Academic literature on the topic 'Betadine'

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Journal articles on the topic "Betadine"

1

Kim, J. H., J. Rimmer, N. Mrad, S. Ahmadzada, and R. J. Harvey. "Betadine has a ciliotoxic effect on ciliated human respiratory cells." Journal of Laryngology & Otology 129, S1 (2014): S45—S50. http://dx.doi.org/10.1017/s0022215114002746.

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AbstractObjective:This study investigated the effect of Betadine on ciliated human respiratory epithelial cells.Methods:Epithelial cells from human sinonasal mucosa were cultured at the air–liquid interface. The cultures were tested with Hanks' balanced salt solution containing 10 mM HEPES (control), 100 µM ATP (positive control), 5 per cent Betadine or 10 per cent Betadine (clinical dose). Ciliary beat frequency was analysed using a high-speed camera on a computer imaging system.Results:Undiluted 10 per cent Betadine (n = 6) decreased the proportion of actively beating cilia over 1 minute (p < 0.01). Ciliary beat frequency decreased from 11.15 ± 4.64 Hz to no detectable activity. The result was similar with 5 per cent Betadine (n = 7), with no significant difference compared with the 10 per cent solution findings.Conclusion:Betadine, at either 5 and 10 per cent, was ciliotoxic. Caution should be applied to the use of topical Betadine solution on the respiratory mucosal surface.
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2

Ageeva, Elena Vladimirovna, Anna Evgen'yevna Grodnenskaya, and Kseniya Aleksandrovna Popova. "The role of preventive topical antibiotic treatment prior to intravitreal injection." Ophthalmology journal 8, no. 2 (2015): 79–83. http://dx.doi.org/10.17816/ov2015279-83.

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Treatment of wet age-related macular degeneration (AMD) requires frequent intravitreal injections of anti-VEGF agents, sometimes on monthly basis during a long period of time. Endophthalmitis is a rare but extremely severe complication of intravitreal injections. As it has been proven before, the flora from the conjunctival surface is the main source for endophthalmitis. Using Povidone-iodine solution (Betadine10 % Povidone-iodine, EGIS PHARMACEUTICALS) is the only way to prevent endophthalmitis. The efficacy of it was proven by numerous studies. No evidence exists that topical antibiotiotics prior and after injections could be effective for prevention of endophthalmitis. Purpose: To study the advisability of topical antibiotic application before intravitreal injection. Materials and methods: Under investigation, there were 25 eyes of 25 patients with wet AMD treated by anti-VEGF intravitreal injections. All patients used topical antibiotics 3 days before injection. Conjunctival culture from injection eye was collected three times: before topical antibiotic use; after topical antibiotic use, and after Betadine 5 % application. Results: The rates of Staphylococcus epidermidis before and after topical antibiotic use were approximately equal. However there was no Staphylococcus epidermidis found after Betadine 5 % application. Conclusion: Our study showed the effectiveness of Betadine 5 % solution in conjunctival flora reduction. Use of topical antibiotics 3 days prior intravitreal injections is not effective. Key words: age-related macular degeneration; endophthalmitis; intravitreal injection; topical antibiotics; endophthalmitis prevention.
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Liana, Yunita, and Yofa Anggriani Utama. "Efektifitas pemberian ekstrak daun betadine (jatropha muitifida linn) terhadap ketebalan jaringan granulasi dan jarak tepi luka pada penyembuhan luka sayat tikus putih (rattus norvegicus)." Jurnal Kedokteran dan Kesehatan : Publikasi Ilmiah Fakultas Kedokteran Universitas Sriwijaya 5, no. 3 (2018): 114–23. http://dx.doi.org/10.32539/jkk.v5i3.6313.

