05178nam 2200649za 450 991102045320332120250530134919.09780470999400 (e-book)9780632054756 (hbk.)9781405152686 (pbk.)1-281-31277-097866113127700-470-99941-10-470-99940-3(CKB)1000000000408768(EBL)350974(MiAaPQ)EBC350974(EXLCZ)99100000000040876820010827d2001 uy 0engur|n|nnn|||||txtrdacontentcrdamediacrrdacarrierBrewing yeast and fermentation /Chris Boulton and David QuainOxford Blackwell Science20011 online resource (xii, 644 p.) illDescription based upon print version of record.Includes bibliographical references (p. 586-637) and index.Brewing Yeast and Fermentation; Contents; Preface; Acknowledgements; 1 Beer and brewing; 1.1 Introduction; 1.2 Historical perspective; 1.3 Current developments; 1.4 Legislation; 2 The brewing process; 2.1 Overview; 2.2 Beer types; 2.2.1 Beverages related to beer; 2.2.1.1 Sake; 2.2.1.2 Sorghum beer; 2.3 The brewing process; 2.3.1 Malting; 2.3.2 Adjuncts; 2.3.3 Brewing water; 2.3.4 Hops; 2.3.5 Production of sweet wort; 2.3.6 Wort boiling; 2.3.7 Fermenta n and post-fermentation processes; 2.4 Wort composition; 2.4.1 Carbohydrates; 2.4.2 Nitrogenous components; 2.4.3 Polyphenols; 2.4.4 Lipids2.4.5 Sulphur compounds2.4.6 Minerals; 2.4.7 Miscellaneous; 2.5 High-gravity brewing; 2.6 Glossary of brewing terms; 3 The biochemistry of fermentation; 3.1 Overview; 3.2 Mass balance; 3.3 Assimilation of wort nutrients; 3.3.1 Sugar uptake; 3.3.2 Uptake of wort nitrogenous components; 3.3.3 Uptake of lipids; 3.3.4 Metal ion uptake; 3.4 Carbohydrate dissimilation; 3.4.1 Carbon catabolite repression; 3.4.2 Storage carbohydrates; 3.4.2.1 Glycogen; 3.4.2.2 Trehalose; 3.4.3 Fermentable growth medium induced pathway; 3.5 Requirement for oxygen; 3.5.1 Synthesis of sterols and unsaturated fatty acids3.6 Ethanol tolerance3.6.1 Ethanol formation during fermentation; 3.6.2 Ethanol toxicity; 3.7 Formation of flavour compounds; 3.7.1 Organic and fatty acids; 3.7.2 Higher alcohols; 3.7.3 Esters; 3.7.4 Carbonyls; 3.7.4.1 Vicinal diketones; 3.7.5 Sulphur compounds; 3.7.6 Shock excretion; 4 Brewing yeast; 4.1 Morphology, cytology and cellular function; 4.1.1 Cell morphology; 4.1.1.1 Cell composition; 4.1.2 Cytology; 4.1.2.1 Plasma membrane; 4.1.2.2 Periplasm; 4.1.2.3 Mitochondria; 4.1.2.4 Vacuoles; 4.1.2.5 Other cytoplasmic inclusions; 4.1.3 Intracellular location of enzymes4.2 Taxonomy and differentiation4.2.1 Taxonomy of the Saccharomyces; 4.2.1.1 Identification of yeasts; 4.2.2 Taxonomy of ale and lager yeasts; 4.2.3 Diversity and differences between ale and lager yeasts; 4.2.3.1 Culture collections of brewing yeasts; 4.2.4 Differentiation - an introduction; 4.2.5 `Traditional' methods; 4.2.5.1 Plate tests; 4.2.5.2 Flocculation tests; 4.2.5.3 Fermentation performance; 4.2.5.4 Assimilation/fermentation; 4.2.5.5 Immunology; 4.2.5.6 Other approaches; 4.2.6 `Modern' methods; 4.2.6.1 Genetic fingerprinting - RFLP; 4.2.6.2 Genetic fingerprinting - PCR4.2.6.3 Genetic fingerprinting - karyotyping4.2.6.4 Genetic fingerprinting - AFLP; 4.2.6.5 Pyrolysis mass spectroscopy; 4.2.6.6 Other approaches; 4.3 Genetics - genome, cell cycle and modification; 4.3.1 Introduction; 4.3.1.1 Genetic nomenclature and definitions; 