A. Schuster, Wie hygienisch und sinnvoll ist Holz in Patientenzimmern? Krankenhaushygiene Infektionsverhütung, vol.28, p.131, 2006.

F. Aviat, C. Gerhards, J. Rodriguez-jerez, V. Michel, I. L. Bayon et al., Microbial Safety of Wood in Contact with Food: A Review, Comprehensive Reviews in Food Science and Food Safety, vol.15, pp.491-505, 2016.

,

R. Ismail, F. Aviat, P. Gay-perret, I. Le-bayon, M. Federighi et al., An Assessment of L. monocytogenes Transfer from Wooden Ripening Shelves to Cheeses: Comparison with Glass and Plastic Surfaces, Food Control, vol.73, pp.273-280, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01604658

C. M. Laireiter, T. Schnabel, A. Köck, P. Stalzer, A. Petutschnigg et al., Active Anti-Microbial Effects of Larch and Pine Wood on Four Bacterial Strains, BioResources, vol.9, pp.273-281, 2013.

,

M. Montibus, R. Ismaïl, V. Michel, M. Federighi, F. Aviat et al., Assessment of Penicillium expansum and Escherichia coli Transfer from Poplar Crates to Apples, Food Control, vol.60, pp.95-102, 2016.

,

H. Pailhoriès, M. T. Munir, F. Aviat, M. Federighi, C. Belloncle et al., Oak in Hospitals, the Worst Enemy of Staphylococcus aureus?, Infection Control & Hospital Epidemiology, vol.38, pp.382-384, 2017.

,

M. T. Munir,

A. Tiwari, D. P. Patnayak, Y. Chander, M. Parsad, and S. M. Goyal, Survival of Two Avian Respiratory Viruses on Porous and Nonporous Surfaces, Avian Diseases, vol.50, pp.284-287, 2006.

M. D. Burnard and A. Kutnar, Wood and Human Stress in the Built Indoor Environment: A Review, Wood Science and Technology, vol.49, pp.969-986, 2015.

,

M. L. Demattè, G. M. Zucco, S. Roncato, P. Gatto, E. Paulon et al., New Insights into the Psychological Dimension of Wood-Human Interaction, European Journal of Wood and Wood Products, vol.76, pp.1093-1100, 2018.

,

A. Q. Nyrud and T. Bringslimark, Is Interior Wood Use Psychologically Beneficial? A Review of Psychological Responses toward Wood, Wood and Fiber Science, vol.42, pp.202-218, 2010.

G. Beyer, S. Arason, and B. Gudbjornsdottir, Food-Hygienic Properties of Wood-Field Studies on Wooden Pallets and Wood in Construction. Icelandic Fisheries Laboratories. Nordic Industrial Fund, 2002.

J. Dutkiewicz, W. G. Sorenson, D. M. Lewis, and S. A. Olenchock, Levels of Bacteria, Fungi and Endotoxin in Stored Timber, International Biodeterioration & Biodegradation, vol.30, pp.29-46, 1992.

B. J. Cosenza, M. Mccreary, J. D. Buck, and A. L. Shigo, Bacteria Associated with Discolored and Decayed Tissues in Beech, Birch, and Maple, Phytopathology, vol.60, p.1547, 1970.

M. T. Munir, A. R. Munir, M. Hasan, and M. Abubakar, Epidemiology and Management Strategies of Johne's Disease in Endemic Situations, Research Journal for Veterinary Practitioners, vol.2, pp.84-90, 2014.

,

S. R. Johnston, L. Boddy, and A. J. Weightman, Bacteria in Decomposing Wood and Their Interactions with Wood-Decay Fungi, FEMS Microbiology Ecology, vol.92, pp.1-12, 2016.

P. Alpert, Constraints of Tolerance: Why Are Desiccation-Tolerant Organisms So Small or Rare?, Journal of Experimental Biology, vol.209, pp.1575-1584, 2006.

,

A. Milling, R. Kehr, A. Wulf, and K. Smalla, Survival of Bacteria on Wood and Plastic Particles: Dependence on Wood Species and Environmental Conditions, 2005.

, Holzforschung, vol.59, pp.72-81

A. K. Fahimipour, S. B. Mamaar, A. G. Mcfarland, R. A. Blaustein, J. Chen et al., Antimicrobial Chemicals Associate with Microbial Function and Antibiotic Resistance Indoors. mSystems, vol.3, pp.200-218, 2018.

