Application of Non-conventional Extraction Methods: Toward a Sustainable and Green Production of Valuable Compounds from Mushrooms

Food Engineering Reviews - Tập 8 Số 2 - Trang 214-234 - 2016
Elena Roselló-Soto1, Oleksii Parniakov2, Qian Fa Deng3, Ankit Patras4, Mohamed Koubàa2, Nabil Grimi2, Nadia Boussetta2, Brijesh K. Tiwari5, Eugène Vorobiev2, Nikolaï Lebovka6, Francisco J. Barba1
1Nutrition and Food Science Area, Faculty of Pharmacy, Universitat de València, Avda. Vicent Andrés Estellés, s/n 46100 Burjassot, València, Spain
2Laboratoire Transformations Intégrées de la Matière Renouvelable (UTC/ESCOM, EA 4297 TIMR), Centre de Recherche de Royallieu, Sorbonne Universités, Université de Technologie de Compiègne, B.P. 20529, 60205, Compiègne Cedex, France
3Wm. Bolthouse Farms, Inc., 7200 East Brundage Ln, Bakersfield, CA, 93307, USA
4Department of Agricultural and Environmental Sciences, College of Agriculture, Human and Natural Sciences, Tennessee State University, 3500 John A Merritt Blvd, Nashville, TN, 37209, USA
5Department of Food Biosciences, Teagasc Food Research Centre, Ashtown, Dublin 15, Ireland
6Institute of Biocolloidal Chemistry (named after F.D. Ovcharenko), NAS of Ukraine, 42, blvr. Vernadskogo, Kiev, 03142, Ukraine

Tóm tắt

Từ khóa


Tài liệu tham khảo

Uddin MN, Yesmin S, Khan MA et al (2011) Production of oyster mushrooms in different seasonal conditions of Bangladesh. J Sci Res 3:161–167

Commission USIT (2010) Mushrooms Publication ITS-07. Control no. 2010002

Barba FJ, Esteve MJ, Frígola A (2014) Bioactive components from leaf vegetable products. Stud Nat Prod Chem 41:321–346

Ajikumar PK, Tyo K, Carlsen S et al (2008) Terpenoids: opportunities for biosynthesis of natural product drugs using engineered microorganisms. Mol Pharm 5:167–190

Furlani RPZ, Godoy HT (2008) Vitamins B1 and B2 contents in cultivated mushrooms. Food Chem 106:816–819

Heleno SA, Barros L, Sousa MJ et al (2010) Tocopherols composition of Portuguese wild mushrooms with antioxidant capacity. Food Chem 119:1443–1450

Mattila P, Konko K, Eurola M et al (2001) Contents of vitamins, mineral elements, and some phenolic compounds in cultivated mushrooms. J Agric Food Chem 49:2343–2348

Tsai S-Y, Tsai H-L, Mau J-L (2008) Non-volatile taste components of Agaricus blazei, Agrocybe cylindracea and Boletus edulis. Food Chem 107:977–983

Mattila P, Salo-Valtonen P, Konko K et al (2002) Basic composition and amino acid contents of mushrooms cultivated in Finland. J Agric Food Chem 50:6419–6422

Dimou DM, Georgala A, Komaitis M, Aggelis G (2002) Mycelial fatty acid composition of Pleurotus spp. and its application in the intrageneric differentiation. Mycol Res 106:925–929

Pedneault K, Angers P, Gosselin A, Tweddell RJ (2006) Fatty acid composition of lipids from mushrooms belonging to the family Boletaceae. Mycol Res 110:1179–1183

Barros L, Baptista P, Correia DM et al (2007) Fatty acid and sugar compositions, and nutritional value of five wild edible mushrooms from Northeast Portugal. Food Chem 105:140–145

Reis FS, Barros L, Martins A, Ferreira ICFR (2012) Chemical composition and nutritional value of the most widely appreciated cultivated mushrooms: an inter-species comparative study. Food Chem Toxicol 50:191–197