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Luka adalah hilang atau rusaknya sebagian jaringan tubuh. Proses penyembuhan tidak hanya terbatas pada proses regenerasi yang bersifat lokal, tetapi juga sangat dipengaruhi oleh oleh banyak faktor, salah satunya adalah jenis obat-obatan. Penyembuhan luka adalah suatu bentuk proses usaha untuk memperbaiki kerusakan yang terjadi pada kulit. Salah satu tanaman yang berpotensi terhadap penyembuhan luka adalah tanaman betadine. Tujuan dari penelitian ini adalah untuk mengetahui efektifitas pemberian ekstrak daun betadine terhadap ketebalan jaringan granulasi dan jarak tepi luka sayat tikus putih (Rattus norvegicus). Desain penelitian studi eksperimental dengan menggunakan rancangan penelitian post test only control group design. Penelitian ini dilakukan di Laboratorium Biomedik Fakultas Teknik Kimia Politeknik Sriwijaya Palembang untuk pelaksanaan ekstraksi dan pembuatan salep ekstrak daun betadine, di Animal House Fakultas Kedokteran Unsri Palembang untuk pemeliharaan dan perlakuan pada tikus putih dan Laboratorium Patologi RSUP dr. Mohammad Hoesin Palembang untuk pemeriksaan jaringan kulit tikus putih. Jumlah sampel 30 tikus putih. Analisis statistik uji homogenitas antar kelompok dengan menggunakan levene test, Independent t-test, Uji One Way Anova untuk mengetahui jaringan granulasi dan jarak tepi luka dilanjutkan dengan uji post hoc multiple comparisons t-test games howel. Hasil uji statistik salep ekstrak daun betadine mempunyai efek yang sama dengan salep madecassol terhadap ketebalan jaringan granulasi dan jarak tepi luka pada luka sayat tikus putih. Dosis yang paling efektif adalah pada dosis 40% salep ekstrak daun betadine. Diharapkan perlu penelitian lanjutan tentang efek daun betadine terhadap protein-protein pada saat proses inflamasi toksisitas dari daun betadine.
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Rusdy, Hendry, Astri Suryani Pasaribu Saruksuk, Rahmi Syaflida Dalimunte, and Gostry Aldica Dohude. "Efektivitas getah batang betadine (Jatropha multifida L.) terhadap penyembuhan luka pasca pencabutan gigi pada tikus Sprague-DawleyEffectiveness of betadine (Jatropha multifida L.) stem sap on the wound healing after tooth extraction in Sprague-Dawley rats." Jurnal Kedokteran Gigi Universitas Padjadjaran 33, no. 2 (2021): 145. http://dx.doi.org/10.24198/jkg.v33i2.32563.

