References
- A. Masyita, S.R. Mustika, A.A. Dwi, B. Yasir, R.N.Rahma, T.B.Emran, F. Nainu, J. Simal-Gandara, Terpenes and terpenoids as main bioactive compounds of essential oils, their roles in human health and potential application as natural food preservatives, Food Chem X. 13 (2022) 100217.
- B. Ali, N.A. Al-Wabel, S. Shams, A. Ahamad, S.A. Khan, F. Anwar, Essential oils used in aromatherapy: A systemic review, Asian Pacific Journal of Tropical Biomedicine 5 (2015) 601-611. DOI: 10.1016/j.apjtb.2015.05.007
- Y. Niu, X. Sun, Z. Xiao, P. Wang, R. Wang, Olfactory impact of terpene alcohol on terpenes aroma expression in chrysanthemum essential oils, Molecules 23 (2018) 2803. DOI: 10.3390/molecules23112803
- W. Yang, X. Chen, Y. Li, S. Guo, Z. Wang, X. Yu, Advances in pharmacological activities of terpenoids, Natural Product Communications 15 (2020) DOI: 10.1177/1934578X20903555
- M. Kopečná, M. Macháček, A. Nováčková, G. Paraskevopoulus, J. Roh, K. Vavrova, Esters of terpene alcohols as highly potent, reversible, and low toxic skin penetration enhancers, Scientific Reports 9 (2019) 14617. DOI: 10.1038/s41598-019-51226-5
- Q. An, J.N. Ren, X. Li, G. Fan, S.S. Qu, Y. Song, Y. Li, S.Y. Pan, Recent updates on bioactive properties of linalool, Food & Function 12 (2021) 10370-10389. DOI: 10.1039/D1FO02120F
- C. Cimino, O.M. Maurel, T. Musumeci, A. Bonaccorso, F. Drago, E.M.B. Souto, R. Pignatello, C. Carbone, Essential oils: Pharmaceutical applications and encapsulation strategies into lipid-based delivery systems, Pharmaceutics 13 (2021) 327. DOI: 10.3390/pharmaceutics13030327
- Z. Dajic Stevanovic, E. Sieniawska, K. Glowniak, N. Obradovic, I. Pajic-Lijakovic, Natural macromolecules as carriers for essential oils: From extraction to biomedical application, Frontiers in Bioengineering and Biotechnologies 8 (2020) 563. DOI: 10.3389/fbioe.2020.00563
- F. Froiio, A. Mosaddik, M.T. Morshed, D. Paolino, H. Fessi, A. Elaissari, Edible polymers for essential oils encapsulation: Application in food preservation, Industrial and Engineering Chemical Reserach 58 (2019) 20932-20945. DOI: 10.1021/acs.iecr.9b02418
- M. Miastkowska, P. Śliwa, Influence of terpene type on the release from an O/W nanoemulsion: Experimental and theoretical studies, Molecules 25 (2020) 2747. DOI: 10.3390/molecules25122747
- J. Patel, B. Maji, N.S.H.N. Moorthy, S. Maiti, Xanthan gum derivatives: Review of synthesis, properties and diverse applications, RSC Advances 10 (2020) 27103-27136. DOI: 10.1039/D0RA04366D
- A. Napiórkowska, M. Kurek, Coacervation as a novel method of microencapsulation of essential oils-A review, Molecules 27 (2022) 5142. DOI: 10.3390/molecules27165142
- B. Muhoza, S. Xia, X. Wang, X. Zhang, Y. Li, S. Zhang, Microencapsulation of essential oils by complex coacervation method: Preparation, thermal stability, release properties and applications, Critical Reviews in Food Science and Nutrition 62 (2022) 363-1382. DOI: 10.1080/10408398.2020.1843132
- Ö. Altay, Ö. Köprüalan, I. İlter, M. Koç, F.K. Ertekin, S.M. Jafari, Spray drying encapsulation of essential oils: Process efficiency, formulation strategies, and applications, Critical Reviews in Food Science and Nutrition 64 (2022) 1-19. DOI: 10.1080/10408398.2022.2113364
- R.D.S. Da Veiga, R.A. Da Silva-Buzanello, P.M. Corso, C. Canan, Essential oils microencapsulated obtained by spray drying: a review, Journal of Essential Oil Research 31 (2019) 457-473. DOI: 10.1080/10412905.2019.1612788
- L. Qiu, H. Ma, Q. Luo, C. Bai, G. Xiong, S. Jin, J. Wang, X. Zu, H. Li, T. Liao, Preparation, characterization, and application of modified starch/chitosan/sweet orange oil microcapsules, Foods 11 (2022) 2306. DOI: 10.3390/foods11152306
- Y. Meng, C. Qiu, X. Li, D.J. McClements, S. Sang, A. Jiao, Z. Jin, Polysaccharide-based nano-delivery systems for encapsulation, delivery, and pH-responsive release of bioactive ingredients, Critical Reviews in Food Science and Nutrition 64 (2022) 187–201. DOI: 10.1080/10408398.2022.2105800
- M. Tudu, A. Samanta, Natural polysaccharides: Chemical properties and application in pharmaceutical formulations, European Polymer Journal 184 (2023) 111801. DOI: 10.1016/j.eurpolymj.2022.111801
- X. Wan, H. Guo, Y. Liang, C. Zhou, Z. Liu, K. Li, F. Niu, X. Zhai, L. Wang, The physiological functions and pharmaceutical applications of inulin: A review, Carbohydrate Polymers 246 (2020) 116589. DOI: 10.1016/j.carbpol.2020.116589