,

T. Obe, R. Nannapaneni, C. S. Sharma, and A. Kiess, Homologous Stress Adaptation, Antibiotic Resistance, and Biofilm Forming Ability of Salmonella Enterica Serovar Heidelberg ATCC8326 on Different Food-Contact Surfaces Following Exposure to Sublethal Chlorine Concentrations, Poultry Science, vol.97, pp.951-961, 2018.

A. P. Koch, C. J. Kofod, D. Konova, K. E. Kvist, and B. Lindergaard, Plastic and Steel-Comparason of Hygenic Properties. The Danish Technological Institute, 2002.

S. H. Abrishami, B. D. Tall, T. J. Bruursema, P. S. Epstein, and D. B. Shah, Bacterial Adherence and Viability on Cutting Board Surfaces, Journal of Food Safety, vol.14, pp.153-172, 1994.

M. Plötze and P. Niemz, Porosity and Pore Size Distribution of Different Wood Types as Determined by Mercury Intrusion Porosimetry, European Journal of Wood and Wood Products, vol.69, pp.649-657, 2011.

,

R. J. Gilbert and H. M. Watson, Some Laboratory Experiments on Various Meat Preparation Surfaces with Regard to Surface Contamination and Cleaning, International Journal of Food Science & Technology, vol.6, pp.163-170, 1971.

,

R. Ismaïl, I. L. Bayon, V. Michel, M. Jequel, M. Kutnik et al., Comparative Study of Three Methods for Recovering Microorganisms from Wooden Surfaces in the Food Industry, Food Analytical Methods, vol.8, pp.1238-1247, 2015.

,

V. M. Soares, J. G. Pereira, C. Viana, T. B. Izidoro, L. Bersot et al., Transfer of Salmonella Enteritidis to Four Types of Surfaces after Cleaning Procedures and Cross-Contamination to Tomatoes, Food Microbiology, vol.30, pp.453-456, 2012.

D. O. Cliver, Cutting Boards in Salmonella Cross-Contamination, Journal of AOAC International, vol.89, pp.538-542, 2006.

B. Carpentier, Sanitary Quality of Meat Chopping Board Surfaces: A Bibliographical Study, Food Microbiology, vol.14, pp.31-37, 1997.

,

T. Vainio-kaila, A. Kyyhkynen, P. Viitaniemi, and A. Siitonen, Pine Heartwood and Glass Surfaces: Easy Method to Test the Fate of Bacterial Contamination, European Journal of Wood and Wood Products, vol.69, pp.391-395, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00615327

,

M. Gehrig, G. Schnell, E. Zürcher, and L. J. Kucera, Hygienische Eigenschaften von Holz-und Kunststoffbrettern in der Nahrungsmittelverarbeitung und-präsentation: Ein Vergleich, vol.58, pp.265-269, 2000.

,

T. Chiu, J. Duan, C. Liu, and Y. Su, Efficacy of Electrolysed Oxidizing Water in Inactivating Vibrio Parahaemolyticus on Kitchen Cutting Boards and Food Contact Surfaces, Letters in Applied Microbiology, vol.43, pp.666-672, 2006.

,

Y. Shi, R. Sun, D. An, W. Lu, C. Zhang et al., Mathematical Quantification of Inactivation of Vibrio Parahaemolyticus on Two Types of Surface Soiled with Different Substrates, Food Control, vol.74, pp.1-8, 2017.

,

S. N. Boucher, A. H. Chamberlain, and M. R. Adams, Enhanced Survival of Campylobacter Jejuni in Association with Wood, Journal of Food Protection, vol.61, pp.26-30, 1998.

S. Prechter, M. Betz, G. Cerny, G. Wegener, and E. Windeisen, , 2002.

, nische Aspekte von Schneidebrettern aus Holz bzw. Kunststoff. Holz als Roh-und Werkstoff, vol.60, pp.239-248

L. Dubreil, F. Aviat, V. Anthoine, R. Ismail, A. Rossero et al., Confocal Spectral Microscopy-An Innovative Tool for Tracking of Pathogen Agents on Contaminated Wooden Surfaces, European Journal of Wood and Wood Products, vol.76, pp.1083-1085, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02627711

M. T. Munir, C. Belloncle, M. Irle, and M. Federighi, Wood-Based Bedding in Poultry Production: A Review. World's Poultry Science Journal, p.75, 2019.