Caglarirmak N (2011) Edible mushroom: as alternative food item. In: 7th international conference on mushroom biology and mushroom products, ICMBMP7, pp 548–554

Caglarirmak N (2011) Physical properties, nutrients and estimated volatiles of Agaricus bisporus (white) at two harvests. Ital J Food Sci 23:423–430

Esteve MJ, Farre R, Frigola A, Garcia-Cantabella JM (2001) Simultaneous determination of thiamin and riboflavin in mushrooms by liquid chromatography. J Agric Food Chem 49:1450–1454

Mataix-Verdu J (2003) Tabla de composición de los alimentos. Universidad de Granada, Granada

Caglarirmak N (2007) The nutrients of exotic mushrooms (Lentinula edodes and Pleurotus species) and an estimated approach to the volatile compounds. Food Chem 105:1188–1194

Hirasawa M, Shouji N, Neta T et al (1999) Three kinds of antibacterial substances from Lentinus edodes (Berk.) Sing. (Shiitake, an edible mushroom). Int J Antimicrob Agents 11:151–157

Mondal S, Chakraborty I, Pramanik M et al (2004) Structural studies of water-soluble polysaccharides of an edible mushroom, Termitomyces eurhizus. A reinvestigation. Carbohydr Res 339:1135–1140

Wei S, Van Griensven LJLD (2008) Pro- and antioxidative properties of medicinal mushroom extracts. Int J Med Mushrooms 10:315–324

Hu H, Zhang Z, Lei Z et al (2009) Comparative study of antioxidant activity and antiproliferative effect of hot water and ethanol extracts from the mushroom Inonotus obliquus. J Biosci Bioeng 107:42–48

Zheng W, Zhang M, Zhao Y et al (2011) Analysis of antioxidant metabolites by solvent extraction from sclerotia of Inonotus obliquus (Chaga). Phytochem Anal 22:95–102

Van Griensven LJLD, Shnyreva AV, Song W (2010) Extracts of medicinal mushrooms Agaricus bisporus and Phellinus linteus induce proapoptotic effects in the human leukemia cell line K562. Int J Med Mushrooms 12:167–175

Wang L, Weller CL (2006) Recent advances in extraction of nutraceuticals from plants. Trends Food Sci Technol 17:300–312

Adams DJ (2004) Fungal cell wall chitinases and glucanases. Microbiology 150:2029–2035

Enman J, Rova U, Berglund KA (2007) Quantification of the bioactive compound eritadenine in selected strains of shiitake mushroom (Lentinus edodes). J Agric Food Chem 55:1177–1180

Xu C, Tian Z, Zhang C et al (2014) Optimization of enzyme assisted extraction of polysaccharides from Ganoderma lucidum. Eng Sci 12:17–20

Chen J, Lai P, Shen H et al (2013) Effect of extraction methods on polysaccharide of Clitocybe maxima stipe. Adv J Food Sci Technol 5:370–373

Lebovka NI, Shynkaryk MV, El-Belghiti K et al (2007) Plasmolysis of sugarbeet: pulsed electric fields and thermal treatment. J Food Eng 80:639–644

Vorobiev E, Lebovka N (2010) Enhanced extraction from solid foods and biosuspensions by pulsed electrical energy. Food Eng Rev 2:95–108

Lebovka N, Vorobiev E, Chemat F (2011) Series: contemporary food engineering. CRC Press

Ade-Omowaye BIO, Rastogi NK, Angersbach A, Knorr D (2003) Combined effects of pulsed electric field pre-treatment and partial osmotic dehydration on air drying behaviour of red bell pepper. J Food Eng 60:89–98

Fincan M, DeVito F, Dejmek P (2004) Pulsed electric field treatment for solid–liquid extraction of red beetroot pigment. J Food Eng 64:381–388

Soliva-Fortuny R, Balasa A, Knorr D, Martín-Belloso O (2009) Effects of pulsed electric fields on bioactive compounds in foods: a review. Trends Food Sci Technol 20:544–556

