Journal articles on the topic 'Antibacterial and anti-Adhesive properties'
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Sautrot-Ba, P., N. Razza, L. Breloy, S. Abbad Andaloussi, A. Chiappone, M. Sangermano, C. Hélary, S. Belbekhouche, T. Coradin, and D. L. Versace. "Photoinduced chitosan–PEG hydrogels with long-term antibacterial properties." Journal of Materials Chemistry B 7, no. 42 (2019): 6526–38. http://dx.doi.org/10.1039/c9tb01170f.
Full textKudryavtseva, Yulia A., Anastasia Yu Kanonykina, Daria K. Shishkova, Natalia A. Efremova, Pavel S. Onishchenko, and Leonid S. Barbarash. "BIODEGRADABLE ANTI-ADHESIVE MEMBRANES WITH ANTIBACTERIAL PROPERTIES FOR USE IN SURGERY." Complex Issues of Cardiovascular Diseases 12, no. 4S (December 29, 2023): 80–89. http://dx.doi.org/10.17802/2306-1278-2023-12-4s-80-89.
Full textMorgan, T. D., and M. Wilson. "Anti-adhesive and antibacterial properties of a proprietary denture cleanser." Journal of Applied Microbiology 89, no. 4 (October 2000): 617–23. http://dx.doi.org/10.1046/j.1365-2672.2000.01158.x.
Full textKharouf, Naji, Ammar Eid, Louis Hardan, Rim Bourgi, Youri Arntz, Hamdi Jmal, Federico Foschi, et al. "Antibacterial and Bonding Properties of Universal Adhesive Dental Polymers Doped with Pyrogallol." Polymers 13, no. 10 (May 11, 2021): 1538. http://dx.doi.org/10.3390/polym13101538.
Full textLatif, Irina I., Aleksandr M. Kovalevsky, Lyudmila A. Kraeva, Maria A. Nosova, and Aleksey N. Sharov. "THE EFFECTIVENESS OF THE COMPOSITION IN THE FORM OF GEL FOR ORAL CARE WITH HERBAL COMPONENTS." Applied Information Aspects of Medicine (Prikladnye informacionnye aspekty mediciny) 26, no. 2 (July 1, 2023): 59–66. http://dx.doi.org/10.18499/2070-9277-2023-26-2-59-66.
Full textNYAMBE, MOLLA MARITHA, RENATE HANS, MERVYN BEUKES, JANE MORRIS, and MARTHA KANDAWA-SCHULZ. "Phytochemical and antibacterial analysis of indigenous chewing sticks, Diospyros lyciodes and Euclea divinorum of Namibia." Biofarmasi Journal of Natural Product Biochemistry 16, no. 1 (February 1, 2018): 29–43. http://dx.doi.org/10.13057/biofar/f160104.
Full textAguilar-Perez, David Alejandro, Cindy Maria Urbina-Mendez, Beatriz Maldonado-Gallegos, Omar de Jesus Castillo-Cruz, Fernando Javier Aguilar-Ayala, Martha Gabriela Chuc-Gamboa, Rossana Faride Vargas-Coronado, and Juan Valerio Cauich-Rodriguez. "Mechanical Properties of Poly(Alkenoate) Cement Modified with Propolis as an Antiseptic." Polymers 15, no. 7 (March 28, 2023): 1676. http://dx.doi.org/10.3390/polym15071676.
Full textMünchow, Eliseu A., Adriana F. da Silva, Evandro Piva, Carlos E. Cuevas-Suárez, Maria T. P. de Albuquerque, Rodolfo Pinal, Richard L. Gregory, Lorenzo Breschi, and Marco C. Bottino. "Development of an antibacterial and anti-metalloproteinase dental adhesive for long-lasting resin composite restorations." Journal of Materials Chemistry B 8, no. 47 (2020): 10797–811. http://dx.doi.org/10.1039/d0tb02058c.
Full textChoi, Aerin, Kyung-Hyeon Yoo, Seog-Young Yoon, Bong-Soo Park, In-Ryoung Kim, and Yong-Il Kim. "Anti-Microbial and Remineralizing Properties of Self-Adhesive Orthodontic Resin Containing Mesoporous Bioactive Glass." Materials 14, no. 13 (June 25, 2021): 3550. http://dx.doi.org/10.3390/ma14133550.