4.3.2 The genome; 4.3.2.1 Yeast genome project; 4.3.2.2 Yeast genome project, human disease and pathogenicity; 4.3.2.3 Yeast genome project and brewing yeast; 4.3.2.4 Chromosome number; 4.3.2.5 Ploidy; 4.3.2.6 Chromosomal instability; 4.3.2.7 Mitochondrial instability; 4.3.3 Cell cycle; 4.3.3.1 Cell division4.3.3.2 Cell division and brewery fermentationThis unique volume provides a definitive overview of modern and traditional brewing fermentation. Written by two experts with unrivalled experience from years with a leading international brewer, coverage includes all aspects of brewing fermentation together with the biochemistry, physiology and genetics of brewers' yeast. Brewing Yeast and Fermentation is unique in that brewing fermentation and yeast biotechnology are covered in detail from a commercial perspective.YeastBrewingLlevatsthubElaboració de cervesathubLlibres electrònicsthubYeast.Brewing.LlevatsElaboració de cervesa663.33663.42663/.42Boulton Chris(Christopher M.)873806Quain David873807MiAaPQMiAaPQMiAaPQBOOK9911020453203321Brewing yeast and fermentation1950671UNINA02948nam2 22005653i 450 URB022330620251003044432.08871250389IT91-8422 20170104d1991 ||||0itac50 baitaitz01i xxxe z01nz01ncRDAcarrierˆ1: ‰Abruzzo-Liguriaa cura di Giovanni Pesiri ... [et al.]coordinamento di Gabriella De Longis CristaldiRomaMinistero per i beni culturali e ambientali, Ufficio centrale per i beni archivistici@1991XX, 280 p., [8] c. di tav.ill.25 cm.Pubblicazioni degli archivi di Stato. Strumenti112001CFI00236822001 Pubblicazioni degli archivi di Stato. Strumenti112001CFI01672002001 Archivi di famiglie e di personemateriali per una guida1Archivi privatiItaliaRepertoriFIRCFIC058603EFAMIGLIEITALIAFONTI ARCHIVISTICHEFIRCFIC058604EArchivi privatiAbruzzoFIRAQ1C072544IFamiglieItaliaStoriaFonti archivisticheFIRLO1C279898IFamiglieItaliaStoriaFonti archivisticheFIRLO1C279898I027.045BIBLIOTECHE, ARCHIVI, CENTRI D'INFORMAZIONE GENERALI. Italia14027.1Biblioteche private e di famiglia.22FamigliaGruppi familiariFamigliaGruppi familiariFamigliaGruppi familiariFamiglieFamigliaFamiglieGruppi familiariFamiglieFamigliaFamiglieGruppi familiariFamiglieFamigliaFamiglieGruppi familiariPesiri, GiovanniCFIV017122De Longis Cristaldi, GabriellaCFIV117149De Longis Cristaldi, GabriellaCFIV117149070ITIT-00000020170104IT-BN0095 IT-SA0060 IT-NA0525 IT-AV0011 IT-NA0043 IT-NA0079 IT-NA0070 IT-CE0072 IT-NA0120 IT-CE0127 IT-NA0075 IT-NA0230 IT-AV0045 IT-NA0095 IT-NA0313 IT-NA0097 https://dgagaeta.cultura.gov.it/public/uploads/documents/Strumenti/54cf6cb31f0b7.pdfNAP SBSAB-CAM $NAP 27COLL. $URB0223306Biblioteca Centralizzata di Ateneov. 1 (Precedente collocazione A 1013) 01POZZO LIB.F. ASSANTE 837 0101 0060027035E VMA (001 v. 1 (Precedente collocazione A 1013)B 2022100720221007 01 27 56 AH AN BN BU CE CR CT GE IR MV SB SE SPAbruzzo-Liguria1561126UNISANNIO05366nam 22013453a 450 991036775700332120250203235429.09783039211531303921153610.3390/books978-3-03921-153-1(CKB)4100000010106147(oapen)https://directory.doabooks.org/handle/20.500.12854/56626(ScCtBLL)95f615b6-8862-45fa-a25e-11c9a21fe073(OCoLC)1163835999(oapen)doab56626(oapen)56626(EXLCZ)99410000001010614720250203i20192019 