Bluhm H, Sack M (2008) Electrotechnologies for extraction from food plants and biomaterials. Food engineering series. Springer, Berlin, pp 237–269

Boussetta N, Lesaint O, Vorobiev E (2013) A study of mechanisms involved during the extraction of polyphenols from grape seeds by pulsed electrical discharges. Innov Food Sci Emerg Technol 19:124–132

Boussetta N, Vorobiev E (2014) Extraction of valuable biocompounds assisted by high voltage electrical discharges: a review. Comptes Rendus Chim 17:197–203

Luengo E, Álvarez I, Raso J (2013) Improving the pressing extraction of polyphenols of orange peel by pulsed electric fields. Innov Food Sci Emerg Technol 17:79–84

Shynkaryk MV, Lebovka NI, Lanoisellé J-L et al (2009) Electrically-assisted extraction of bio-products using high pressure disruption of yeast cells (Saccharomyces cerevisiae). J Food Eng 92:189–195

Liu D, Lebovka NI, Vorobiev E (2011) Impact of electric pulse treatment on selective extraction of intracellular compounds from Saccharomyces cerevisiae yeasts. Food Bioprocess Technol 6:576–584

Grimi N, Dubois A, Marchal L et al (2014) Selective extraction from microalgae Nannochloropsis sp. using different methods of cell disruption. Bioresour Technol 153:254–259

Tsong TY (1992) Time sequence of molecular events in electroporation. In: Chand DC, Chassy BM, Saunders JA, Sowers AE (eds) Guide electroporation electrofusion. Academic Press, New York, pp 47–62

Kotnik T, Miklavčič D, Slivnik T (1998) Time course of transmembrane voltage induced by time-varying electric fields—a method for theoretical analysis and its application. Bioelectrochem Bioenerg 45:3–16

Kinosita K, Hibino M, Itoh H et al (1992) Events of membrane electroporation visualized on a time scale from microsecond to seconds. In: Chang DC, Chassy BM, Saunders JA, Sowers AE (eds) Guide electroporation electrofusion. Academic Press, New York, pp 29–46

Lebedeva VE (1987) Electric breakdown of bilayer lipid membranes at short times of voltage effect. Biol Membr 4:994–998

Rogov IA, Adamenko VY, Nekrutman SV et al (1981) Electrophysical, optical and acoustical properties of foods. Legkaya i Pishchevaya Promyshlennost, Moscow

DeBruin KA, Krassowska W (1999) Modeling electroporation in a single cell. I. Effects of field strength and rest potential. Biophys J 77:1213–1224

Angersbach A, Heinz V, Knorr D (1999) Electrophysiological model of intact and processed plant tissues: cell disintegration criteria. Biotechnol Prog 15:753–762

Barba FJ, Puértolas E, Brnčić M et al (2015) Emerging extraction. In: Galanakis CM (ed) Food waste recovery: processing technologies and industrial techniques. Academic Press, London, pp 249–272

Puértolas E, Luengo E, Álvarez I, Raso J (2012) Improving mass transfer to soften tissues by pulsed electric fields: fundamentals and applications. Annu Rev Food Sci Technol 3:263–282

Zhang T-H, Wang S-J, Liu D-R et al (2011) Optimization of exopolysaccharide extraction process from Tibetan spiritual mushroom by pulsed electric fields. J Jilin Univ Eng Technol Ed 41:882–886

Li C, Mao X, Xu B (2013) Pulsed electric field extraction enhanced anti-coagulant effect of fungal polysaccharide from Jew’s ear (Auricularia auricula). Phytochem Anal 24:36–40

Parniakov O, Lebovka NI, Van Hecke E, Vorobiev E (2014) Pulsed electric field assisted pressure extraction and solvent extraction from mushroom (Agaricus bisporus). Food Bioprocess Technol 7:174–183