Full textKalinichenko, S., I. Torianyk, and K. Melentyeva. "Obtaining of native microbial antigens with anti-adhesive properties." Reports of Vinnytsia National Medical University 26, no. 2 (June 14, 2022): 175–78. http://dx.doi.org/10.31393/reports-vnmedical-2022-26(2)-01.
Full textNam, Hyung-Jin, You-Min Kim, Yong Hoon Kwon, Kyung-Hyeon Yoo, Seog-Young Yoon, In-Ryoung Kim, Bong-Soo Park, Woo-Sung Son, Seung-Min Lee, and Yong-Il Kim. "Fluorinated Bioactive Glass Nanoparticles: Enamel Demineralization Prevention and Antibacterial Effect of Orthodontic Bonding Resin." Materials 12, no. 11 (June 4, 2019): 1813. http://dx.doi.org/10.3390/ma12111813.
Full textChen, Hui, Lisha Gu, Binyou Liao, Xuedong Zhou, Lei Cheng, and Biao Ren. "Advances of Anti-Caries Nanomaterials." Molecules 25, no. 21 (October 30, 2020): 5047. http://dx.doi.org/10.3390/molecules25215047.
Full textKreutz, Marietta, Christian Kreutz, Philipp Kanzow, Tobias T. Tauböck, Phoebe Burrer, Christine Noll, Oliver Bader, Bianca Rohland, Annette Wiegand, and Marta Rizk. "Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives." Nanomaterials 12, no. 21 (November 1, 2022): 3862. http://dx.doi.org/10.3390/nano12213862.
Full textMoreno-Vásquez, María J., Maribel Plascencia-Jatomea, Víctor M. Ocaño-Higuera, Francisco J. Castillo-Yáñez, Francisco Rodríguez-Félix, Ema C. Rosas-Burgos, and Abril Z. Graciano-Verdugo. "Engineering and antibacterial properties of low-density polyethylene films with incorporated epigallocatechin gallate." Journal of Plastic Film & Sheeting 33, no. 4 (January 13, 2017): 413–37. http://dx.doi.org/10.1177/8756087916689382.
Full textXu, Zhengwei, Tingting Wang, and Junqiu Liu. "Recent Development of Polydopamine Anti-Bacterial Nanomaterials." International Journal of Molecular Sciences 23, no. 13 (June 30, 2022): 7278. http://dx.doi.org/10.3390/ijms23137278.
Full textKara, Filiz, Eda Ayse Aksoy, Semih Calamak, Nesrin Hasirci, and Serpil Aksoy. "Immobilization of heparin on chitosan-grafted polyurethane films to enhance anti-adhesive and antibacterial properties." Journal of Bioactive and Compatible Polymers 31, no. 1 (September 2, 2015): 72–90. http://dx.doi.org/10.1177/0883911515598794.
Full textMoura, M. C., D. S. Trentin, T. H. Napoleão, M. Primon-Barros, A. S. Xavier, N. P. Carneiro, P. M. G. Paiva, A. J. Macedo, and L. C. B. B. Coelho. "Multi-effect of the water-solubleMoringa oleiferalectin againstSerratia marcescensandBacillussp.: antibacterial, antibiofilm and anti-adhesive properties." Journal of Applied Microbiology 123, no. 4 (September 11, 2017): 861–74. http://dx.doi.org/10.1111/jam.13556.
Full textFeuerstein, Osnat, Shlomo Matalon, Hagay Slutzky, and Ervin I. Weiss. "Antibacterial properties of self-etching dental adhesive systems." Journal of the American Dental Association 138, no. 3 (March 2007): 349–54. http://dx.doi.org/10.14219/jada.archive.2007.0167.
Full textJia, Ao, Pei Wang, Fei Tong, Ziqiang Chen, Yunyun Deng, Haiyan Yao, Lianguo Wang, Yifan Liu, and Hongshan Ge. "Developing a Novel Enamel Adhesive with Amorphous Calcium Phosphate and Silver Nanoparticles to Prevent Demineralization during Orthodontic Treatment." Journal of Functional Biomaterials 14, no. 2 (January 29, 2023): 77. http://dx.doi.org/10.3390/jfb14020077.
