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Anob Kantacha
"Copper(II) and nickel(II) complexes of 14-membered hexaazamacrocyclic ligand with C-methyl substituent have been synthesized by one-pot reaction and characterized by elemental analyses, FT-IR, electronic spectra, and LC-MS. Complex types are [Cu(C18H42N6)(ClO4)2] (1), [Ni(C18H42N6)](ClO4)2 (2), and [Cu(C22H50N6)(ClO4)2] (3). The results of spectroscopic techniques indicated that both complexes 1 and 3 containing copper(II) are octahedral geometry, whereas the complex 2 is a square-planar geometry in which the metal center coordinates to the four nitrogen atoms of macrocyclic ligand in a square planar fashion.All complexes were also screened for their antibacterial activity against on two bacteria strains. These results show that copper(II) and nickel(II) complexes were tested for antibacterial activity against gram positive, Staphylococcus aureus which was more active than the against gram negative, bacteria Escherichia coli.The results showed a good antibacterial activity of all complexes which suggests their potential applications as antibacterial agents."
Thaksin University, Patthalung Campus. Faculty of Science, 2017
500 TIJST 22:1 (2017)
Artikel Jurnal  Universitas Indonesia Library
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Purba, Alfa Wezy Anugrah
"Infeksi bakteri telah menjadi masalah kesehatan publik yang signifikan secara global. Oleh sebab itu, kebutuhan akan agen antibakteri baru terus dikembangkan untuk mencegah penyebaran bakteri. Kumarin dan turunannya dikenal memiliki aktivitas biologi yang luas, termasuk antibakteri. Dalam penelitian ini, telah berhasil disintesis senyawa turunan 4-metilkumarin yaitu 3-asetil-4-metilkumarin (1), etil-4-metil-kumarin-3-karboksilat (2), dan 3-siano-4-metilkumarin (3) melalui reaksi kondensasi Knoevenagel yang dikatalisis oleh NaOH menggunakan metode MAOS. Senyawa 1 (43,54%) berhasil disintesis dalam kondisi bebas pelarut dengan mereaksikan 2-hidroksi asetofenon dan etil asetoasetat (1:1, mol/mol) dengan katalis NaOH 30% mol pada suhu 80oC selama 7 menit. Dengan memodifikasi waktu dan suhu reaksi pada kondisi optimum sintesis senyawa 1, senyawa 2 (28,00%) dan 3 (51,56%) berturut-turut berhasil disintesis menggunakan dietilmalonat dan etil sianoasetat sebagai pengganti metilen aktifnya. Penggunaan malononitril sebagai metilen aktif menghasilkan senyawa 3 dalam bentuk campuran berbagai turunan heterosiklik sebagai produk samping. Senyawa hasil sintesis diidentifikasi menggunakan KLT dan uji titik leleh, serta dikarakterisasi menggunakan FTIR, UV-Vis, NMR, dan LC-MS. Evaluasi aktivitas antibakteri dengan metode difusi cakram terhadap produk sintesis menunjukkan senyawa 1, 2, 3, dan campuran 3 memiliki aktivitas penghambatan lemah terhadap bakteri gram negatif, E. coli. Sementara hanya senyawa campuran 3 yang memberikan aktivitas penghambatan lemah terhadap bakteri S. aureus.