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Pendahuluan: Pencabutan gigi merupakan prosedur yang sering dilakukan di kedokteran gigi. Setelah pencabutan gigi akan dihasilkan suatu perlukaan. Proses penyembuhan luka dapat dipercepat pada kondisi tertentu. Salah satu bahan alami yang dapat membantu proses penyembuhan luka adalah getah tanaman betadine (Jatropha multifida L.). Penelitian bertujuan untuk menganalisis efektivitas getah tanaman betadine terhadap penyembuhan luka dan terhadap tanda-tanda infeksi pasca pencabutan gigi Metode: Desain penelitian studi eksperimental laboratorium dengan rancangan penelitian post-test only control group design menggunakan 30 ekor tikus Sprague-Dawley. Teknik pengambilan sampel yaitu convenience sampling. Sampel dibagi menjadi 2 kelompok yaitu kelompok perlakuan dan kelompok kontrol. Kelompok perlakuan diberikan getah tanaman betadine dan kelompok kontrol diberikan asam traneksamat secara oral menggunakan sonde lambung. Tunggu selama 4 jam setelah pemberian getah tanaman betadine dan asam traneksamat. Anestesi pada tikus menggunakan ketamin 50 mg/kg berat badan secara intramuskular kemudian dilakukan pencabutan pada gigi tikus. Pengamatan dilakukan dengan melihat kriteria klinis pada hari 1,3,7 dan diperhatikan sampai luka sembuh serta lihat tanda-tanda infeksi. Analisis data dilakukan dengan uji normalitasShapiro Wilik. Hasil penelitian menunjukkan bahwa data berdistribusi tidak normal. Analisis data dilanjutkan menggunakan uji statistik mann whitney. Hasil: Terdapat perbedaan signifikan penyembuhan luka soket pasca pencabutan gigi setelah diberikan getah betadine dan asam traneksamat dengan nilai p=0,037 (p<0,005). Simpulan: Pemberian getah tanaman betadine terbukti lebih efektif terhadap proses penyembuhan luka soket pasca pencabutan gigi dibandingkan dengan pemberian asam traneksamat. Kata kunci: tikus Sprague-Dawley; penyembuhan luka; pencabutan gigi; getah batang betadine ABSTRACTIntroduction: Tooth extraction is a procedure often performed in dentistry. Tooth extraction will always cause injuries. However, the wound healing process can be accelerated under certain conditions. One of the natural ingredients that can accelerate the wound healing process is betadine (Jatropha multifida L.) plant sap. The study was aimed to analyzed the effect of betadine plant sap on wound healing and signs of infection after tooth extraction. Methods: Experimental laboratory study design with post-test only control group design was conducted towards 30 Sprague-Dawley rats. The sampling technique was convenience sampling. The sample was divided into two groups, the treatment group and the control group. The treatment group was administered with betadine plant sap, and the control group was administered with tranexamic acid orally using a gastric probe, then waited 4 hours after. The anaesthesia was then performed using 50 mg/kg body weight of ketamine intramuscularly. The extraction was performed after. Observations was conducted at the clinical criteria on days 1, 3, and 7 and continue to be monitored until the wound heals. Then, the signs of infection were observed. Data analysis was carried out using the Shapiro Wilk normality test. The results showed that the data was not normally distributed. Thus, data analysis was continued using the Mann Whitney statistical test. Results: The results showed a significant difference in the healing of socket wounds after tooth extraction after being administered with betadine sap and tranexamic acid with a value of p=0.037 (p<0.005). Conclusions: Administration of betadine plant sap is proven to be more effective in accelerating the healing process of socket wounds after tooth extraction than tranexamic acid. Keywords: Sprague-Dawley rats; wound healing; pencabutan gigi; getah batang betadine
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5

Nagle, Alyssa, Jonathan Kopel, John Reed, et al. "An in vitro Study of Betadine’s Ability to Eliminate Live Bacteria on the Eye: Should It Be Used for Protection against Endophthalmitis?" Antibiotics 11, no. 11 (2022): 1549. http://dx.doi.org/10.3390/antibiotics11111549.

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Background: Povidone-iodide (Betadine) is an antiseptic that is applied topically and has many uses in the medical community, such as in wound care and pre- and post-operative surgical procedures. This study was done to measure the effectiveness of Betadine solutions in inhibiting the growth of Gram-negative and Gram-positive bacteria. Methods: The ability of 2.5 and 10% Betadine solutions to inhibit bacterial growth was measured against Staphylococcus aureus, Staphylococcus epidermidis, Pseudomonas aeruginosa, and Acinetobacter baumannii. We grew the bacteria independently and together to simulate a hospital environment. Results: All the bacteria showed zones of inhibition. However, discs were also tested for live bacteria using the colony-forming unit assay. Complete killing was only seen for S. aureus with the 10% Betadine solution. All other bacteria showed growth on the disc. Conclusions: This study showed several things. First, the zone of inhibition assay does not give an accurate assessment of antimicrobial properties when used alone and should be followed by a colony-forming unit assay. Second, 2.5% and 5% Betadine do not have effective antimicrobial properties against any of the bacteria tested, and 10% Betadine is only effective against S. aureus and not effective against the other bacteria tested.
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6

Birnabach, D. J., E. M. Kitain, O. Murray, D. J. Stein, and E. M. Sordillo. "BETADINE-SEPTIC OR ANTISEPTIC?" Anesthesiology 77, Supplement (1992): A1040. http://dx.doi.org/10.1097/00000542-199209001-01040.

