نتایج جستجو برای: enzymatic degradation

تعداد نتایج: 201826  

Journal: :Analytical chemistry 2013
Aziz Fennouri Régis Daniel Manuela Pastoriza-Gallego Loïc Auvray Juan Pelta Laurent Bacri

The enzymatic degradation of long polysaccharide chains is monitored by nanopore detection. It follows a Michaelis-Menten mechanism. We measure the corresponding kinetic constants at the single molecule level. The simulation results of the degradation process allowed one to account for the oligosaccharide size distribution detected by a nanopore.

2015
Nuriye Nuray Ulusu

Life as we know it heavily relies on biological catalysis, in fact, in a very nonromantic version of it, life could be considered as a series of chemical reactions, regulated by the guarding principles of thermodynamics. In ancient times, a beating heart was a good sign of vitality, however, to me, it is actually the presence of active enzymes that counts… Though we do not usually pay attention...

Journal: :international journal of nano dimension 0
z. abbasi young researchers and elite club, ilam branch, islamic azad university, ilam, iran. e. rezaee nezhad department of chemistry, payame noor university, po box 19395-4697 tehran, iran. v. moradi young researchers and elite club, ilam branch, islamic azad university, ilam, iran. f. moradi young researchers and elite club, ilam branch, islamic azad university, ilam, iran. o. ahmadi young researchers and elite club, ilam branch, islamic azad university, ilam, iran. a. homafar department of chemistry, eyvan-e-gharb branch, islamic azad university, eyvan, iran.

the aims of the study were to investigate the effect of poly(ε -caprolactone) (pcl) and nano- sio2 within the thermoplastic starch (tps) blends on the rate and extent of starch enzymatic hydrolysis using enzymes α-amylase and amyloglucosidase. the results of this study have revealed that blends with nano-sio2 content at 6 wt% exhibited a significantly reduced rate and extent of starch hydrolysi...

A. Homafar E. Rezaee Nezhad F. Moradi O. Ahmadi V. Moradi Z. Abbasi,

The aims of the study were to investigate the effect of poly(ε -caprolactone) (PCL) and nano- SiO2 within the thermoplastic starch (TPS) blends on the rate and extent of starch enzymatic hydrolysis using enzymes α-amylase and amyloglucosidase. The results of this study have revealed that blends with nano-SiO2 content at 6 wt% exhibited a significantly reduced rate and exte...

A. Homafar E. Rezaee Nezhad F. Moradi O. Ahmadi V. Moradi Z. Abbasi,

The aims of the study were to investigate the effect of poly(ε -caprolactone) (PCL) and nano- SiO2 within the thermoplastic starch (TPS) blends on the rate and extent of starch enzymatic hydrolysis using enzymes α-amylase and amyloglucosidase. The results of this study have revealed that blends with nano-SiO2 content at 6 wt% exhibited a significantly reduced rate and exte...

Journal: :Journal of Pharmaceutical Sciences 2021

Degradation of Polysorbate 20 (PS20), a commonly used surfactant in drug product (DP) formulations, is phenomenon increasing concern to the biopharmaceutical industry. One most prevalent modes PS20 degradation enzymatic hydrolysis resulting from co-purified hydrolases that make their way into biologic DP formulations at trace levels. Enzymatic results generation free fatty acids (FFAs) have lim...

2010
R. SATHISHKUMAR A. ANNAMALAI

The objective of this study was to characterize the non-enzymatice and enzymatic antioxidants of E. littorale Blume grown under wild condition. Aerial and sub-aerial parts of the plants exposed to different heat stress was analyzed for the non enzymatic antioxidants such as Tocopherol, Phenols, DPPH, FRAP and enzymatic antioxidants such as Polyphenol oxidase, Peroxidase, Catalase, Super Oxide D...

2018
Demi T Djajadi Mads M Jensen Marlene Oliveira Anders Jensen Lisbeth G Thygesen Manuel Pinelo Marianne Glasius Henning Jørgensen Anne S Meyer

Background Lignin is known to hinder efficient enzymatic conversion of lignocellulose in biorefining processes. In particular, nonproductive adsorption of cellulases onto lignin is considered a key mechanism to explain how lignin retards enzymatic cellulose conversion in extended reactions. Results Lignin-rich residues (LRRs) were prepared via extensive enzymatic cellulose degradation of corn...

2017
Rahul Datta Aditi Kelkar Divyashri Baraniya Ali Molaei Amitava Moulick Ram Swaroop Meena Pavel Formanek

Lignin is a major component of soil organic matter and also a rich source of carbon dioxide in soils. However, because of its complex structure and recalcitrant nature, lignin degradation is a major challenge. Efforts have been made from time to time to understand the lignin polymeric structure better and develop simpler, economical, and bio-friendly methods of degradation. Certain enzymes from...

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