Bacterial infections have become a significant public health issue globally. Therefore, the need for new antibacterial agents continues to emerge to prevent the spread of bacteria. Coumarins and their derivatives are known to have a wide range of biological activities, including antibacterial. In this study, 4-methyl coumarin derivatives afforded, including 3-acetyl-4-methyl coumarin (1), ethyl-4-methyl-coumarin-3-carboxylate (2), and 3-cyano-4-methyl coumarin (3). through the Knoevenagel condensation reaction catalyzed by NaOH using the MAOS method. Compound 1 (43.54%) was formed under solvent-free conditions by reacting 2-hydroxy acetophenone and ethyl acetoacetate (1:1, mol/mol) with 30% mol NaOH catalyst at 80oC for 7 minutes. Modification of reaction time and temperature of optimum condition shows the formation of compounds 2 (28.00%) and 3 (51.56%). The use of malononitrile as active methylene induces compound 3 in the form of a mixture with various heterocyclic derivatives as a by-product. The synthesized compounds were identified using TLC and melting point tests and characterized using FTIR, UV-Vis, NMR, and LC-MS. Evaluation of antibacterial activity by disc diffusion method shows that compounds 1, 2, 3, and mixtures 3 showed weak inhibitory activity against gram-negative bacteria, namely E. coli. Meanwhile, only mixtures compound 3 showed weak inhibitory activity against S. aureus bacteria."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2021
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UI - Skripsi Membership  Universitas Indonesia Library
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Uswatun Hasanah
"Sintesis senyawa fenolipid berbasis asam risinoleat telah dilakukan pada penelitian ini. Sebelum sintesis fenolipid, dilakukan metilasi terhadap asam risinoleat terlebih dahulu. Keberhasilan reaksi metilasi diuji dengan penentuan persen konversi dan identifikasi menggunakan instrumentasi FTIR. Keberhasilan metilasi ditunjukkan dengan hilangnya gugus O-H karboksilat pada produk metilasi yang berada pada bilangan gelombang 3200-2400 cm-1 dengan persen konversi sebesar 94%. Sintesis senyawa fenolipid dilakukan dengan mereaksikan metil ester hasil sintesis dengan asam galat, menggunakan katalis ZnCl2 pada suhu 70 – 80 oC. Kedua reaksi dilakukan selama 6 jam dalam sistem refluks. Rendemen senyawa fenolipid hasil sintesis adalah 70,7%. Hasil sintesis diidentifikasi menggunakan instrumentasi FTIR dan juga dilihat keberhasilannya menggunakan KLT. Campuran kloroform/metanol (93:7) digunakan sebagai eluen pada KLT yang menghasilkan perbedaan nilai Rf pada ketiga sampel yang diuji. Nilai Rf yang dimiliki oleh senyawa fenolipid hasil sintesis 0,84, nilai ini merupakan nilai terbesar, sehingga menunjukkan bahwa senyawa tersebut memiliki sifat paling nonpolar dibanding yang lain. Selanjutnya identifikasi FTIR menghasilkan pita serapan baru yang kuat pada bilangan gelombang 758,06 cm-1 yang mengindikasikan adanya gugus C-H aromatik (tekuk) pada produk hasil sintesis yang mengindikasikan keberhasilan dari proses sintesis yang dilakukan. Uji aktivitas antioksidan senyawa fenolipid dengan metode DPPH menunjukkan nilai persen inhibisi dengan kisaran 30-33%. Uji emulsifier senyawa fenolipid hasil sintesis menunjukkan kestabilan emulsi yang cukup baik pada pengamatan hingga 24 jam, dengan tipe emulsi yang terbentuk yaitu air dalam minyak (W/O). Selain itu, dilakukan analisis potensi antibakteri senyawa fenolipid terhadap bakteri Propionibacterium acnes dan Staphylococcus epidermidis.

Synthesis of phenolipid compounds based on ricinoleic acid has been carried out in this study. Before phenolipid synthesis, methylation of ricinoleic acid is carried out first. The success of the methylation reaction was tested by determining percent conversion and identification using FTIR instrumentation. The success of methylation is shown by the loss of the carboxylic O-H group in the methylation product which is at wave number 3200-2400 cm-1 with a conversion percentage of 94%. Synthesis of phenolipid compounds was carried out by reacting the synthesized methyl esters with gallic acid, using a ZnCl2 catalyst at 70-80 oC. Both reactions are carried out for 6 hours in the reflux system. The yield of synthesized phenolipid compounds is 70.7%. The synthesis results were identified using FTIR instrumentation and seen its success using TLC. A mixture of chloroform/methanol (93: 7) was used as