T. Ramananantoandro, F. Eyma, C. Belloncle, S. Rincé, and M. Irle, Effects of Machining Parameters on Raised Grain Occurring after the Application of Water-Based Finishes, European Journal of Wood and Wood Products, vol.76, pp.1323-1333, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01950751

,

E. Thybring, M. Kymäläinen, and L. Rautkari, Moisture in Modified Wood and Its Relevance for Fungal Decay. iForest-Biogeosciences and Forestry, vol.11, pp.418-422, 2018.

A. Milling, K. Smalla, and A. Wulf, The Use of Wood in Practice-A Hygienic Risk?, vol.63, pp.463-472, 2005.

,

T. Stienen, O. Schmidt, and T. Huckfeldt, Wood Decay by Indoor Basidiomycetes at Different Moisture and Temperature, Holzforschung, vol.68, pp.9-15, 2014.

,

L. Xi, D. Qin, X. An, and G. Wang, Resistance of Natural Bamboo Fiber to Microorganisms and Factors That May Affect Such Resistance, BioResources, vol.8, pp.6501-6509, 2013.

C. Coughenour, An Evaluation of Methicillin Resistant Staphylococcus Aureus Survival on Five Environmental Surfaces under Two Different Humidities, with and without the Addition of Bovine Serum Albumin, UNLV Theses, Dissertations, Professional Papers, and Capstones, 2009.

W. Cimiotti, G. Glunder, and K. H. Hinz, Survival of the Bacterial Turkey Coryza Agent, Veterinary Record, vol.110, pp.304-306, 1982.

,

S. M. Mousavi, S. Desobry, and J. Hardy, Mathematical Modelling of Migration of Volatile Compounds into Packaged Food via Package Free Space. Part II: Spherical Shaped Food, Journal of Food Engineering, vol.36, pp.473-484, 1998.

, , pp.59-63

A. P. Williams, L. M. Avery, K. Killham, and D. L. Jones, Persistence of Escherichia Coli O157 on Farm Surfaces under Different Environmental Conditions, Journal of Applied Microbiology, vol.98, pp.1075-1083, 2005.

,

R. Tomi?i?, Z. Tomi?i?, and P. Raspor, Adhesion of Candida Spp. and Pichia Spp. to Wooden Surfaces, Food Technology and Biotechnology, vol.55, pp.138-142, 2017.

,

E. Soumya, I. K. Saad, H. Abdellah, and L. Hassan, Experimental and Theoretical Investigations of the Adhesion Time of Penicillium Spores to Cedar Wood Surface, Materials Science and Engineering: C, vol.33, pp.1276-1281, 2013.

,

M. Asri, N. El-ghachtouli, S. Elabed, S. Ibnsouda-koraichi, A. Elabed et al., Wicherhamomyces Anomalus Biofilm Supported on Wood Husk for Chromium Wastewater Treatment, Journal of Hazardous Materials, vol.359, pp.554-562, 2018.

S. T. Dantas, B. F. Rossi, E. C. Bonsaglia, I. G. Castilho, R. T. Hernandes et al., Cross-Contamination and Biofilm Formation by Salmonella Enterica Serovar Enteritidis on Various Cutting Boards. Foodborne Pathogens and Disease, vol.15, pp.81-85, 2018.

M. Cruciata, R. Gaglio, M. L. Scatassa, G. Sala, C. Cardamone et al., Formation and Characterization of Early Bacterial Biofilms on Different Wood Typologies Applied in Dairy Production, Applied and Environmental Microbiology, vol.84, pp.2107-2124, 2018.

É. Galinari, J. E. Da-nóbrega, N. J. De-andrade, . De-luces-fortes, and C. L. Ferreira, Microbiological Aspects of the Biofilm on Wooden Utensils Used to Make a Brazilian Artisanal Cheese, Brazilian Journal of Microbiology, vol.45, pp.713-720, 2014.

,

A. Di-grigoli, N. Francesca, R. Gaglio, V. Guarrasi, M. Moschetti et al., The Influence of the Wooden Equipment Employed for Cheese Manufacture on the Characteristics of a Traditional Stretched Cheese during Ripening, Food Microbiology, vol.46, pp.81-91, 2015.

