Al-Ghazzewi FH, Khanna S, Tester RF, Piggott J (2007) The potential use of hydrolysed konjac
glucomannan as a prebiotic. J Sci Food Agric 87(9):1758–1766
Alonso DM, Wettstein SG, Dumesic JA (2012) Bimetallic catalysts for upgrading of biomass to
fuels and chemicals. Chem Soc Rev 41(24):8075–8098
Alvaro A, Sola R, Rosales R, Ribalta J, Anguera A, Masana L, Vallvé JC (2008) Gene expression
analysis of a human enterocyte cell line reveals downregulation of cholesterol biosynthesis in
response to short-chain fatty acids. IUBMB Life 60(11):757–764
Annamalai N, Rajeswari MV, Elayaraja S, Balasubramanian T (2013) Thermostable, haloalkaline
cellulase from Bacillus halodurans CAS 1 by conversion of lignocellulosic wastes. Carbohydr
Polym 94(1):409–415
Baker JO, McCarley JR, Lovett R, Yu CH, Adney WS, Rignall TR et al (2005) Catalytically
enhanced endocellulase Cel5A from Acidothermus cellulolyticus. Appl Biochem Biotechnol
121(1-3):129–148
Bernardez TD, Lyford K, Hogsett DA, Lynd LR (1993) Adsorption of Clostridium thermocellum
cellulases onto pretreated mixed hardwood, Avicel, and lignin. Biotechnol Bioeng 42
(7):899–907
Bhanja T, Kumari A, Banerjee R (2009) Enrichment of phenolics and free radical scavenging
property of wheat koji prepared with two filamentous fungi. Bioresour Technol 100
(11):2861–2866
Bhat MK (2000) Cellulases and related enzymes in biotechnology. Biotechnol Adv 18(5):355–383
Brodeur G, Yau E, Badal K, Collier J, Ramachandran KB, Ramakrishnan S (2011) Chemical and
physicochemical pretreatment of lignocellulosic biomass: a review. Enzyme Res:1–17
Canales AM, Garza R, Sierra JA, Arnold R (1988) The application of a beta-glucanase with
additional side activities in brewing. Tech Quar Mast Brewers Assoc Am (USA) 25:27–31
Chalal D (1985) Solid state fermentation with Trichoderma reesei for cellulase production. Appl
Environ Microbiol 49(1):205–210
Chen HL, Fan YH, Chen ME, Chan Y (2005) Unhydrolyzed and hydrolyzed konjac glucomannans
modulated cecal and fecal microflora in Balb/c mice. Nutrition 21(10):1059–1064
Connolly ML, Lovegrove JA, Tuohy KM (2010) Konjac glucomannan hydrolysate beneficially
modulates bacterial composition and activity within the faecal microbiota. J Funct Foods 2
(3):219–224
Cortez JM, Ellis J, Bishop DP (2002) Using cellulases to improve the dimensional stability of
cellulosic fabrics. Text Res J 72(8):673–680
Cowan WD (1996) Animal feed. In: Godfrey T, West S (eds) Industrial enzymology, 2nd edn.
Macmillan Press, London, pp 360–371
De Carvalho LMJ, De Castro IM, Da Silva CAB (2008) A study of retention of sugars in the process
of clarification of pineapple juice (Ananas comosus, L. Merril) by micro-and ultra-filtration. J
Food Eng 87(4):447–454
De Faveri D, Aliakbarian B, Avogadro M, Perego P, Converti A (2008) Improvement of olive oil
phenolics content by means of enzyme formulations: Effect of different enzyme activities and
levels. Biochem Eng J 41(2):149–156
Desvaux M (2005) Clostridium cellulolyticum: model organism of mesophilic cellulolytic
clostridia. FEMS Microbiol Rev 29(4):741–764
Dhillon GS, Kaur S, Brar SK, Verma M (2012) Potential of apple pomace as a solid substrate for
fungal cellulase and hemicellulase bioproduction through solid-state fermentation. Ind Crop
Prod 38:6–13
Dienes D, Egyhazi A, Reczey K (2004) Treatment of recycled fiber with Trichoderma cellulases.
