scholarly journals CHEMICAL COUPLING OF GLUCOAMYLASE PRODUCED BY Arthrobotrys conoides ONTO COTTON CLOTH AND Ocimum basilicum SEEDS AND CHARACTERIZATION OF THE IMMOBILIZED ENZYME

2017 ◽  
Vol 6 (5) ◽  
pp. 1127-1131
Author(s):  
Premalatha Shetty ◽  
Maleka Jaffer
2014 ◽  
Vol 102 ◽  
pp. 199-206 ◽  
Author(s):  
Naimeh Khazaei ◽  
Mohsen Esmaiili ◽  
Zahra Emam Djomeh ◽  
Mehran Ghasemlou ◽  
Mohammad Jouki
Keyword(s):  

2015 ◽  
pp. 39-49
Author(s):  
Dede Sukandar ◽  
Sandra Hermanto ◽  
Eka Rizki Amelia ◽  
Chitta Putri Novianti

Characterization of antioxidant compounds from the seeds of basil (Ocimum basilicum L.) has been done. Extraction is done by maceration method using ethanol solvent, fractionation by TLC and column chromatography, antioxidants test using DPPH method, and characterization of antioxidant compound using GCMS. Ethanol extract and results of fractionation ethanol extract of basil seeds using n-hexane, ethyl acetate, n-butanol and methanol-water extracts show that n-butanol extract has the highest antioxidant activity with IC50 values ​​of 41.90 ppm. Results of column chromatography n-butanol extract using n-hexane : ethyl acetate (1:9) as mobile phase yielded 5 fractions with fraction 4 (F4 isolate) has dominant stain of active antioxidants after being sprayed DPPH reagent, it had IC50 values ​​of 39,70 ppm and total phenolic content of 0,003 mg/g. Isolate F4 suspected contains two active compounds as antioxidant which is terpenoid and phenolic compound group, namely squalene and 1,4-di-tert-buthyl-phenol identified by GCMS.DOI :http://dx.doi.org/10.15408/jkv.v0i0.3598


2018 ◽  
Vol 32 (8) ◽  
pp. 1011-1023 ◽  
Author(s):  
Ji-Ung Park ◽  
Seol-Ha Jeong ◽  
Eun-Ho Song ◽  
Juha Song ◽  
Hyoun-Ee Kim ◽  
...  

In this study, we evaluated the surface characterization of a novel chitosan–silica hybridized membrane and highlighted the substantial role of silica in the wound environment. The chemical coupling of chitosan and silica resulted in a more condensed network compared with pure chitosan, which was eventually able to stably maintain its framework, particularly in the wet state. In addition, we closely observed the wound-healing process along with the surface interaction between chitosan–silica and the wound site using large-surface-area wounds in a porcine model. Our evidence indicates that chitosan–silica exerts a synergetic effect of both materials to promote a remarkable wound-healing process. In particular, the silica in chitosan–silica accelerated wound closure including wound contraction, and re-epithelialization via enhancement of cell recruitment, epidermal maturity, neovascularization, and granulation tissue formation compared with pure chitosan and other commercial dressing materials. This advanced wound dressing material may lead to effective treatment for problematic cutaneous wounds and can be further applied for human skin regeneration.


Catalysts ◽  
2018 ◽  
Vol 8 (11) ◽  
pp. 511 ◽  
Author(s):  
Sara Arana-Peña ◽  
Yuliya Lokha ◽  
Roberto Fernández-Lafuente

Eversa is an enzyme recently launched by Novozymes to be used in a free form as biocatalyst in biodiesel production. This paper shows for first time the immobilization of Eversa (a commercial lipase) on octyl and aminated agarose beads and the comparison of the enzyme properties to those of the most used lipase, the isoform B from Candida antarctica (CALB) immobilized on octyl agarose beads. Immobilization on octyl and aminated supports of Eversa has not had a significant effect on enzyme activity versus p-nitrophenyl butyrate (pNPB) under standard conditions (pH 7), but immobilization on octyl agarose beads greatly enhanced the stability of the enzyme under all studied conditions, much more than immobilization on aminated support. Octyl-Eversa was much more stable than octyl-CALB at pH 9, but it was less stable at pH 5. In the presence of 90% acetonitrile or dioxane, octyl-Eversa maintained the activity (even increased the activity) after 45 days of incubation in a similar way to octyl-CALB, but in 90% of methanol, results are much worse, and octyl-CALB became much more stable than Eversa. Coating with PEI has not a clear effect on octyl-Eversa stability, although it affected enzyme specificity and activity response to the changes in the pH. Eversa immobilized octyl supports was more active than CALB versus triacetin or pNPB, but much less active versus methyl mandelate esters. On the other hand, Eversa specificity and response to changes in the medium were greatly modulated by the immobilization protocol or by the coating of the immobilized enzyme with PEI. Thus, Eversa may be a promising biocatalyst for many processes different to the biodiesel production and its properties may be greatly improved following a suitable immobilization protocol, and in some cases is more stable and active than CALB.


2007 ◽  
Vol 131 (2) ◽  
pp. S78-S79 ◽  
Author(s):  
Masoud Fallahpour ◽  
Saeed Mirdamadi ◽  
Mohammad Reza Bakhtiari

2005 ◽  
Vol 44 (1) ◽  
pp. 236-240 ◽  
Author(s):  
Koei Kawakami ◽  
Yoshihide Sera ◽  
Shinji Sakai ◽  
Tsutomu Ono ◽  
Hiroyuki Ijima

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