uu engurmn|---annantxtrdacontentcrdamediacrrdacarrierPolyamine Metabolism in Disease and Polyamine-Targeted TherapiesTracy Murray-StewartMDPI - Multidisciplinary Digital Publishing Institute2019Basel, Switzerland :MDPI,2019.1 electronic resource (240 p.)9783039211524 3039211528 Spermine, spermidine, and putrescine constitute the mammalian polyamines, abundant polycations with essential roles in critical cell functions. As such, intracellular polyamine concentrations are tightly regulated through biosynthesis, catabolism, and transport. The multifaceted effects of polyamine dysregulation have contributed to its role in multiple disease processes but have also implicated it as target for preventive or therapeutic intervention. The correlation between oncogene-mediated elevation of polyamine biosynthesis and cancer is well established, and induced polyamine catabolism contributes to carcinogenesis that is associated with certain forms of chronic infection and/or inflammation. In addition to cancer, polyamines are involved in the pathologies of neurodegenerative diseases, parasitic and infectious diseases, wound healing, ischemia/reperfusion injuries, and certain age-related conditions, as polyamines concentrations are reported to decrease with age. As in cancer, polyamine-based therapies for these conditions are an area of active investigation. With recent advances in immunotherapy, interest has increased regarding polyamine-associated modulation of immune responses as well as potential immunoregulation of polyamine metabolism, the results of which could have relevance to multiple disease processes. The goal of this Special Issue of Medical Sciences is to present the most recent advances in polyamine research as it relates to health, disease, and/or therapy.Biology, life sciencesbicsscprotein synthesis in cancerneuroblastomaepigeneticsDrosophila imaginal discspneumococcal pneumoniatransgenic micespermidine/spermine N1-acetyl transferase?-difluoromethylornithineMYCskeletal muscleprotein expressioncurcumincolorectal cancerautophagyhuman embryonic kidney 293 (HEK293)melanomatumor immunitySnyder-Robinson SyndromeStreptococcus pneumoniaeB-lymphocytesautoimmunityspermine oxidasecell differentiationdiferuloylmethaneimmunityantizymetransgenic mousepolyaminehirsutismchemopreventionCRISPRtransglutaminasepolyamine analogsNF-?Bspermine synthaseatrophyagingoxidative stressmast cellsAfrican sleeping sicknesspancreatic ductal adenocarcinomaeflornithinecarcinogenesisornithine decarboxylasepolyamine transport inhibitorputrescineneutrophilsspermidineuntranslated regionsperminepolyphenolM2 macrophagespolyamine transport systemmetabolismdifluoromethylorthinineDFMOantizyme inhibitorscapsulepolyamine transporteosinophilsMCF-7 cellsdifluoromethylornithinepolyamine metabolismmutant BRAFpolyaminescadaverineproteomicsairway smooth muscle cellsbreast cancerX-linked intellectual disabilitycomplementationT-lymphocytesbis(ethyl)polyamine analogsantizyme 1cancerosteosarcomaBiology, life sciencesStewart Tracy Murray1926059ScCtBLLScCtBLLBOOK9910367757003321Polyamine Metabolism in Disease and Polyamine-Targeted Therapies4673760UNINA