Adsorption Behavior of Lysozyme and Tween 80 at Hydrophilic and Hydrophobic Silica–Water Interfaces

2008 ◽  
Vol 152 (2) ◽  
pp. 235-248 ◽  
Author(s):  
Omkar Joshi ◽  
Joseph McGuire
2015 ◽  
Vol 24 (3) ◽  
pp. 276-289 ◽  
Author(s):  
Lian Ming ◽  
Weiyun Lin ◽  
Baiyu Zhang ◽  
Yueming Li ◽  
Guanzhu Wang ◽  
...  
Keyword(s):  
Tween 80 ◽  

Fuel ◽  
2022 ◽  
Vol 312 ◽  
pp. 122872
Author(s):  
Zhuoya Zhang ◽  
Zhaojie Song ◽  
Hongda Hao ◽  
Liang Huang ◽  
Yilei Song

2020 ◽  
Vol 65 (2) ◽  
pp. 119-133
Author(s):  
Nesrimne SEDIIKI ◽  
◽  
Djamel ALIOUCHE ◽  
Imene BOUDHENE ◽  
◽  
...  

2019 ◽  
Vol 5 (4A) ◽  
pp. 1497
Author(s):  
Buana Dewanti Wimpi ◽  
Diana Natalia ◽  
Effiana Effiana

Latar Belakang: Dermatofitosis adalah suatu kondisi penyakit yang ditandai dengan infeksi pada jaringan berkeratin seperti epidermis, rambut dan kuku. Kondisi ini disebabkan oleh sekelompok jamur berfilamen terkait yang dikenal sebagai dermatofita. Bawang dayak (Eleutherine americana Merr.) merupakan tanaman berumbi merah yang mengandung senyawa bioaktif yang memiliki kemampuan menghambat pertumbuhan jamur golongan dermatofita. Metode: Umbi bawang dayak diekstraksi dengan metode maserasi menggunakan pelarut etanol 96%. Uji aktivitas antijamur menggunakan metode difusi cakram Kirby-Bauer dengan 5 variasi konsentrasi yaitu 60%, 30%, 15%, 7,5% dan 3,75%. Kontrol positif yang digunakan adalah itrakonazol 8 µg/disk sedangkan kontrol negatif yang digunakan adalah pelarut Tween 80 sebesar 10%. Hasil: Ekstrak umbi bawang dayak mengandung senyawa metabolit sekunder berupa saponin, kuinon, flavonoid, fenol, tanin, alkaloid, steroid dan triterpenoid. Uji aktivitas antijamur ekstrak etanol umbi bawang dayak dengan metode difusi cakram tidak membentuk zona hambat terhadap pertumbuhan Microsporum canis. Kesimpulan: Ekstrak etanol umbi bawang dayak tidak memiliki aktivitas antijamur terhadap pertumbuhan Microsporum canis.


2012 ◽  
Vol 12 (1) ◽  
Author(s):  
Purwantiningsih Sugita ◽  
Bambang Srijanto ◽  
Budi Arifin ◽  
Fithri Amelia ◽  
Mahdi Mubarok

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).


Author(s):  
Kori Yati ◽  
Almawati Situmorang ◽  
Ani Umoro
Keyword(s):  

2013 ◽  
Vol 30 (5) ◽  
pp. 522-526
Author(s):  
LIMONTA Miladys ◽  
ZUMALACARREGUI Lourdes ◽  
SOLER Dayana

Author(s):  
Arundhati Bhattacharyya ◽  
M Bajpai

Ketoconazole is an imidazole antifungal drug belonging to the class II of Biopharmaceutic Classification System. Maintenance of gastric acidity is essential for adequate dissolution and absorption of ketoconazole. Concurrent administration of antacid and antiulcer preparations decreases the oral absorption of ketoconazole often causing therapeutic failure.  The aim of this study was to evaluate whether a self-emulsifying formulation of ketoconazole would be able to overcome the pH dependent dissolution and oral bioavailability. Self-emulsifying drug delivery system (SEDDS) was prepared after selecting the oil, surfactant and co-surfactant by solubility analysis. Optimum ratio of the components was finalized on the basis of drug content, self-emulsification and mean droplet diameter. The effect of pH on dissolution was studied in comparison to the pure drug. Oral bioavailability was determined in comparison to aqueous suspension in rats and the effect of co-administration of ranitidine hydrochloride solution and a commercially available liquid antacid preparation was studied. The optimized formulation containing 20% Capryol 90 and 40% each of Carbitol and Tween 80, exhibited 100% drug release regardless of the pH whereas the pure drug exhibited a highly pH dependent dissolution. The AUC0-24 resulted with oral administration of the SEDDS formulation was about 34%, 43% and 60% higher compared to the aqueous suspension when administered alone, administered with ranitidine and administered with antacid respectively. The results of the present study demonstrate that self-emulsifying formulations can be utilized for oral delivery of weakly basic drugs like ketoconazole which exhibit pH dependent dissolution.


2020 ◽  
Vol 18 (2) ◽  
pp. 63-72
Author(s):  
Mohd Aftab Alam ◽  
Fahad I. Al-Jenoobi ◽  
Khaled A. Alzahrani ◽  
Mohammad H. Al-Agamy ◽  
Abdullah M. Al-Mohizea

The aim of present study was to investigate the effect of pharmaceutical excipients and other active substances on antimicrobial efficacy of standard antibiotic against resistant and susceptible microorganisms. Pharmaceutical excipients (sodium lauryl sulfate [SLS], Tween-80, citric acid, NaOH, NaCl) and active substances (fusidic acid, sorbic acid) were investigated to check in-vitro efficacy and their effect on the efficacy of standard antibiotic. Clindamycin was selected as standard antibiotic. Clindamycin was found to be ineffective against methicillin-resistant Staphylococcus aureus (MRSA). Fusidic acid and SLS showed concentration dependent effect against MRSA. Other tested substances were also ineffective against MRSA, and also failed to improve the susceptibility of MRSA towards clindamycin. The clindamycin + fusidic acid (0.05 µg, 0.1 µg), and clindamycin + SLS (0.5 mg, 1 mg) showed concentration dependent effect on Staphylococcus epidermidis (S. epidermidis). Clindamycin combinations with fusidic acid or SLS showed better inhibition of S. epidermidis, than individual substance. At lower concentration of clindamycin (2 µg), the sorbic acid (25 µg) improves its effectiveness. SLS (0.5 mg, 1 mg) and clindamycin (4 µg, 10 µg) showed almost equal zone of inhibition against S. epidermidis, respectively. Present findings showed that certain pharmaceutical excipients (e.g. SLS) are effective against resistant and susceptible microbes, and suggested that more excipients should be screened for their antimicrobial potential and their ability to improve the efficacy of standard antibiotics.


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