- A.A. Badwan, I. Rashid, M.M. Omari, F.H. Darras, Chitin and chitosan as direct compression excipients in pharmaceutical applications, Marine Drugs 13 (2015) 1519-1547. DOI: 10.3390/md13031519
- H.R. Badwaik, T. Kumar Giri, K.T. Nakhate, P. Kashyap, D.K. Tripathi, Xanthan gum and its derivatives as a potential bio-polymeric carrier for drug delivery system, Current Drug Delivery 10 (2013) 587-600. DOI: 10.2174/1567201811310050010
- Y. De Anda-Flores, E. Carvajal-Millan, A. Campa-Mada, J. Lizardi-Mendoza, A. Rascon-Chu, J. Tanori-Cordova, A.L. Martinez-Lopez, Polysaccharide - based nanoparticles for colon-targeted drug delivery systems, Polysaccharides 2 (2021) 626-647. DOI: 10.3390/polysaccharides2030038
- A.D. Augst, H.J. Kong, D.J. Mooney, Alginate hydrogels as biomaterials, Macromolecular Bioscience 6 (2006) 623-633. DOI: 10.1002/mabi.200600069
- L. Li, R. Ni, Y. Shao, S. Mao, Carrageenan and its applications in drug delivery, Carbohydrate Polymers 103 (2014) 1-11. DOI: 10.1016/j.carbpol.2013.12.008
- S. Kanekar, S.S. Rao, S. Yuvarajan, S. Surya, P.D. Rekha, Linalool-encapsulated alginate microspheres as anti-virulence target against wound infections using in vitro and in vivo models, Journal of Drug Delivery Science and Technology 77 (2022) 103848. DOI: 10.1016/j.jddst.2022.103848
- V. Parasuraman, A.M. Sharmin, M.A.V. Anand, A.S. Sivakumar, D. Surendhiran, G. Sharesh, Fabrication and bacterial inhibitory activity of essential oil linalool loaded biocapsules against Escherichia coli, Journal of Drug Delivery Science and Technology 74 (2022) 103495. DOI: 10.1016/j.jddst.2022.103495
- S. Das, V.K. Singh, A.K. Chaudhari, A.K. Dwivedy, N.K. Dubey, Fabrication, physico-chemical characterization, and bioactivity evaluation of chitosan-linalool composite nano-matrix as innovative controlled release delivery system for food preservation, International Journal of Biological Macromolecules 188 (2021) 751–763. DOI: 10.1016/j.ijbiomac.2021.08.045
- J.D. Ogilvie-Battersby, R. Nagarajan, R. Mosurkal, N. Orbey, Microencapsulation and controlled release of insect repellent geraniol in gelatin/gum arabic microcapsules, Colloids and Surfaces A: Physicochemical and Engineering Aspects 640 (2022) 128494. DOI: 10.1016/j.colsurfa.2022.128494
- H. de Barros Fernandes, S.L. Ciriaco, L.A. Filgueiras, I.C. Barros, A.L.M. Carvalho, H.M.L. Rolim, M.N. de Souza, J.C.C. da Silva Pinto, A.N. Mendes, R.C.M. Oliveira, Gastroprotective effect of α-terpineol-loaded polymethyl methacrylate particles on gastric injury model, Journal of Drug Delivery Science and Technology 67 (2022) 102989. DOI: 10.1016/j.jddst.2021.102989
- Gaussian 09, Revision B.01, M.J. Frisch, G.W. Trucks, H.B. Schlegel, G.E. Scuseria, M.A. Robb, J.R. Cheeseman, G. Scalmani, V. Barone, et al., Gaussian, Inc., Wallingford CT, 2010.
- Y. Zyrianov, Distribution-based descriptors of the molecular shape, Journal of Chemical Information and Modeling 45 (2005) 657-672. DOI: 10.1021/ci050005l
- O. Trott, A.J. Olson, AutoDock Vina: Improving the speed and accuracy of docking with a new scoring function, efficient optimization and multithreading, Journal of Computational Chemistry 31 (2010) 455-461. DOI: 10.1002/jcc.21334
- https://www.rcsb.org/structure/1HNJ (visited in 21.06.2024)
- B.J. Bender, S. Gahbauer, A. Luttens, J. Lyu, C.M. Webb, R.M. Stein, E.A. Fink, T.E. Balius, J. Carlsson, J.J. Irwin, B.K. Shoichet, A practical guide to large-scale docking, Nature Protocols 16 (2021) 4799–4832. DOI: 10.1038/s41596-021-00597-z
- P.C. Agu, C.A. Afiukwa, O.U. Orji, E.M. Ezeh, I.H. Ofoke, C.O. Ogbu, E.I. Ugwuja, P.M. Aja, Molecular docking as a tool for the discovery of molecular targets of nutraceuticals in diseases management, Scientific Reports 13 (2023) 13398. DOI: 10.1038/s41598-023-40160-2
- H. Zengin, A.H. Baysal, Antibacterial and antioxidant activity of essential oil terpenes against pathogenic and spoilage-forming bacteria and cell structure-activity relationships evaluated by SEM microscopy, Molecules 19 (2014) 17773-17798. DOI: 10.3390/molecules191117773
- C.Y. Wang, Y.W. Chen, C.Y. Hou, Antioxidant and antibacterial activity of seven predominant terpenoids, International Journal of Food Properties 1 (2019) 230-238. DOI: 10.1080/10942912.2019.1582541
- A.K. Chandra, T. Uchimaru, The O-H bond dissociation energies of substituted phenols and proton affinities of substituted phenoxide ions: A DFT study, International Journal of Molecular Sciences 3 (2002) 407-422. DOI: 10.3390/i3040407