Herrero M, Cifuentes A, Ibañez E (2006) Sub- and supercritical fluid extraction of functional ingredients from different natural sources: plants, food-by-products, algae and microalgae: a review. Food Chem 98:136–148

Roselló-Soto E, Galanakis CM, Brnčić M et al (2015) Clean recovery of antioxidant compounds from plant foods, by-products and algae assisted by ultrasounds processing. Modeling approaches to optimize processing conditions. Trends Food Sci Technol 42:134–149

Soria AC, Villamiel M (2010) Effect of ultrasound on the technological properties and bioactivity of food: a review. Trends Food Sci Technol 21:323–331

Deng Q, Zinoviadou KG, Galanakis CM et al (2014) The effects of conventional and non-conventional processing on glucosinolates and its derived forms, isothiocyanates: extraction, degradation, and applications. Food Eng Rev 7:357–381

Barba FJ, Grimi N, Vorobiev E (2014) New approaches for the use of non-conventional cell disruption technologies to extract potential food additives and nutraceuticals from microalgae. Food Eng Rev 7:45–62

Zheng Y, Li Y, Wang W-D (2014) Optimization of ultrasonic-assisted extraction and in vitro antioxidant activities of polysaccharides from Trametes orientalis. Carbohydr Polym 111:315–323

You Q, Yin X, Ji C (2014) Pulsed counter-current ultrasound-assisted extraction and characterization of polysaccharides from Boletus edulis. Carbohydr Polym 101:379–385

Cheung Y-C, Siu K-C, Wu J-Y (2013) Kinetic models for ultrasound-assisted extraction of water-soluble components and polysaccharides from medicinal fungi. Food Bioprocess Technol 6:2659–2665

Cheung Y-C, Wu J-Y (2013) Kinetic models and process parameters for ultrasound-assisted extraction of water-soluble components and polysaccharides from a medicinal fungus. Biochem Eng J 79:214–220

Wang T, Liang H, Yuan Q (2011) Optimization of ultrasonic-stimulated solvent extraction of sinigrin from Indian mustard seed (Brassica Juncea L.) using response surface methodology. Phytochem Anal 22:205–213

Ma J, Qiao Z, Xiang X (2011) Optimisation of extraction procedure for black fungus polysaccharides and effect of the polysaccharides on blood lipid and myocardium antioxidant enzymes activities. Carbohydr Polym 84:1061–1068

Tian Y, Zeng H, Xu Z et al (2012) Ultrasonic-assisted extraction and antioxidant activity of polysaccharides recovered from white button mushroom (Agaricus bisporus). Carbohydr Polym 88:522–529

Zou Y, Xie C, Fan G et al (2010) Optimization of ultrasound-assisted extraction of melanin from Auricularia auricula fruit bodies. Innov Food Sci Emerg Technol 11:611–615

Petrović J, Papandreou M, Glamočlija J et al (2014) Different extraction methodologies and their influence on the bioactivity of the wild edible mushroom Laetiporus sulphureus (Bull.) Murrill. Food Funct 5:2948–2960

Lebovka NI, Vorobiev E, Chémat F (2012) Enhancing extraction processes in the food industry. CRC Press, Boca Raton

Kingston HM, Haswell SJ (1997) Microwave-enhanced chemistry: fundamentals, sample preparation, and applications. American Chemical Society, Washington

Proctor A (2010) Alternatives to conventional food processing. Springer, New York

Chan C-H, Yusoff R, Ngoh G-C, Kung FWL (2011) Microwave-assisted extractions of active ingredients from plants. J Chromatogr A 1218:6213–6225

Mandal V, Yogesh-Mohan SH (2007) Microwave assisted extraction: an innovative and promising extraction tool for medicinal plant research. Pharmacogn Rev 1:7–18

Ma Y-A, Cheng Y-M, Huang J-W et al (2014) Effects of ultrasonic and microwave pretreatments on lipid extraction of microalgae. Bioprocess Biosyst Eng 37:1543–1549