,

R. Didienne, C. Defargues, C. Callon, T. Meylheuc, S. Hulin et al., Gerles") in PDO Salers Cheese, Characteristics of Microbial Biofilm on Wooden Vats, vol.156, pp.91-101, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01000841

,

R. Gaglio, M. Cruciata, R. D. Gerlando, M. L. Scatassa, C. Cardamone et al., Microbial Activation of Wooden Vats Used for Traditional Cheese Production and Evolution of the Neo-Formed Biofilms, Applied and Environmental Microbiology, pp.2868-2883, 2015.

G. Licitra, M. Caccamo, F. Valence, and S. Lortal, Traditional Wooden Equipment Used for Cheesemaking and Their Effect on Quality. Global Cheesemaking Technology, pp.157-172, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01690263

S. Lortal, A. Di-blasi, M. Madec, C. Pediliggieri, L. Tuminello et al., Tina Wooden Vat Biofilm: A Safe and Highly Efficient Lactic Acid Bacteria Delivering System in PDO Ragusano Cheese Making, International Journal of Food Microbiology, vol.132, pp.1-8, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01454050

S. Lortal, G. Licitra, and F. Valence, Wooden Tools: Reservoirs of Microbial Biodiversity in Traditional Cheesemaking, Microbiology Spectrum, vol.2, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01209613

M. L. Scatassa, R. Gaglio, G. Macaluso, N. Francesca, W. Randazzo et al., Transfer, Composition and Technological Characterization of the Lactic Acid Bacterial Populations of the Wooden Vats Used to Produce Traditional Stretched Cheeses, Food Microbiology, vol.52, pp.31-41, 2015.

L. Settanni, A. Di-grigoli, G. Tornambé, V. Bellina, N. Francesca et al., Persistence of Wild Streptococcus Thermophilus Strains on Wooden Vat and during the Manufacture of a Traditional Caciocavallo Type Cheese, International Journal of Food Microbiology, vol.155, pp.73-81, 2012.

M. T. Munir,

C. Mariani, N. Oulahal, J. Chamba, F. Dubois-brissonnet, E. Notz et al., Inhibition of Listeria monocytogenes by Resident Biofilms Present on Wooden Shelves Used for Cheese Ripening, Food Control, vol.22, pp.1357-1362, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01004579

,

L. Guillier, V. Stahl, B. Hezard, E. Notz, and R. Briandet, Modelling the Competitive Growth between Listeria monocytogenes and Biofilm Microflora of Smear Cheese Wooden Shelves, International Journal of Food Microbiology, vol.128, pp.51-57, 2008.
URL : https://hal.archives-ouvertes.fr/hal-01606918

K. Ye, J. Liu, M. Liu, Y. Huang, K. Wang et al., Effects of Two Weissella viridescens Strains on Listeria monocytogenes Growth at Different Initial Inoculum Proportions, CyTA-Journal of Food, vol.16, pp.299-305, 2018.

,

A. Vandini, R. Temmerman, A. Frabetti, E. Caselli, P. Antonioli et al., Hard Surface Biocontrol in Hospitals Using Microbial-Based Cleaning Products, PLoS ONE, vol.9, 2014.

J. Buchner, M. Irle, C. Belloncle, F. Michaud, and N. Macchioni, Fungal and Bacterial Colonies Growing on Weathered Wood Surfaces, Wood Material Science & Engineering, vol.14, pp.1-9, 2018.

C. Welker, N. Faiola, S. Davis, I. Maffatore, and C. A. Batt, Bacterial Retention and Cleanability of Plastic and Wood Cutting Boards with Commercial Food Service Maintenance Practices, Journal of Food Protection, vol.60, pp.407-413, 1997.

,

D. Boursillon and V. Riethmüller, The Safety of Wooden Cutting Boards: Remobilization of Bacteria from Pine, Beech, and Polyethylene. British Food Journal, vol.109, pp.315-322, 2007.

F. Lücke and A. Skowyrska, Hygienic Aspects of Using Wooden and Plastic Cutting Boards, Assessed in Laboratory and Small Gastronomy Units, Journal für Verbraucherschutz und Lebensmittelsicherheit, vol.10, pp.317-322, 2015.

,

C. Mariani, R. Briandet, J. Chamba, E. Notz, A. Carnet-pantiez et al., Biofilm Ecology of Wooden Shelves Used in Ripening the French Raw Milk Smear Cheese Reblochon de Savoie, Journal of Dairy Science, vol.90, pp.1653-1661, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00395415

N. L. Gough and C. E. Dodd, The Survival and Disinfection of Salmonella Typhimurium on Chopping Board Surfaces of Wood and Plastic, Food Control, vol.9, pp.127-130, 1998.