an eluent in TLC which resulted in different Rf values in the three samples tested. The Rf value owned by the synthesized phenolipid compound is 0.84, this value is the largest value, thus indicating that the compound has the most nonpolar properties compared to the others. Furthermore, identification of FTIR produced a strong new absorption band at wave number 758.06 cm-1 indicating the presence of aromatic C-H groups (bending) on the synthesized product which indicated the success of the synthesis process carried out. The antioxidant activity test of phenolipid compounds with DPPH method showed a value of percent inhibition in the range of 30-33%. The emulsifier test of the phenolipid compound synthesized showed the stability of the emulsion was quite good at observations of up to 24 hours, with the type of emulsion formed, namely water in oil (W / O). In addition, an analysis of the antibacterial potential of phenolipid compounds against Propionibacterium acnes and Staphylococcus epidermidis was carried out.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2020
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UI - Skripsi Membership  Universitas Indonesia Library
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Elisa Friska Romasi
"It was reported that the extracts of papaya leaves could inhibit the growth of Rhizopus stolonifer. Antibacterial activity of Carica papaya leaf extracts on pathogenic bacteria was observed in this study. Papaya leaves were extracted by using maceration method and three kinds of solvents : ethanol, ethyl acetate, and hexane. Papaya leaf extracts were tested against Bacillus stearothermophilus, Listeria monocytogenes, Pseudomonas sp., and Escherichia coli by agar diffusion method. The objectives of this study were to determine extract ability against pathogenic bacteria, to observe the influence of pH, NaCl, and heat on extracts ability, and to observe extract ability against B.stearothermophilus spores.The data showed that ethyl acetate extract could inhibit B. stearothermophilus, L. monocytogenes, Pseudomonas sp., and E. coli. The extract activity was influenced by pH, and it was more effective in low pH. The extract activity was influenced by NaCl against B. stearothermophillus and E. coli . However, it was not influenced by NaCl in bioassay against L. monocytogenes and Pseudomonas sp. The extract activity was influenced by heating process against all the bacteria tested. The extracts inhibited B. stearothermophilus spores as well. Papaya leaves are potential natural anti -bacteria, which might be used in certain kinds of food."
Direktorat Riset dan Pengabdian Masyarakat Universitas Indonesia, 2011
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Artikel Jurnal  Universitas Indonesia Library
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"Tujuan mekanisme khasiat antibakteri minyak atsiri rimpang temu kunci belum pernah dilaporkan. Telah dilakukan analisis mekanisme aktivitas antibakteri minyak atsiri rimpang temu kunci yang berasal dari Yogyakarta terhadap Bacillus cereus. Aktivitas yang diamati meliputi kemampuan minyak atsiri temu kunci dalam mengganggu permeabilitas membran sel sehingga menyebabkan kebocoran sel dan perubahan morfologi sel. Kebocoran sel diamati dengan keluarnya ion Ca+2, K+, protein dan asam nukleat. Kebocoran ion diukur dengan metoda spektrometri serapan atom. Kebocoran protein diamati dengan alat spektrofotometer UV pada panjang gelombang 280 nm, sedangkan asam nukleat pada 260 nm. Perubahan morfologi sel diamati dengan alat scanning electron microscopy. Hasil Nilai minimum inhibitory concentration (MIC) dari minyak atsiri temu kunci adalah 0,12 % (v/v). Perlakuan B.cereus dengan minyak atsiri 1 MIC dan 2 MIC memberi pengaruh yang signifikan terhadap kebocoran sel dibanding kontrol (P<0.05). Ion K+ yang terlepas dari sel adalah 10.32-35.57%, dan ion Ca+2 adalah 15.05-41.54%. Protein yang teramati pada 280 nm menunjukkan absorbansi antara 0.6330-0.8670, sedangkan asam nukleat 0.4320-0.8307, dan semuanya berbeda bermakna dibanding kontrol (P<0.05). Pada pemberian 1 MIC minyak atsiri temu kunci sel B.cereus berubah menjadi lebih tebal, dengan lekukan-lekukan yang signifikan di seluruh sel. Pemberian 2 MIC minyak atsiri menyebabkan sel berubah menjadi transparan, kosong dan berpenampilan seperti ghost cell. Kesimpulan Minyak atsiri kaempheria pandurata menyebabkan kebocoran dan perubahan morfologi bakteri.