Özyürek M, Bener M, Güçlü K, Apak R (2014) Antioxidant/antiradical properties of microwave-assisted extracts of three wild edible mushrooms. Food Chem 157:323–331

Young JC (1995) Microwave-assisted extraction of the fungal metabolite ergosterol and total fatty acids. J Agric Food Chem 43:2904–2910

Zhang Z, Lv G, Pan H et al (2011) Optimization of the microwave-assisted extraction process for polysaccharides in himematsutake (Agaricus blazei Murrill) and evaluation of their antioxidant activities. Food Sci Technol Res 17:461–470

Song J-F, Li D-J, Liu C-Q (2009) Response surface analysis of microwave-assisted extraction of polysaccharides from cultured Cordyceps militaris. J Chem Technol Biotechnol 84:1669–1673

Ru QM, Zhang LR, Chen JD et al (2009) Microwave-assisted extraction and identification of polysaccharide from Lycoris aurea. Chem Nat Compd 45:474–477

Dong J-Z, Wang Z-C, Wang Y (2011) Rapid extraction of polysaccharides from fruits of Lycium barbarum L. J Food Biochem 35:1047–1057

Huang S-Q, Ning Z-X (2010) Extraction of polysaccharide from Ganoderma lucidum and its immune enhancement activity. Int J Biol Macromol 47:336–341

Chen Y, Gu X, Huang S-Q et al (2010) Optimization of ultrasonic/microwave assisted extraction (UMAE) of polysaccharides from Inonotus obliquus and evaluation of its anti-tumor activities. Int J Biol Macromol 46:429–435

Wang H, Zhao Q, Song W et al (2011) High-throughput dynamic microwave-assisted extraction on-line coupled with solid-phase extraction for analysis of nicotine in mushroom. Talanta 85:743–748

Dörnte B, Kües U (2013) Fast microwave-based DNA extraction from vegetative Mycelium and fruiting body tissues of Agaricomycetes for PCR amplification. Curr Trends Biotechnol Pharm 7:825–836

Galanakis CM, Barba FJ, Prasad KN (2015) Cost and safety issues of emerging technologies against conventional techniques. In: Galanakis CM (ed) Food waste recovery: processing technology and industrial techniques, 1st edn. Elsevier–Academic Press, London, pp 323–338

Golmakani M-T, Rezaei K (2008) Comparison of microwave-assisted hydrodistillation with the traditional hydrodistillation method in the extraction of essential oils from Thymus vulgaris L. Food Chem 109:925–930

Luque De Castro MD, Jiménez-Carmona MM, Fernández-Pérez V (1999) Towards more rational techniques for the isolation of valuable essential oils from plants. TrAC Trends Anal Chem 18:708–716

Smith RM (2006) Superheated water: the ultimate green solvent for separation science. Anal Bioanal Chem 385:419–421

Askin R, Sasaki M, Goto M (2010) Recovery of water-soluble compounds from Ganoderma lucidum by hydrothermal treatment. Food Bioprod Process 88:291–297

Jo E-K, Heo D-J, Kim J-H et al (2013) The effects of subcritical water treatment on antioxidant activity of golden oyster mushroom. Food Bioprocess Technol 6:2555–2561

Seo H-K, Lee S-C (2010) Antioxidant activity of subcritical water extracts from chaga mushroom (Inonotus obliquus). Sep Sci Technol 45:198–203

Yang L, Qu H, Mao G et al (2013) Optimization of subcritical water extraction of polysaccharides from Grifola frondosa using response surface methodology. Pharmacogn Mag 9:120–129

Matsunaga Y, Wahyudiono Machmudah S et al (2014) Hot compressed water extraction of polysaccharides from Ganoderma lucidum using a semibatch reactor. Asia-Pac J Chem Eng 9:125–133

Ozel MZ, Kaymaz H (2004) Superheated water extraction, steam distillation and Soxhlet extraction of essential oils of Origanum onites. Anal Bioanal Chem 379:1127–1133