P. Zangerl, C. Matlschweiger, K. Dillinger, and F. Eliskases-lechner, Survival of Listeria monocytogenes after Cleaning and Sanitation of Wooden Shelves Used for Cheese Ripening, European Journal of Wood and Wood Products, vol.68, pp.415-419, 2010.

A. J. Miller, T. Brown, and J. E. Call, Comparison of Wooden and Polyethylene Cutting Boards: Potential for the Attachment and Removal of Bacteria from Ground Beef, Journal of Food Protection, vol.59, pp.854-858, 1996.

,

A. Revol-junelles, R. Miguindou-mabiala, D. Roger-maigné, and J. Millière, Behavior of Escherichia Coli Cells and Bacillus Cereus Spores on Poplar Wood Crates by Impedance Measurements, Journal of Food Protection, vol.68, pp.80-84, 2005.

M. T. Munir,

G. Moore, I. S. Blair, and D. A. Mcdowell, Recovery and Transfer of Salmonella Typhimurium from Four Different Domestic Food Contact Surfaces, Journal of Food Protection, vol.70, pp.2273-2280, 2007.

R. C. Miranda and D. W. Schaffner, Longer Contact Times Increase Cross-Contamination of Enterobacter Aerogenes from Surfaces to Food, Applied and Environmental Microbiology, vol.82, pp.6490-6496, 2016.

,

P. Dawson, I. Han, M. Cox, C. Black, and L. Simmons, Residence Time and Food Contact Time Effects on Transfer of Salmonella Typhimurium from Tile, Wood and Carpet: Testing the Five-Second Rule, Journal of Applied Microbiology, vol.102, pp.945-953, 2007.

G. A. Mohammad and S. M. Al-taee, Comparison of Various Types of Cutting Boards in Bacterial Contamination, Journal of College of Education for Pure Sciences, vol.4, pp.301-308, 2014.

S. G. Goh, A. Leili, C. H. Kuan, Y. Y. Loo, Y. L. Lye et al., Transmission of Listeria monocytogenes from Raw Chicken Meat to Cooked Chicken Meat through Cutting Boards, Food Control, vol.37, pp.51-55, 2014.

,

N. O. Ak, D. O. Cliver, and C. W. Kaspar, Cutting Boards of Plastic and Wood Contaminated Experimentally with Bacteria, Journal of Food Protection, vol.57, pp.16-22, 1994.

N. O. Ak, D. O. Cliver, and C. W. Kaspar, Decontamination of Plastic and Wooden Cutting Boards for Kitchen Use, Journal of Food Protection, vol.57, pp.23-30, 1994.

,

R. Imhof, L. Schwendimann, and P. R. Scettrini, Sanitising Wooden Boards Used for Cheese Maturation by Means of a Steam-Mediated Heating Process, Journal of Consumer Protection and Food Safety, vol.12, pp.255-263, 2017.

,

M. A. Deza, M. Araujo, and M. J. Garrido, Efficacy of Neutral Electrolyzed Water to Inactivate Escherichia Coli, Listeria monocytogenes, Pseudomonas aeruginosa, and Staphylococcus aureus on Plastic and Wooden Kitchen Cutting Boards, Journal of Food Protection, vol.70, pp.102-108, 2007.

,

E. Devere and D. Purchase, Effectiveness of Domestic Antibacterial Products in Decontaminating Food Contact Surfaces, Food Microbiology, vol.24, pp.425-430, 2007.

,

G. R. Acuff, C. Vanderzant, M. O. Hanna, J. G. Ehlers, and F. A. Gardner, Effects of Handling and Preparation of Turkey Products on the Survival of Campylobacter Jejuni, Journal of Food Protection, vol.49, pp.627-631, 1986.

,

H. Thormar and H. Hilmarsson, Killing of Campylobacter on Contaminated Plastic and Wooden Cutting Boards by Glycerol Monocaprate (Monocaprin). Letters in Applied Microbiology, vol.51, pp.319-324, 2010.

,

H. M. Al-qadiri, M. Ovissipour, N. Al-alami, B. N. Govindan, S. G. Shiroodi et al., Efficacy of Neutral Electrolyzed Water, Quaternary Ammonium and Lactic Acid-Based Solutions in Controlling Microbial Contamination of Food M. T. Munir et al.r Health Cutting Boards Using a Manual Spraying Technique, Journal of Food Science, vol.81, pp.1177-1183, 2016.