Abstract
Aim The mechanism of temu kunci tuber essential oil potential as antimicrobial agent has not been reported. To analyze the mechanism of antibacterial activity of temu kunci tuber essential oil from Yogyakarta on B.cereus. Antibacterial activity of essential oil were analyzed for its ability to disrupt bacterial cell membrane, that caused cell leakage and altered the morphology of the bacteria. Leakage was measured by analyzing the Ca+2, K+ ion outflow using an atomic adsorption spectrometry (AAS), and protein and nucleic acid using an ultraviolet spectrophotometer (UVS) on 280 nm and 260 nm respectively. Alterations in morphology were assessed using scanning electron microscopy (SEM). Results Minimum inhibitory concentration (MIC) of temu kunci essential oil on B.cereus was 0.12% (v/v). Treatment of B. cereus using 1MIC and 2MIC showed significant leakage compared to control (P<0.05). The K+ and Ca+2 ion leakage from the bacterial cells were between 10.32-35.57% and 15.05-41.54% respectively and showed significant difference compared to control (P<0.05). The absorbance observed by UVS for protein and nucleic acid leakage were 0.6330-0.8670 at 280 nm and 0.4320-0.8307 at 260 nm, respectively, and were significantly different compared to control (P<0.05). Exposure of 1 MIC temu kunci essential oil on B.cereus caused thickening as well as irregularities on the cell wall. At 2 MIC cells seemed transparent, empty looking and showed a ghost-like appearance. Conclusion Kaempheria pondurata essential oil could cause leakage and alter the morphology of the bacteria."
[Fakultas Kedokteran Universitas Indonesia, Universitas Sriwijaya. Fakultas Matematika dan Ilmu Pengetahuan Alam], 2009
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Artikel Jurnal  Universitas Indonesia Library
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Perdana Rezha Kusuma Putra Hermawan
"Latar belakang: Buah manggis merupakan buah yang memiliki banyak khasiat untuk kesehatan. Beberapa penelitian menunjukan buah ini memiliki efek antioksidan. Penelitian ini bertujuan mengetahui efek antibakteri kulit buah ini.
Metode: Penelitian merupakan studi experimental. Besarnya sampel penelitian adalah 4 dengan jumlah perlakuan sebanyak 7 yaitu kontrol positif (Erythromycin), kontrol negatif (akuades), ekstrak kulit buah manggis pengenceran (10x,15x,20x,30x,40x). Uji aktivitas antibakteri dilakukan dengan mengukur zona hambat (diameter) pada agar darah yang ditanami bakteri streptococcus pneumonia. Data dianalisa dengan uji Kruskal-Wallis untuk menentukan perbedaan bermakna antar data uji, kemudian akan dilanjutkan uji Mann-Whitney untuk melihat data yang memiliki perbedaan bermakna.
Hasil: Hasil pengujian hipotesis menunjukan perbedaan bermakna dan uji posthoc terdapat perbedaan bermakna (p<0,05) pada perbandingan antibiotik Eritromisin dibandingkan dengan akuades dan ekstrak kulit buah manggis dalam berbagai pengenceran. Namun jika dilihat pada perbandingan antara akuades dengan ekstrak kulit buah manggis dalam pengenceran 10x dan 15x menunjukan adanya perbedaan bermakna (p=0,013 dan 0,014). Uji antara ekstrak dari kulit buah manggis pada pengenceran 20x,30x,40x dan akuades tidak terdapat perbedaan bermakna (p>0,05).
Simpulan: Ekstraksi kulit buah manggis pengenceran 10x dan 15x memiliki efek antimikroba dengan zona hambat bakteri sebesar 26 mm dan 16,5 mm.

Background: Manggosteen is one of flora that have virtue for health. Few research indicate that this fruit have antioxidan effect and also antibacterial effect. This study head for antibacterial effect of extract mangosteen rind on a streptococcus pneumoniae.
Method : This experimental study have 4 sample with 7 treatment group among others are positive control (Erythromycin), negative control (aquades), extraction in various dilutions (10x, 15x, 20x, 30x, 40x). These treatment group zone of inhibition?s in blood agar which had been planted with sterptococcus pneumoniae bacteria will be measured. This data will be analyzed with Kruskal-Wallis & Mann-Whitney test to identify which data have significant differences.
Result: Kruskal-Wallis test show asignificance value (p = 0.000) and Mann-Whitney test has significant difference (p <0.05) in comparison between erythromycin compared with aquades and mangosteen peel extraction at various dilution. Comparison in mann-wthitney test between aquades and mangosteen peel extract at 10x and 15x dilution indicates there is a significant difference (p = 0.013 and 0,014). Between aquades and mangosteen peel extract 20x, 30x, 40x dilution indicates no significant difference (p> 0.05).
