Por favor, use este identificador para citar o enlazar este ítem:
http://repositorio.uan.edu.co/handle/123456789/2938
Registro completo de metadatos
Campo DC | Valor | Lengua/Idioma |
---|---|---|
dc.contributor.advisor | Vásquez Quijano, Adiel Alberto | - |
dc.contributor.advisor | Suárez Gélvez, Blanca Lynne | - |
dc.creator | Gutiérrez Pineda, Sasha Valentina | - |
dc.creator | Ureña Cáceres, Emily Daniela | - |
dc.date.accessioned | 2021-03-09T21:37:26Z | - |
dc.date.available | 2021-03-09T21:37:26Z | - |
dc.date.created | 2020-11-23 | - |
dc.identifier.uri | http://repositorio.uan.edu.co/handle/123456789/2938 | - |
dc.description | Propia | es_ES |
dc.description.abstract | The use of herbal medicine in dentistry has shown good results in the treatment of periodontal diseases, especially Eucalyptus essential oil, apart from being a good source of antimicrobials, especially against Gram negative bacteria, it has shown to have a good anti-inflammatory effect. Objective. To determine, based on a literature review, the in vitro antimicrobial effect of Eucalyptus globulus labill essential oil on Fusobacterium nucleatum, Porphyromonas gingivalis and Aggregatibacter actinomycetemcomitans. Materials and methods. A compilation of articles was made using different biomedical platforms such as Pubmed, Science Direct, Academic Google, SciELO and Latindex, in this search the publications related to the antimicrobial effect of the essential oil of Eucalyptus globulus labill on periodontopathogens were identified, obtaining in total 48 articles with publication dates between 2000-2020, full text and written in English, Portuguese and Spanish. Results. The information from different minimum inhibitory concentrations (MIC) of the essential oil of Eucalyptus globulus Labill were compiled. According to what was reported by the different authors, for P. gingivalis a MIC of 0.28mg/ml is necessary; F. nucleatum is 1.14mg/ml and A. actinomycetemcomitans is 9.13mg/ml. Conclusion. It was determined, through literature review, that Eucalyptus globulus Labill essential oil has an antimicrobial effect on Fusobacterium nucleatum, Porphyromonas gingivalisand Aggregatibacter actinomycetemcomitans, where it was evidenced that a longer exposure time to the essential oil is necessary in the latter. Keywords. Fusobacterium nucleatum, Porphyromonas gingivalis, Aggregatibacter actinomycetemcomitans, herbal medicine, essential oil, Eucalyptus. | es_ES |
dc.description.tableofcontents | El uso de la fitoterapia en odontología ha mostrado buenos resultados en el tratamiento de las enfermedades periodontales en especial el aceite esencial de Eucalipto, aparte de ser una buena fuente de antimicrobianos, especialmente contra bacterias Gram negativas, ha mostrado tener un buen efecto como antiinflamatorio. Objetivo. Determinar con base en una revisión de literatura, el efecto antimicrobiano in vitro del aceite esencial de Eucalyptus globulus labill sobre Fusobacterium nucleatum, Porphyromonas gingivalis y Aggregatibacter actinomycetemcomitans. Materiales y Métodos. Se realizó una recopilación de artículos en donde se utilizaron diferentes plataformas biomédicas como Pubmed, Science Direct, Google académico, SciELO y Latindex, en dicha búsqueda se identificaron las publicaciones relacionadas al efecto antimicrobiano del aceite esencial de Eucalyptus globulus labill sobre periodontopatógenos, obteniendo en total 48 artículos con fechas de publicación entre los años 2000-2020, texto completo y escritos en idioma inglés, portugués y