Ind Crop Prod 20(1):11–21
Do YK, Kim JM, Chang SM, Hwang JH, Kim WS (2009) Enhancement of polyphenol
bio-activities by enzyme reaction. J Mol Catal B Enzym 56(2-3):173–178
Dogaris I, Karapati S, Mamma D, Kalogeris E, Kekos D (2009) Hydrothermal processing and
enzymatic hydrolysis of sorghum bagasse for fermentable carbohydrates production. Bioresour
Technol 100(24):6543–6549
10 Efficiency Analysis of Crude Versus Pure Cellulase in Industry
295
glucomannan as a prebiotic. J Sci Food Agric 87(9):1758–1766
Alonso DM, Wettstein SG, Dumesic JA (2012) Bimetallic catalysts for upgrading of biomass to
fuels and chemicals. Chem Soc Rev 41(24):8075–8098
Alvaro A, Sola R, Rosales R, Ribalta J, Anguera A, Masana L, Vallvé JC (2008) Gene expression
analysis of a human enterocyte cell line reveals downregulation of cholesterol biosynthesis in
response to short-chain fatty acids. IUBMB Life 60(11):757–764
Annamalai N, Rajeswari MV, Elayaraja S, Balasubramanian T (2013) Thermostable, haloalkaline
cellulase from Bacillus halodurans CAS 1 by conversion of lignocellulosic wastes. Carbohydr
Polym 94(1):409–415
Baker JO, McCarley JR, Lovett R, Yu CH, Adney WS, Rignall TR et al (2005) Catalytically
enhanced endocellulase Cel5A from Acidothermus cellulolyticus. Appl Biochem Biotechnol
121(1-3):129–148
Bernardez TD, Lyford K, Hogsett DA, Lynd LR (1993) Adsorption of Clostridium thermocellum
cellulases onto pretreated mixed hardwood, Avicel, and lignin. Biotechnol Bioeng 42
(7):899–907
Bhanja T, Kumari A, Banerjee R (2009) Enrichment of phenolics and free radical scavenging
property of wheat koji prepared with two filamentous fungi. Bioresour Technol 100
(11):2861–2866
Bhat MK (2000) Cellulases and related enzymes in biotechnology. Biotechnol Adv 18(5):355–383
Brodeur G, Yau E, Badal K, Collier J, Ramachandran KB, Ramakrishnan S (2011) Chemical and
physicochemical pretreatment of lignocellulosic biomass: a review. Enzyme Res:1–17
Canales AM, Garza R, Sierra JA, Arnold R (1988) The application of a beta-glucanase with
additional side activities in brewing. Tech Quar Mast Brewers Assoc Am (USA) 25:27–31
Chalal D (1985) Solid state fermentation with Trichoderma reesei for cellulase production. Appl
Environ Microbiol 49(1):205–210
Chen HL, Fan YH, Chen ME, Chan Y (2005) Unhydrolyzed and hydrolyzed konjac glucomannans
modulated cecal and fecal microflora in Balb/c mice. Nutrition 21(10):1059–1064
Connolly ML, Lovegrove JA, Tuohy KM (2010) Konjac glucomannan hydrolysate beneficially
modulates bacterial composition and activity within the faecal microbiota. J Funct Foods 2
(3):219–224
Cortez JM, Ellis J, Bishop DP (2002) Using cellulases to improve the dimensional stability of
cellulosic fabrics. Text Res J 72(8):673–680
Cowan WD (1996) Animal feed. In: Godfrey T, West S (eds) Industrial enzymology, 2nd edn.
Macmillan Press, London, pp 360–371
De Carvalho LMJ, De Castro IM, Da Silva CAB (2008) A study of retention of sugars in the process
of clarification of pineapple juice (Ananas comosus, L. Merril) by micro-and ultra-filtration. J
Food Eng 87(4):447–454
De Faveri D, Aliakbarian B, Avogadro M, Perego P, Converti A (2008) Improvement of olive oil
phenolics content by means of enzyme formulations: Effect of different enzyme activities and
levels. Biochem Eng J 41(2):149–156
Desvaux M (2005) Clostridium cellulolyticum: model organism of mesophilic cellulolytic
clostridia. FEMS Microbiol Rev 29(4):741–764
Dhillon GS, Kaur S, Brar SK, Verma M (2012) Potential of apple pomace as a solid substrate for
fungal cellulase and hemicellulase bioproduction through solid-state fermentation. Ind Crop
Prod 38:6–13
Dienes D, Egyhazi A, Reczey K (2004) Treatment of recycled fiber with Trichoderma cellulases.
Ind Crop Prod 20(1):11–21
Do YK, Kim JM, Chang SM, Hwang JH, Kim WS (2009) Enhancement of polyphenol
bio-activities by enzyme reaction. J Mol Catal B Enzym 56(2-3):173–178
Dogaris I, Karapati S, Mamma D, Kalogeris E, Kekos D (2009) Hydrothermal processing and
enzymatic hydrolysis of sorghum bagasse for fermentable carbohydrates production. Bioresour
Technol 100(24):6543–6549
10 Efficiency Analysis of Crude Versus Pure Cellulase in Industry
295