Conclution: Extract of mangosteen rind have a inhibition effect on the growth of Streptococcus Pneumoniae bacteria which create a inhibition zone on blood agar for 10x dilution are 26 mm and for 15x dilution are 16,5 mm.
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Depok: Fakultas Kedokteran Universitas Indonesia, 2013
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UI - Skripsi Membership  Universitas Indonesia Library
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Rizky Firstya Novani
"Infeksi adalah proses invasi dan pembiakan mikroorganisme yang terjadi di jaringan tubuh manusia yang secara klinis mungkin tidak terlihat atau dapat menimbulkan cidera seluler lokal akibat kompetisi metabolisme, toksin, replikasi intrasel atau respon antigen-antibodi. Agen penyebab infeksi antara lain adalah bakteri. Timbulnya resistensi bahkan multiresistensi yang menimbulkan banyak masalah dalam pengobatan penyakit infeksi. Sehingga diperlukan usaha untuk mengembangkan obat tradisional berasal dari tanaman yang dapat menghambat pertumbuhan bakteri yang resisten terhadap antibiotik. Salah satu tanaman yang secara empiris digunakan sebagai obat antibakteri adalah binahong. Binahong (Anredera cordifolia (Tenore) Steen) adalah tanaman dari suku Anredera. Penelitian ini dilakukan untuk mengetahui aktivitas antibakterinya dan zat-zat kimia yang terkandung di dalam tanaman tersebut sebagai zat antibakteri. Ekstraksi tanaman dilakukan dengan metode maserasi menggunakan pelarut polar yaitu etanol 70 %. Kemudian dibuat 3 konsentarsi ekstrak yaitu 20%, 40%, dan 80%. Pengujian aktivitas antibakteri dilakukan dengan menggunakan metode difusi cakram kertas dengan mengamati diameter zona hambat. Hasil uji antibakteri ekstrak daun binahong memperlihatkan adanya aktivitas terhadap bakteri Staphylococcus aureus, Klebsiella pneumonia, dan Pseudomonas aeruginosa yang resisten terhadap beberapa antibiotik. Dan ekstrak daun binahong dengan konsentrasi 80% yang paling besar zona hambatnya. Digunakan kontrol positif yaitu antibiotik amoksisilin + asam klavulanat dan antibiotik siprofloksasin. Sedangkan kontrol negatif yang digunakan adalah etanol 70%.

Infection is the invasion and breeding of microorganisms that occurs in human body tissue which may not be apparent clinically or may cause local cellular injury due to competitive metabolism, toxins, intracellular replication or antigen-antibody response. Infectious agents include bacteria. The emergence of resistance or even multi-resistance can cause a lot of problems in the treatment for infectious diseases. Therefore, multi-resistance towards antibiotics becomes a severe problem. Thus, it is necessary to develop traditional medicines derived from plants that can kill the bacteria which resistant towards antibiotics. One of the plants empirically used as antibacterial drugs is binahong. Binahong (Anredera cordifolia (Tenore) Steen) is a plant from Anredera species. The research has been conducted to determine the antibacterial activity and chemical substances contained within the plant as an antibacterial agent. The extraction plant has been done by maceration method using a polar solvent that is 70% ethanol. Then made 3 extract concentrations of 20%, 40%, and 80%. Antibacterial activity has tested by using paper disc diffusion method in order to observing the inhibition zone. Antibacterial test results of binahong leaf extraction showed the activity against Staphylococcus aureus, Klebsiella pneumoniae, and Pseudomonas aeruginosa which were resistant to multiple antibiotics. And the leaf extract with a concentration of 80% binahong greatest inhibition zone. The positive control that was used are amoxicillin antibiotic + clavulanic acid and ciprofloxacin antibiotic, while the negative control that was used is 70% of ethanol."
Depok: Fakultas Farmasi Universitas Indonesia, 2013
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Rompas, Irrine Merrychs
"Masalah resistensi antimikroba yang berkembang menyebabkan munculnya kuman panresisten, yang resisten terhadap semua antimikroba yang tersedia. Munculnya bakteri panresisten ini menggambarkan suatu titik akhir yang mengkhawatirkan karena tidak tersedia pilihan terapi antibiotik yang rasional. Peningkatan kejadian resistensi antibiotik disertai penurunan produksi antibiotik baru sehingga diperlukan evaluasi dari kombinasi antibiotik yang sudah ada. Fosfomisin adalah antibiotik lama yang tidak memiliki resistensi silang dengan golongan antibiotik lain sehingga berpotensi menimbulkan interaksi yang sinergis terhadap bakteri resisten.
