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1.
Braz. j. microbiol ; 49(supl.1): 151-159, 2018. tab, graf
Article in English | LILACS | ID: biblio-974324

ABSTRACT

Abstract To reduce the cost of obtaining bacterial cellulose, acidic by-products of the alcohol and dairy industries were used without any pretreatment or addition of other nitrogen sources. Studies have shown that the greatest accumulation of bacterial cellulose (6.19 g/L) occurs on wheat thin stillage for 3 days of cultivation under dynamic conditions, which is almost 3 times higher than on standard Hestrin and Schramm medium (2.14 g/L). The use of whey as a nutrient medium makes it possible to obtain 5.45 g/L bacterial cellulose under similar conditions of cultivation. It is established that the pH of the medium during the growth of Gluconacetobacter sucrofermentans B-11267 depends on the feedstock used and its initial value. By culturing the bacterium on thin stillage and whey, there is a decrease in the acidity of the waste. It is shown that the infrared spectra of bacterial cellulose obtained in a variety of environments have a similar character, but we found differences in the micromorphology and crystallinity of the resulting biopolymer.


Subject(s)
Waste Products/analysis , Industrial Microbiology/methods , Cellulose/biosynthesis , Gluconacetobacter/metabolism , Waste Products/economics , Triticum/metabolism , Triticum/microbiology , Industrial Microbiology/economics , Food Industry , Culture Media/economics , Culture Media/metabolism , Gluconacetobacter/growth & development , Ethanol/metabolism
2.
Indian J Exp Biol ; 2015 Mar; 53(3): 131-142
Article in English | IMSEAR | ID: sea-158396

ABSTRACT

Oligosaccharides and dietary fibres are non-digestible food ingredients that preferentially stimulate the growth of prebiotic Bifidobacterium and other lactic acid bacteria in the gastro-intestinal tract. Xylooligosaccharides (XOS) provide a plethora of health benefits and can be incorporated into several functional foods. In the recent times, there has been an over emphasis on the microbial conversion of agroresidues into various value added products. Xylan, the major hemicellulosic component of lignocellulosic materials (LCMs), represents an important structural component of plant biomass in agricultural residues and could be a potent bioresource for XOS. On an industrial scale, XOS can be produced by chemical, enzymatic or chemo-enzymatic hydrolysis of LCMs. Chemical methods generate XOS with a broad degree of polymerization (DP), while enzymatic processes will be beneficial for the manufacture of food grade and pharmaceutically important XOS. Xylooligomers exert several health benefits, and therefore, have been considered to provide relief from several ailments. This review provides a brief on production, purification and structural characterization of XOS and their health benefits.


Subject(s)
Adjuvants, Immunologic/economics , Adjuvants, Immunologic/isolation & purification , Adjuvants, Immunologic/pharmacology , Adjuvants, Immunologic/therapeutic use , Animals , Anticarcinogenic Agents/economics , Anticarcinogenic Agents/isolation & purification , Anticarcinogenic Agents/pharmacology , Anticarcinogenic Agents/therapeutic use , Antioxidants/economics , Antioxidants/isolation & purification , Antioxidants/pharmacology , Antioxidants/therapeutic use , Biomass , Carbohydrate Sequence , Chromatography/methods , Crops, Agricultural/chemistry , Crops, Agricultural/economics , Dietary Fiber/analysis , Fungal Proteins/metabolism , Gastrointestinal Tract/microbiology , Glucuronates/economics , Glucuronates/isolation & purification , Glucuronates/pharmacology , Glucuronates/therapeutic use , Humans , Hydrolysis , Lignin/analysis , Microbiota/drug effects , Molecular Sequence Data , Molecular Structure , Oligosaccharides/economics , Oligosaccharides/isolation & purification , Oligosaccharides/pharmacology , Oligosaccharides/therapeutic use , Prebiotics/economics , Waste Products/economics , Xylans/chemistry
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