Full textPiras, Anna Maria, Semih Esin, Arianna Benedetti, Giuseppantonio Maisetta, Angela Fabiano, Ylenia Zambito, and Giovanna Batoni. "Antibacterial, Antibiofilm, and Antiadhesive Properties of Different Quaternized Chitosan Derivatives." International Journal of Molecular Sciences 20, no. 24 (December 13, 2019): 6297. http://dx.doi.org/10.3390/ijms20246297.
Full textYin, Yi, Qianqian Xu, Xin Wei, Qianyun Ma, Dongsheng Li, and Juanjuan Zhao. "Rosmarinic Acid-Grafted Dextran/Gelatin Hydrogel as a Wound Dressing with Improved Properties: Strong Tissue Adhesion, Antibacterial, Antioxidant and Anti-Inflammatory." Molecules 28, no. 10 (May 11, 2023): 4034. http://dx.doi.org/10.3390/molecules28104034.
Full textSolanki, Jyoti, Dhaval Patel, and M. Nataraj. "Exploring the Potential of Dyadobacter fermentans JDP9 Biosurfactants an Antibacterial and Antifouling Biocompatible Agent." Journal of Advanced Scientific Research 15, no. 11 (December 7, 2024): 01–09. https://doi.org/10.55218/jasr.2024151101.
Full textTwomley, Jefferson, Yapin Wang, Zezhang Wen, Qingzhao Yu, Richard Ballard, Paul Armbruster, and Xiaoming Xu. "Formulation and characterization of antibacterial orthodontic adhesive." Dental Press Journal of Orthodontics 24, no. 4 (August 2019): 73–79. http://dx.doi.org/10.1590/2177-6709.24.4.073-079.oar.
Full textLee, Seung-Min, Kyung-Hyeon Yoo, Seog-Young Yoon, In-Ryoung Kim, Bong-Soo Park, Woo-Sung Son, Ching-Chang Ko, Sung-Ae Son, and Yong-Il Kim. "Enamel Anti-Demineralization Effect of Orthodontic Adhesive Containing Bioactive Glass and Graphene Oxide: An In-Vitro Study." Materials 11, no. 9 (September 14, 2018): 1728. http://dx.doi.org/10.3390/ma11091728.
Full textYang, Jing Quan, Zheng Wang, Jin Hui Wu, Li Mei Hao, Tao Tian, and Song Lin. "Study on an Air Filter Material Immobilized with Bio-Antimicrobials." Advanced Materials Research 152-153 (October 2010): 1519–24. http://dx.doi.org/10.4028/www.scientific.net/amr.152-153.1519.
Full textYang, Yubin, Jingyu Ding, Xuanyan Zhu, Zilu Tian, and Song Zhu. "Triclosan to Improve the Antimicrobial Performance of Universal Adhesives." Polymers 15, no. 2 (January 6, 2023): 304. http://dx.doi.org/10.3390/polym15020304.
Full textDonnier-Maréchal, Marion, Nicolas Galanos, Teddy Grandjean, Yoann Pascal, Ding-Kun Ji, Lei Dong, Emilie Gillon, et al. "Perylenediimide-based glycoclusters as high affinity ligands of bacterial lectins: synthesis, binding studies and anti-adhesive properties." Organic & Biomolecular Chemistry 15, no. 47 (2017): 10037–43. http://dx.doi.org/10.1039/c7ob02749d.
Full textKefallinou, Dionysia, Kosmas Ellinas, Thanassis Speliotis, Kostas Stamatakis, Evangelos Gogolides, and Angeliki Tserepi. "Optimization of Antibacterial Properties of “Hybrid” Metal-Sputtered Superhydrophobic Surfaces." Coatings 10, no. 1 (December 30, 2019): 25. http://dx.doi.org/10.3390/coatings10010025.
Full textLopes, Stephanie R., Amanda G. N. Matuda, Raquel P. Campos, Ana Paula V. P. Mafetano, Ana Helena M. Barnabe, Gabriela S. Chagas, Daphne C. Barcellos, Li-Na Niu, Franklin R. Tay, and Cesar R. Pucci. "Development of an Antibacterial Dentin Adhesive." Polymers 14, no. 12 (June 19, 2022): 2502. http://dx.doi.org/10.3390/polym14122502.
Full textHuang, Tao, Jin Zhang, Ming Fu Li, Wen Wei Lian, Jun Yan He, Zhi Kai Zhuang, Zheng Peng, and Xiao Yu Liu. "Adhesive Content Influence on Antimicrobial Properties of Pineapple Leaf Fiber." Advanced Materials Research 1048 (October 2014): 3–8. http://dx.doi.org/10.4028/www.scientific.net/amr.1048.3.