español. Resultados. Se recopiló información de las distintas concentraciones mínimas inhibitorias (CMI) del aceite esencial de Eucalyptus globulus Labill que según lo reportado por los diferentes autores, para P. gingivalis es necesaria una CMI de 0.28mg/ml; F. nucleatum es de 1.14mg/ml y A. actinomycetemcomitans es de 9,13mg/ml. Conclusión. Se determinó, mediante revisión de la literatura, que el aceite esencial de Eucalyptus globulus Labill posee efecto antimicrobiano sobre Fusobacterium nucleatum, Porphyromonas gingivalis y Aggregatibacter actinomycetemcomitans en donde se evidencio que en este último es necesario un mayor tiempo de exposición al aceite esencial. Palabras claves. Fusobacterium nucleatum, Porphyromonas gingivalis, Aggregatibacter actinomycetemcomitans, herbal medicine, essential oil, Eucalyptus. | es_ES |
dc.language.iso | spa | es_ES |
dc.publisher | Universidad Antonio Nariño | es_ES |
dc.rights | Atribución-SinDerivadas 3.0 Estados Unidos de América | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nd/3.0/us/ | * |
dc.source | instname:Universidad Antonio Nariño | es_ES |
dc.source | reponame:Repositorio Institucional UAN | es_ES |
dc.source | instname:Universidad Antonio Nariño | es_ES |
dc.source | reponame:Repositorio Institucional UAN | es_ES |
dc.subject | Fusobacterium nucleatum | es_ES |
dc.subject | Porphyromonas gingivalis | es_ES |
dc.subject | Aggregatibacter actinomycetemcomitans | es_ES |
dc.subject | Fitoterapia | es_ES |
dc.subject | Aceites esenciales | es_ES |
dc.subject | Eucalipto | es_ES |
dc.title | Efecto antimicrobiano in vitro del aceite esencial eucalyptus globulus labill sobre fusobacterium nucleatum, porphyromonas gingivalis y aggregatibacter actinomycetemcomitans. Revisión de la literatura | es_ES |
dc.publisher.program | Odontología | es_ES |
dc.rights.accesRights | openAccess | es_ES |
dc.subject.keyword | Fusobacterium nucleatum | es_ES |
dc.subject.keyword | Porphyromonas gingivalis | es_ES |
dc.subject.keyword | Aggregatibacter actinomycetemcomitans | es_ES |
dc.subject.keyword | Herbal medicine | es_ES |
dc.subject.keyword | Essential oil | es_ES |
dc.subject.keyword | Eucalyptus | es_ES |
dc.type.spa | Trabajo de grado (Pregrado y/o Especialización) | es_ES |
dc.type.hasVersion | info:eu-repo/semantics/acceptedVersion | es_ES |
dc.source.bibliographicCitation | Åberg, C. H., Kelk, P., & Johansson, A. (2015). Aggregatibacter actinomycetemcomitans: virulence of its leukotoxin and association with aggressive periodontitis. Virulence, 6(3), 188–195. | es_ES |
dc.source.bibliographicCitation | Akkaoui, S., & Ennibi, O. K. (2017). Use of traditional plants in management of halitosis in a Moroccan population. Journal of Intercult Ethnopharmacology, 6(3), 267-273. | es_ES |
dc.source.bibliographicCitation | Akkaoui, S., Johansson, A., Yagoubi, M., Haubek, D., El Hamidi, A., Rida, S.,… Ennibi, O. (2020). Chemical Composition, Antimicrobial activity, in Vitro Cytotoxicity and Leukotoxin Neutralization of Essential Oil from Origanum vulgare against Aggregatibacter actinomycetemcomitans. Pathogens, 9(192), 1-14. | es_ES |
dc.source.bibliographicCitation | Aldoghaim, F.S., Flematti, G.R., & Hammer, K.A. (2018). Antimicrobial Activity of Several Cineole-RichWestern Australian Eucalyptus Essential Oils. Microorganisms, 6(4), 122-133. | es_ES |
dc.source.bibliographicCitation | Almeida, L. C., Andrade, C., & Teixeira, R. R. (2016). Chemical Variability and Biological Activities of Eucalyptus spp. Essential Oils. Molecules, 21(12), 1-33. | es_ES |