Penelitian ini bertujuan untuk mengetahui interaksi antibakteri in vitro kombinasi fosfomisin dan beberapa antibiotik lain, yaitu doripenem, moksifloksasin, kolistin dan amikasin terhadap kuman batang Gram negatif panresisten. Pada penelitian ini dilakukan uji kombinasi antibiotik menggunakan metode Etest terhadap 15 isolat kuman panresisten, yang terdiri dari Acinetobater baumanii (n=8), Pseudomonas aeruginosa (n=5) dan Klebsiella pneumoniae (n=2). Interaksi yang terjadi dinilai berdasarkan indeks Fractional Inhibitory Concentration (FIC), yaitu sinergi bila indeks FIC ≤ 0,5, indiferen bila indeks FIC 0,5 sampai 4, dan antagonis bila indeks FIC > 4. Isolat kuman berasal dari berbagai jenis spesimen yang diperiksakan di laboratorium otomasi RSUPNCM.
Interaksi antibakteri in vitro yang terjadi terhadap isolat kuman A. baumanii, P. aeruginosa, dan K. pneumoniae panresisten, baik dengan kombinasi fosfomisin dan amikasin, fosfomisin dan doripenem, fosfomisin dan moksifloksasin, serta fosfomisin dan kolistin pada semua isolat bersifat indiferen (100%). Tidak ditemukan interaksi yang bersifat sinergi atau antagonis.

The evolving problem of antimicrobial resistance in Pseudomonas aeruginosa, Acinetobacter baumannii and Klebsiella pneumoniae has led to the emergence of clinical isolates to pandrug-resistant (PDR) isolates, i.e. resistant to all available antibiotics.The emergence of pandrug-resistant (PDR) bacteria represents a worrying endpoint in the development of antimicrobial resistance. The increased incidence of antibiotic resistance accompanied by decreased production of new antibiotics required the evaluation of combinations of existing antibiotics.
The aim of this study to evaluate the in vitro antibacterial interaction of combination fosfomycin with doripenem, amikacin, colistin and moxifloxacin against PDR Gram negative bacteria. We evaluated antibiotic combinatinons against 15 panresistant clinical isolates, which consisted of Acinetobater baumanii (n=8), Pseudomonas aeruginosa (n=5) dan Klebsiella pneumoniae (n=2). The in vitro antibacterial interactions were evaluated by determination of fractional inhibitory concentration (FIC) index. Synergy was defined as FIC index ≤ 0,5, indiferen as FIC index 0,5 to 4, and antagonism as FIC index > 4. The isolates were collected at RSUPNCM hospital from various clinical specimens.
The in vitro antibacterial interaction against A. baumannii, P. aeruginosa, and K. pneumoniae panresistant isolates, either with the combination of fosfomycin and amikacin, fosfomycin and doripenem, fosfomycin and moxifloxacin, as well as fosfomycin and colistin showed indifferent to all isolates (100%). No interaction was found synergistic or antagonistic.