M. E. Alañón, A. García-ruíz, M. C. Díaz-maroto, M. S. Pérez-coello, and M. V. Moreno-arribas, Antimicrobial and Antioxidant Activity of Pressurized Liquid Extracts from Oenological Woods, Food Control, vol.50, pp.581-588, 2015.

,

W. H. Johnston, J. J. Karchesy, G. H. Constantine, and A. M. Craig, Antimicrobial Activity of Some Pacific Northwest Woods against Anaerobic Bacteria and Yeast, Phytotherapy Research, vol.15, pp.586-588, 2001.

A. Schönwälder, R. Kehr, A. Wulf, and K. Smalla, Wooden Boards Affecting the Survival of Bacteria?, vol.60, pp.249-257, 2002.

,

M. T. Munir, C. Belloncle, H. Pailhories, F. Aviat, M. Federighi et al., Wood as a Safe Material for Indoor Surface Construction of Hygienically Sensitive Places, pp.79-80, 2017.

T. Vainio-kaila, L. Rautkari, K. Nordström, M. Närhi, O. Natri et al., Effect of Extractives and Thermal Modification on Antibacterial Properties of Scots Pine and Norway Spruce, International Wood Products Journal, vol.4, pp.248-252, 2013.

T. Vainio-kaila, A. Kyyhkynen, L. Rautkari, and A. Siitonen, Antibacterial Effects of Extracts of Pinus sylvestris and Picea abies against Staphylococcus Aureus, Enterococcus Faecalis, Escherichia Coli, and Streptococcus Pneumoniae, Bio-Resources, vol.10, pp.7763-7771, 2015.

T. Vainio-kaila, X. Zhang, T. Hänninen, A. Kyyhkynen, L. Johansson et al., Antibacterial Effects of Wood Structural Components and Extractives from Pinus sylvestris and Picea abies on Methicillin-Resistant Staphylococcus Aureus and Escherichia Coli O157:H7. Bio-Resources, vol.12, pp.7601-7614, 2017.

N. Valette, T. Perrot, R. Sormani, E. Gelhaye, and M. Morel-rouhier, Antifungal Activities of Wood Extractives, Fungal Biology Reviews, vol.31, pp.113-123, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01595725

,

J. K. Mensah, E. Adei, D. Adei, and G. Owusu-ansah, Assessment of Local Wood Species Used for the Manufacture of Cookware and the Perception of Chemical Benefits and Chemical Hazards Associated with Their Use in Kumasi, Ghana. Journal of Ethnobiology and Ethnomedicine, vol.8, 2012.

L. Kirkeskov, T. Witterseh, L. W. Funch, E. Kristiansen, L. Mølhave et al., Health Evaluation of Volatile Organic Compound (VOC) Emission from Exotic Wood Products, Indoor Air, vol.19, pp.45-57, 2009.

,

M. T. Munir, C. Belloncle, H. Pailhoriès, M. Eveillard, F. Aviat et al., Survival of Nosocomial Pathogens on Maritime Pine and European Fir Wood, Proceedings of the 5th International Conference on Processing Technologies for the Forest and Bio-Based Products Industries, pp.213-217, 2018.

A. Ahmad, M. Kaleem, Z. Ahmed, and H. Shafiq, Therapeutic Potential of Flavonoids and Their Mechanism of Action against Microbial and Viral Infections-A Review, Food Research International, vol.77, pp.221-235, 2015.

,

N. C. Silva and A. Fernandes-júnior, Biological Properties of Medicinal M. T. Munir et al. Plants: A Review of Their Antimicrobial Activity, vol.16, pp.402-413, 2010.

,

G. R. Teodoro, K. Ellepola, C. J. Seneviratne, and C. Y. Koga-ito, Potential Use of Phenolic Acids as Anti-Candida Agents: A Review, Frontiers in Microbiology, vol.6, 1420.

T. J. Silhavy, D. Kahne, and S. Walker, The Bacterial Cell Envelope. Cold Spring Harbor Perspectives in Biology, vol.2, 2010.

A. Riaz, S. Umar, M. T. Munir, and M. Tariq, Replacements of Antibiotics in the Control of Necrotic Enteritis: A Review, Science Letters, vol.5, pp.208-216, 2017.