Lo TCT, Hsin HT, Ai YW, Chang CA (2007) Pressurized water extraction of polysaccharides as secondary metabolites from Lentinula edodes. J Agric Food Chem 55:4196–4201

Vidovic S, Mujic I, Zekovic Z et al (2011) Extraction of fatty acids from Boletus edulis by subcritical and supercritical carbon dioxide. JAOCS J Am Oil Chem Soc 88:1189–1196

Goto M, Sato M, Hirose T (1993) Extraction of peppermint oil by supercritical carbon dioxide. J Chem Eng Jpn 26:401–407

Mhemdi H, Rodier E, Kechaou N, Fages J (2011) A supercritical tuneable process for the selective extraction of fats and essential oil from coriander seeds. J Food Eng 105:609–616

Abdullah MI, Young JC, Games DE (1994) Supercritical fluid extraction of carboxylic and fatty acids from Agaricus spp. mushrooms. J Agric Food Chem 42:718–722

Kitzberger CSG, Smânia A Jr, Pedrosa RC, Ferreira SRS (2007) Antioxidant and antimicrobial activities of shiitake (Lentinula edodes) extracts obtained by organic solvents and supercritical fluids. J Food Eng 80:631–638

Mazzutti S, Ferreira SRS, Riehl CAS et al (2012) Supercritical fluid extraction of Agaricus brasiliensis: antioxidant and antimicrobial activities. J Supercrit Fluids 70:48–56

Rayner CM (2007) The potential of carbon dioxide in synthetic organic chemistry. Org Process Res Dev 11:121–132

Savage PE, Gopalan S, Mizan TI et al (1995) Reactions at supercritical conditions: applications and fundamentals. AIChE J 41:1723–1778

Sasaki M, Fang Z, Fukushima Y et al (2000) Dissolution and hydrolysis of cellulose in subcritical and supercritical water. Ind Eng Chem Res 39:2883–2890

Abeln J, Kluth M, Petrich G, Schmieder H (2001) Supercritical water oxidation (SCWO): a process for the treatment of industrial waste effluents. High Press Res 20:537–547

Hunter SE, Savage PE (2008) Quantifying rate enhancements for acid catalysis in CO2-enriched high-temperature water. AIChE J 54:516–528

Liotta CL, Hallett JP, Pollet P, Eckert CA (2007) Reactions in nearcritical water. In: Lindström U (ed) Organic reactions in water. Blackwell, Oxford, pp 256–300

Eckert C, Liotta C, Ragauskas A et al (2007) Tunable solvents for fine chemicals from the biorefinery. Green Chem 9:545–548

Duan L (2005) Extraction of silymarins from milk thistle, Silybum marianum, using hot water as solvent. University of Arkansas, USA

Yang Y, Tang M, Dong W (2010) Extraction method of lentinan, eritadenine and mushroom dietary fiber. Patent CN102199223A

Zhuang C, Kawagishi H, Preuss HG (2007) A glycoprotein with antidiabetic, antihypertensive, antiobesity and antihyperlipidemic effects from Grifola frondosa, and a method for preparing same. Patent CA2455655C

Lee I (2011) Extract from Agaricus blazei Murill capable of suppressing breast cancer. US8034386 B2

Zhang Y, Jie J, Zhang M, Ma G (2013) Preparation method for Portobello mushroom polysaccharide. CN103524636A

Earle M, Gilea M Lentinan extraction process from mushrooms using ionic liquid. WO2013140185A1

Liu X, Huang XN, Chung PCK (2002) Method for extracting oleaginous substances from germination-activated Ganoderma lucidum spores. US6440420B1

MGAP (2010) The mushroom good agricultural practices. http://www.ams.usda.gov/AMSv1.0/getfile?dDocName=STELPRDC5095445

Starling S (2008) Mushroom extract seeks Novel Foods approval. Nutraingredients, July 7, 2008. http://www.nutraingredients.com/Regulation-Policy/Mushroom-extract-seeks-Novel-Foods-approval-again . Accessed Oct 6, 2015