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Jakarta: Fakultas Kedokteran Universitas Indonesia, 2014
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Alya Irma Safira
"Penelitian ini bertujuan untuk mengetahui pengaruh pH basa (9-11) dalam mensintesis nanopartikel (NPs) berbasis seng (Zn), terbium (Tb), dan europium (Eu) dengan precursor sulfur (S) untuk menghasilkan ZnS, Tb2S3, dan Eu2S3 dengan zat penutup kitosan (CS) menggunakan metode bottom-up wet-chemical dan aplikasinya sebagai zat antibakteri. Nanopartikel ZnS, Tb2S3, dan Eu2S3 dengan zat penutup kitosan (CS-ZnS, CS-Tb2S3, dan CS-Eu2S3) dilapiskan pada lensa kontak komersial dan diteliti. NPs yang dihasilkan diuji melalui FESEM-EDX (Field Emission Scanning Electron Microscope Morphology-Energy Dispersive X-Ray Spectroscopy), FTIR (Fourier Transform Infrared Spectroscopy), dan XRD (X-ray Diffraction). Hasil karakterisasi FESEM dan FTIR mengindikasi terbentuknya NPs CS- ZnS, CS-Tb2S3, dan CS-Eu2S3. Variasi pH dari pH 9, pH 10, dan pH 11 mempengaruhi ukuran dan komposisi NPs berbasis Zn, Tb, dan Eu. Sintesis CS-ZnS, CS-Tb2S3, dan CS-Eu2S3 pada pH 10 memiliki aktivitas antibakteri terhadap bakteri Staphylococcus aureus dengan diameter zona inhibisi 7,70; 7,15; dan 7,40 mm. Konsentrasi NP CS-ZnS dalam larutan buffer fosfat pada 0,30 mg/mL dan 0,50 mg/mL memiliki aktivitas antibakteri terhadap bakteri Staphylococcus aureus dengan diameter zona inhibisi 10 mm dan 15 mm. Lensa kontak komersial dengan konsentrasi NPs CS-ZnS, CS-Tb2S3, dan CS-Eu2S3 pada pH 10 masing-masing dalam larutan buffer fosfat sebesar 0,20 mg/mL, 0,30 mg/mL, dan 0,50 mg/mL tidak mampu menginhibisi pertumbuhan bakteri Staphylococcus aureus. Efisiensi penempelan nanopartikel pada lensa kontak menunjukkan hasil efisiensi muatan terbaik pada NPs CS-ZnS yaitu sebesar 64% pada konsentrasi 0,50 mg/mL, NPs CS-Tb2S3 yaitu sebesar 48% pada konsentrasi 0,5 mg/mL, dan NPs CS-Eu2S3 yaitu sebesar 50% pada konsentrasi 0,5 mg/mL. NPs CS-ZnS, CS-Tb2S3, dan CS-Eu2S3 berpotensi sebagai zat antibakteri pada masa yang akan datang.

This study aims to determine the effect of base pH (9-11) in synthesizing nanoparticles (NPs) based on zinc (Zn), terbium (Tb), and europium (Eu) with sulfur (S) precursor to produce ZnS, Tb2S3, and Eu2S3 with chitosan (CS) as a capping agent using the bottom-up wet-chemical method and its application as an antibacterial agent. ZnS, Tb2S3, and Eu2S3 nanoparticles with chitosan capping agent (CS-ZnS, CS-Tb2S3, and CS-Eu2S3) were coated on commercial contact lenses and studied. The resulting NPs were tested using FESEM-EDX (Field Emission Scanning Electron Microscope Morphology-Energy Dispersive X-Ray Spectroscopy), FTIR (Fourier Transform Infrared Spectroscopy), and XRD (X-ray Diffraction). The results of FESEM and FTIR characterization indicated the formation of CS-ZnS, CS-Tb2S3, and CS-Eu2S3 NPs. Variations in pH from pH 9, pH 10, and pH 11 affected the size and composition of NPs based on Zn, Tb, and Eu. Synthesis of CS-ZnS, CS-Tb2S3, and CS-Eu2S3 at pH 10 had antibacterial activity against Staphylococcus aureus with a zone of inhibition diameter of 7,70; 7,15; 7,40 mm. The concentration of CS-ZnS NP in phosphate buffer solution at 0,30 mg/mL and 0,50 mg/mL had antibacterial activity against Staphylococcus aureus bacteria with inhibition zone diameters of 10 mm and 15 mm. Commercial contact lenses with concentrations of NPs CS-ZnS, CS-Tb2S3, and CS-Eu2S3 at pH 10 in phosphate buffer solution of 0,20 mg/mL, 0,30 mg/mL, and 0,50 mg/mL were not able to inhibit the growth of Staphylococcus aureus bacteria. The efficiency of the loading nanoparticles on contact lenses showed the best loading efficiency results in CS-ZnS NPs was 64% at a concentration of 0,50 mg/mL, NPs CS-Tb2S3 which was 48% at a concentration of 0,5 mg/mL, and NPs CS-Eu2S3 which is 50% at a concentration of 0,5 mg/mL. NPs CS-ZnS, CS-Tb2S3, and CS-Eu2S3 have potential as antibacterial agents in the future.
