan Sm terhadap palm oil 10:1 v/v . Hasil uji dengan mikroskop optik diperoleh mikroemulsi tipe minyak dalam air M/A . Mikroemulsi memiliki ukuran partikel antara 5,615-15,69 nm hasil pengujian dengan Particle Size Analyzer PSA . Solubilisasi kurkumin mengalami peningkatan dari 0,0004 mg/mL, menjadi 5,2 mg/mL dalam mikroemulsi. Kurkumin dalam mikroemulsi memiliki kestabilan yang lebih tinggi terhadap suhu, cahaya, dan pH dibandingkan kurkumin tanpa mikroemulsi.

ABSTRAK
Curcumin which comes from turmeric can be used as natural dyes, but curcumin difficult to soluble in water and not stable with temperature and light. In this study, microemulsion ability has been tested to increase solubility of curcumin in water and improve its stability to the influence of temperature and light. Microemulsion was prepared with biosurfactant saponin from leaf extract of Ruellia tuberosa L., span 20 as cosurfactant, palm oil as oil phase, and water. Leaf extraction of Ruellia tuberosa L. has been done with maceration. Phytochemical analysis showed that there was saponins which contained in the water fraction, and was characterized with UV Vis spectrofotometer, and FTIR spectroscopy. The optimum formulation microemulsion was obtained with ratio of saponin with span 20 Sm 9 1 v v and ratio of Sm with palm oil 10 1 v v . The result of optic microscope showed that the type of microemulsion was oil in water O W microemulsion. Microemulsion has droplet size with range 5,615 15,69 nm by instrument particle size analyzer PSA . Curcumin solubilization increased from 0,0004 mg mL to 5,2 mg mL in microemulsion. Curcumin in microemulsion has a higher stability against temperature, light, and pH than curcumin without microemulsion."
2017
S68641
UI - Skripsi Membership  Universitas Indonesia Library
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Sri Widawati
"Saline soil is a common problem in coastal paddy field, especially in Indonesia. Salinity affects rice growth and the activities of soil functional microbes, including functional bacteria, which play roles in plant growth. Some of these microbes are associated with rice plants and are able to survive under saline condition. The presence of functional microbes is also important to improve soil quality. Nitrogen and phosphate are essential soil nutrients and is available in soil due to the activities of nitrogen-fixing bacteria and free-living plant-associated bacteria. The objective of the present study was to obtain nitrogen-fixing, phosphate solubilizing and Indole Acetic Acid  (IAA)-producing bacteria that are able to survive and promote the growth of rice under saline conditions. From rice and peanut rhizosphere, Ca-phosphate (Ca-P) solubilizing and nitrogen-fixing bacteria were isolated separately using specific media. Then, the Ca-P solubilizing ability, phosphomonoesterase activity and IAA-producing ability were quantitatively examined. Based on the abilities, 20 strains were selected and identified as Burkholderia cepacia-complex, Burkholderia anthina, Burkholderia cenocepacia, Bacillus cereus-complex (three strains), Achromobacter spanius, Azospirillum sp. (four strains), Azotobacter sp. (three strains), Rhizobium leguminosarum, Rhizobium sp. (two strains), and Pseudomonas sp. (three strains). The inoculation of several single strains or the mixture of the selected strains promoted the growth of rice under saline conditions. These inoculants could be potential as biofertilizer in saline paddy fields."
Bogor: Seameo Biotrop, 2016
634.6 BIO 23:2 (2016)
Artikel Jurnal  Universitas Indonesia Library
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Mujuna Abbas
"Gliclazide merupakan obat antidiabetik yang memiliki kelarutan rendah dalam air, sehingga memiliki bioavalaibilitas yang rendah. Pada penelitian ini, digunakan sistem mikroemulsi minyak dalam air o/w untuk meningkatkan kelarutan Gliclazide. Studi solubilisasi dan uji disolusi Gliclazide dalam mikroemulsi menggunakan saponin dari ekstrak daun Kumis Kucing Orthosiphon aristatus Blume Miq sebagai biosurfaktan, telah berhasil dilakukan. Fase minyak yang digunakan adalah Palm Oil. Pembuatan mikroemulsi dilakukan dengan metode titrasi dengan memvariasikan perbandingan surfaktan dan kosurfaktan dan perbandingan minyak terhadap campuran surfaktan-kosurfaktan. Karakterisasi mikroemulsi diamati dengan turbidimeter, mikroskop dan PSA. Solubilisasi dan disolusi Gliclazide diamati dengan UV-Vis dan FTIR. Hasil yang diperoleh yaitu, perbandingan surfaktan terhadap kosurfaktan 8:2 dan perbandingan campuran surfaktan-kosurfaktan 10:1 merupakan kondisi teroptimal. Solubilisasi gliclazide dalam mikroemulsi sebesar 1.6 mg/mL. Uji disolusi dilakukan secara in-vitro, pada pH 1.2 Gliclazide terdisolusi sebanyak 17.49 dalam 2 jam, sedangkan pada media pH 7.4 Gliclazide terdisolusi sebanyak 98.84 dalam waktu 5 jam.

Gliclazide is an antidiabetic drug that has a low solubility in water, so it has low bioavailability. To improve the water solubility of gliclazide, used oil in water microemulsion system. In this study, solubilization of gliclazide in microemulsion that emulsified by saponin based surfactants from Cats Whisker Leaf Extract Orthosiphon aristatus Blume Miq has been investigated. The used oil phase is Palm oil. Preparation of microemulsion was conducted by titration method with various ratio of surfactant and co surfactant, and ratio of oil with surfactant co surfactant mixture. Characterization of microemulsion was observed using turbidimeter, microscope, and particle size analyzer PSA . Solubilization and dissolution of Gliclazide was observed by UV Vis spectrophotometer and FTIR spectroscopy. The optimum condition of microemulsion formation was resulted with ratio of surfactant to co surfactant at 8 2, and ratio of surfactant co surfactant mixture to oil at 10 1. The resultof optimum gliclazide solubility in microemulsion system was obtained as 1.6 mg mL. The dissolution test using in vitro method showed dissolution result 17.49 under condition of pH 1.2 within 2 hours, and 98,84 under condition of pH 7.4 within 5 hours.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
S68697
UI - Skripsi Membership  Universitas Indonesia Library