Full textTeri, Gele, Cong Cheng, Kezhu Han, Dan Huang, Jing Li, Yujia Luo, Peng Fu, and Yuhu Li. "Study on the Properties of FEVE Modified with Ag2O/OH-MWCNTS Nanocomposites for Use as Adhesives for Wooden Heritage Objects." Molecules 29, no. 6 (March 19, 2024): 1365. http://dx.doi.org/10.3390/molecules29061365.
Full textN/A. "Triclosan: Antibacterial and Anti-inflammatory Properties." Biological Therapies in Dentistry 20, no. 04 (2004): 13. http://dx.doi.org/10.2310/7040.2004.20412.
Full textCarvalho, A. L., A. C. Vale, M. P. Sousa, A. M. Barbosa, E. Torrado, J. F. Mano, and N. M. Alves. "Antibacterial bioadhesive layer-by-layer coatings for orthopedic applications." Journal of Materials Chemistry B 4, no. 32 (2016): 5385–93. http://dx.doi.org/10.1039/c6tb00841k.
Full textAnvari, Sanam, Hamidreza Hajfarajollah, Babak Mokhtarani, Mobin Enayati, Ali Sharifi, and Mojtaba Mirzaei. "Antibacterial and anti-adhesive properties of ionic liquids with various cationic and anionic heads toward pathogenic bacteria." Journal of Molecular Liquids 221 (September 2016): 685–90. http://dx.doi.org/10.1016/j.molliq.2016.05.093.
Full textGou, Ya-ping, Mohamed M. Meghil, Cesar R. Pucci, Lorenzo Breschi, David H. Pashley, Christopher W. Cutler, Li-na Niu, Ji-yao Li, and Franklin R. Tay. "Optimizing resin-dentin bond stability using a bioactive adhesive with concomitant antibacterial properties and anti-proteolytic activities." Acta Biomaterialia 75 (July 2018): 171–82. http://dx.doi.org/10.1016/j.actbio.2018.06.008.
Full textAkarajarasrod, Pinyada, Surachai Dechkunakorn, Pornpen Tantivitayakul, Primana Punnakitikashem, Wassana Wichai, Phetladda Pannak Whitis, and Niwat Anuwongnukroh. "Antibacterial Effect of Experimental Orthodontic Adhesives Containing Gold Nanoparticles against <i>Streptococcus mutans</i> and <i>Streptococcus sobrinus</i>." Key Engineering Materials 904 (November 22, 2021): 301–8. http://dx.doi.org/10.4028/www.scientific.net/kem.904.301.
Full textShu, Qin, Hanghang Lou, Tianyu Wei, Xiayu Liu, and Qihe Chen. "Contributions of Glycolipid Biosurfactants and Glycolipid-Modified Materials to Antimicrobial Strategy: A Review." Pharmaceutics 13, no. 2 (February 6, 2021): 227. http://dx.doi.org/10.3390/pharmaceutics13020227.
Full textWang, Qinhua, Hui Zhang, Xiaofeng Pan, Xiaojuan Ma, Shilin Cao, and Yonghao Ni. "Adhesive, Transparent Tannic Acid@ Sulfonated Lignin-PAM Ionic Conductive Hydrogel Electrode with Anti-UV, Antibacterial and Mild Antioxidant Function." Materials 12, no. 24 (December 10, 2019): 4135. http://dx.doi.org/10.3390/ma12244135.
Full textRestivo, Elisa, Emanuela Peluso, Nora Bloise, Giovanni Lo Bello, Giovanna Bruni, Marialaura Giannaccari, Roberto Raiteri, Lorenzo Fassina, and Livia Visai. "Surface Properties of a Biocompatible Thermoplastic Polyurethane and Its Anti-Adhesive Effect against E. coli and S. aureus." Journal of Functional Biomaterials 15, no. 1 (January 15, 2024): 24. http://dx.doi.org/10.3390/jfb15010024.
Full textOh, Seung Jun, Won Sik Han, and Koang Chul Wi. "A Study on the Manufacture and Physical Properties of Liquid Adhesive for Wood Preservation - Focusing on the Synthesis of Gelatin and Carrageenan -." Journal of Conservation Science 37, no. 6 (December 31, 2021): 801–6. http://dx.doi.org/10.12654/jcs.2021.37.6.17.