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Depok: Fakultas Teknik Universitas Indonesia, 2022
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Alri Bakti Wiratama
"Pendahuluan: Periodontitis merupakan inflamasi kronis yang terjadi pada jaringan periodonsium, ditandai dengan hilangnya perlekatan ligamen periodontal dan kerusakan tulang alveolar. Periodontitis yang terus berlanjut tanpa ditangani dapat menyebabkan kehilangan gigi. Bakteri Aggregatibacter actinomycetemcomitans merupakan salah satu bakteri yang memiliki berbagai faktor virulensi penyebab terjadinya periodontitis. Hal ini menyebabkan diperlukannya agen antibakteri, untuk melakukan kontrol terhadap aktivitas bakteri periodontopatogen. Gel ekstrak etanol kelopak bunga rosela (Hibiscus sabdariffa Linn.) diharapkan mampu menjadi agen antibakteri karena sifat antibakteri yang dimilikinya.
Tujuan: Mengetahui efektivitas antibakteri gel ekstrak etanol kelopak bunga rosela (Hibiscus sabdariffa Linn.) terhadap pertumbuhan bakteri Aggregatibacter actinomycetemcomitans secara in vitro.
Metode: Uji zona hambat dan total plate count dilakukan dengan bahan uji gel ekstrak etanol kelopak bunga rosela (Hibiscus sabdariffa Linn.) konsentrasi 10%, 15%, dan 25%, gel klorheksidin 0,2% sebagai kontrol positif, serta gel tanpa bahan aktif sebagai kontrol negatif. Uji zona hambat dilakukan pada tiga koloni bakteri berbeda, dengan cara meletakkan cakram kertas yang telah dipaparkan bahan uji pada 5 plat agar Mueller-Hinton untuk tiap satu koloni bakteri. Pada uji total plate count, dilakukan penghitungan koloni bakteri yang tumbuh setelah dipaparkan bahan uji.
Hasil: Gel ekstrak etanol kelopak bunga rosela (Hibiscus sabdariffa Linn.) konsentrasi 15% dan 25% menunjukkan perbedaan bermakna secara statistik bila dibandingkan dengan kontrol negatif (p-value <0,05).
Kesimpulan: Gel ekstrak etanol kelopak bunga rosela (Hibiscus sabdariffa Linn.) efektif dalam menghambat pertumbuhan bakteri Aggregatibacter actinomycetemcomitans pada konsentrasi 15% dan 25%.

Introduction: Periodontitis is a chronic inflammatory disease of periodontium, characterized by loss of periodontal ligament attachment and alveolar bone destruction. The advanced form of periodontitis could lead to tooth loss. Aggregatibacter actinomycetemcomitans is a bacterial that has a significant role in periodontitis by its various virulence factors. Therefore, antibacterial agents are needed to control the periodontal pathogen bacteria activity. Roselle calyx ethanol extract gel (Hibiscus sabdariffa Linn.) could be an antibacterial agent because of its antibacterial effect.
Objectives: To evaluate antibacterial efficacy of roselle calyx ethanol extract gel (Hibiscus sabdariffa Linn.) against Aggregatibacter actinomycetemcomitans on in vitro study.
Methods: Disk diffusion test (zone of inhibition) and total plate count test were performed using roselle calyx ethanol extract gel (Hibiscus sabdariffa Linn.) at concentrations of 10%, 15%, and 25%, 0.2% chlorhexidine gel as positive control and blank gel as negative control. Zone of inhibition test was carried out on three different bacterial colonies, by placing paper disk that had been exposed to gel on 5 Mueller-Hinton agar plates for each bacterial colony. Total plate count test was performed by counting bacterial colonies after exposed from the test material.
Results: Roselle calyx ethanol extract gel (Hibiscus sabdariffa Linn.) concentrations of 15% and 25% showed statistically significant differences when compared to negative controls (p-value <0.05).
Conclusions: Roselle calyx ethanol extract gel (Hibiscus sabdariffa Linn.) is effective in inhibiting the growth of Aggregatibacter actinomycetemcomitans at 15% and 25% concentrations."
Depok: Fakultas Kedokteran Gigi Universitas Indonesia, 2019
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