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7

Wiener, Thomas C. "Betadine and Breast Implants." Aesthetic Surgery Journal 33, no. 4 (2013): 615–17. http://dx.doi.org/10.1177/1090820x13484036.

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8

Jewell, Mark L., and William P. Adams. "Betadine and Breast Implants." Aesthetic Surgery Journal 38, no. 6 (2018): 623–26. http://dx.doi.org/10.1093/asj/sjy044.

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9

Gills, James P. "Effective Concentration of Betadine." Journal of Cataract & Refractive Surgery 25, no. 5 (1999): 604. http://dx.doi.org/10.1016/s0886-3350(99)00053-x.

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10

Sudarma, Nyoman, Sri Idayani, Didik Setiawan, and Putu Oka Dharmawan. "PEMANFAATAN BETADINE SEBAGAI INDIKATOR UJI KLORIN PADA BERAS BERPEMUTIH." Bali Medika Jurnal 5, no. 2 (2018): 14–21. http://dx.doi.org/10.36376/bmj.v5i2.32.

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Klorin merupakan salah satu penggunaan Bahan Makanan Tambahan yang dilarang. Menurut Peraturan Menteri Kesehatan Republik Indonesia No.033/Menkes/Per/IX/2012, bahwa klorin tidak tercatat sebagai Bahan Tambahan Pangan (BTP) dalam kelompok pemutihan dan pematang tepung. Klorin digunakan sebagai pemutih beras yang dimaksudkan agar beras memiliki kualitas super dengan harga yang tinggi. Masyarakat akan kesulitan membedakan beras yang mengandung klorin atau tidak sehingga perlu dilakukan uji sederhana yang dapat dilakukan oleh masyarakat luas. Povidon iodine atau dikenal dengan betadine yang merupakan bahan antiseptik luka merupakan salah satu alternatif digunakan untuk identifikasi secara kualitatif kandungan klorin baik pada makanan maupun air. Tujuan dari penelitian ini adalah untuk mengetahui apakah betadine dapat digunakan sebagai alternatif untuk identifikasi klorin pada sampel beras bermerk maupun non merk. Hasil penelitian menunjukkan bahwa betadine dapat digunakan sebagai indikator identifikasi klorin pada sampel beras yang dijual di pasaran. Sepuluh sampel beras yang diidentifikasi dua diantaranya terindikasi positif mengandung pemutih klorin. Sampel beras positif mengandung klorin jika setelah penambahan dengan betadine menghasilkan warna putih keruh. Uji penegasan dilakukan dengan menambahkan larutan amilum dan KI 10% pada sampel beras dan menghasilkan warna biru kehitaman.
 
 Kata kunci : beras, pemutih, klor, betadine
 
 
 ABSTRACT
 Chlorine is one of the prohibited uses of Foodstuffs. According to the Regulation of the Minister of Health of the Republic of Indonesia No.033 / Menkes / Per / IX / 2012, that chlorine is not recorded as a Food Additives (BTP) in the bleaching and flour milling group. Chlorine is used as rice bleach which is intended to have a super quality rice at a high price. The community will find it difficult to distinguish whether or not rice contains chlorine or not, so a simple test can be carried out by the community. Povidon iodine, also known as betadine, which is an antiseptic wound, is one alternative used to qualitative identify chlorine content in food and water. The purpose of this study was to determine whether betadine can be used as an alternative for identification of chlorine in samples of branded and non-branded rice. The results showed that betadine could be used as an indicator of chlorine identification in rice samples sold in the market. Ten rice samples were identified, two of which were indicated to be positive for chlorine bleach. The rice sample is positive for chlorine if after adding it with betadine it produces a cloudy white color. The affirmation test was carried out by adding a solution of starch and 10% KI to the rice sample and producing a blackish blue color.
 Key words: rice, bleach, chlorine, betadine
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