Full textHou, Yi, Ying Song, Xiaodong Sun, Yulin Jiang, Meiling He, Yubao Li, Xianchun Chen, and Li Zhang. "Multifunctional composite hydrogel bolus with combined self-healing, antibacterial and adhesive functions for radiotherapy." Journal of Materials Chemistry B 8, no. 13 (2020): 2627–35. http://dx.doi.org/10.1039/c9tb02967b.
Full textNimittrakoolchai, O., and Sitthisuntorn Supothina. "Nanocrystalline TiO2 Coated-Fabric for UV Shielding and Anti-Bacterial Functions." Materials Science Forum 569 (January 2008): 21–24. http://dx.doi.org/10.4028/www.scientific.net/msf.569.21.
Full textAfzal, Aqsa, Syed Nisar Hussain Shah, Hina Javed, Asma Mumtaz, Javeria Saeed, Hafiz Majid Rasheed, Rabia Arshad, Siddique Akber Ansari, Hamad M. Alkahtani, and Irfan Aamer Ansari. "Spilanthes acmella Extract-Based Natural Oils Loaded Emulgel for Anti-Microbial Action against Dermatitis." Gels 9, no. 10 (October 20, 2023): 832. http://dx.doi.org/10.3390/gels9100832.
Full textDing, Tingting, Jiajia Qi, Jingcheng Zou, Hongxia Dan, Hang Zhao, and Qianming Chen. "A multifunctional supramolecular hydrogel for infected wound healing." Biomaterials Science 10, no. 2 (2022): 381–95. http://dx.doi.org/10.1039/d1bm01575c.
Full textLapinska, Barbara, Magdalena Konieczka, Beata Zarzycka, Krzysztof Sokolowski, Janina Grzegorczyk, and Monika Lukomska-Szymanska. "Flow Cytometry Analysis of Antibacterial Effects of Universal Dentin Bonding Agents on Streptococcus mutans." Molecules 24, no. 3 (February 1, 2019): 532. http://dx.doi.org/10.3390/molecules24030532.
Full textFerreira, Carolina, Vicente Leitune, Gabriela Balbinot, Felipe Degrazia, Marianna Arakelyan, Salvatore Sauro, and Fabricio Mezzomo Collares. "Antibacterial and Remineralizing Fillers in Experimental Orthodontic Adhesives." Materials 12, no. 4 (February 21, 2019): 652. http://dx.doi.org/10.3390/ma12040652.
Full textRao, Kummara Madhusudana, Kannan Badri Narayanan, Uluvangada Thammaiah Uthappa, Pil-Hoon Park, Inho Choi, and Sung Soo Han. "Tissue Adhesive, Self-Healing, Biocompatible, Hemostasis, and Antibacterial Properties of Fungal-Derived Carboxymethyl Chitosan-Polydopamine Hydrogels." Pharmaceutics 14, no. 5 (May 10, 2022): 1028. http://dx.doi.org/10.3390/pharmaceutics14051028.
Full textSchiroky, Priscila Raquel, Vicente Castelo Branco Leitune, Isadora Martini Garcia, Fabrício Aulo Ogliari, Susana Maria Werner Samuel, and Fabrício Mezzomo Collares. "Triazine Compound as Copolymerized Antibacterial Agent in Adhesive Resins." Brazilian Dental Journal 28, no. 2 (April 2017): 196–200. http://dx.doi.org/10.1590/0103-6440201701346.
Full textHan, Xiaoman, Guihua Meng, Qian Wang, Lin Cui, Hao Wang, Jianning Wu, Zhiyong Liu, and Xuhong Guo. "Mussel-inspired in situ forming adhesive hydrogels with anti-microbial and hemostatic capacities for wound healing." Journal of Biomaterials Applications 33, no. 7 (November 22, 2018): 915–23. http://dx.doi.org/10.1177/0885328218810552.
Full textAltankhishig, Bayarchimeg, Yasuhiro Matsuda, Futami Nagano-Takebe, Katsushi Okuyama, Hiroko Yamamoto, Masahiko Sakurai, Katsuaki Naito, et al. "Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability." Nanomaterials 12, no. 8 (April 11, 2022): 1291. http://dx.doi.org/10.3390/nano12081291.
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