dc.source.bibliographicCitation | Bankur, P. K., Mathew, M., Almalki, S. A., Jalaluddin, M., Jayanti, I., & Durgaraju, M. (2019). An In Vitro Evaluation of Antibacterial Efficacy of Various Concentration of Eucalyptus globulus Leaf Extract on Periodontal Pathogens. The Journal of Contemporary Dental Practice, 20(9), 1041-1044. | es_ES |
dc.source.bibliographicCitation | Bao, K., Belibasakis, G. N., Thurnheer, T., Aduse-Opoku, J., Curtis, M. A., & Bostanci, N. (2014). Role of Porphyromonas gingivalis gingipains in multi-species biofilm formation. BMC microbiology, 14(258), 1-8. | es_ES |
dc.source.bibliographicCitation | Belibasakis, G. N., Maula, T., Bao, K., Lindholm, M., Bostanci, N., Oscarsson, J.,…Johansson, A. (2019). Virulence and Pathogenicity Properties of Aggregatibacter actinomycetemcomitans. Pathogens (Basel, Switzerland), 8(4), 222-245. | es_ES |
dc.source.bibliographicCitation | Bonilla, D. M., Mendoza, Y., Moncada, C. E., Murcia, O., Rojas, A. P., Calle, J., Pinzon, R., y Nerio, L. (2016). Efecto del aceite esencial de Rosmarinus officinalis sobre Porphyromonas gingivalis cultivada in vitro. Revista colombiana de ciencias químico farmacéuticas, 45(2), 275-287. | es_ES |
dc.source.bibliographicCitation | Bostanci, N., & Belibasakis, G. (2012). Porphyromonas gingivalis: an invasive and evasive opportunistic oral pathogen. Federation of European Microbiological Societies Microbiol Lett, 333(2012), 1-9. | es_ES |
dc.source.bibliographicCitation | Brochot, A., Guilbot, A., Haddioui, L., & Roques, C. (2017). Antibacterial, antifungal, and antiviral effects of three essential oil blends. MicrobiologyOpen, 6(4), 1-6. | es_ES |
dc.source.bibliographicCitation | Coppenhagen-Glazer, S., Sol, A., Abed, J., Naor, R., Zhang, X., Han, Y. W., & Bachrach, G. (2015). Fap2 of Fusobacterium nucleatum is a galactose-inhibitable adhesin involved in coaggregation, cell adhesion, and preterm birth. Infection and immunity, 83(3), 1104–1113. | es_ES |
dc.source.bibliographicCitation | Damjanović-Vratnica1, B., Đakov, T., Šuković, D. &Damjanović, J. (2011). Antimicrobial Effect of Essential Oil Isolated from Eucalyptus globulus Labill from Montenegro. Czech Journal of Food Sciences, 29(3), 277-284. | es_ES |
dc.source.bibliographicCitation | Díaz, J., Yáñez, J., Melgar, S., Álvarez, C., Rojas, C., y Vernal, R. (2012). Virulencia y variabilidad de Porphyromonas gingivalis y Aggregatibacter actinomycetemcomitans y su asociación a la periodontitis. Revista clínica de periodoncia, implantología y rehabilitación oral, 5(1), 40-45. | es_ES |
dc.source.bibliographicCitation | De Andrade, K. Q., Almeida-da-Silva, C., & Coutinho-Silva, R. (2019). Immunological Pathways Triggered by Porphyromonas gingivalis and Fusobacterium nucleatum: Therapeutic Possibilities?. Mediators of inflammation, 2019, 1-20. | es_ES |
dc.source.bibliographicCitation | De Godoi, S. N., Maciel, P., Rorato, M., Nascimento, K., Wagner, R., Klein, B.,…Ferreira, A. (2017). Evaluation of Stability and In Vitro Security of Nanoemulsions Containing Eucalyptus globulus Oil. BioMed Research International, 2017, 1-11. | es_ES |
dc.source.bibliographicCitation | De Oliveira, S. (2016). The effect of a homoeopathic and herbal Mouthwash formulation on the growth of Streptococcus salivarius and Fusobacterium nucleatum in vitro. (Tesis de PhD), Universidad de Johannesburg, Johannesburg, Sudáfrica. | es_ES |
dc.source.bibliographicCitation | De Oliveira, J. S., Pinto, M. E., Santana, L. A., Pinto, A. S., Di Lenardo, D., & Vasconcelos, D. F. (2016). Biological Effects of Medicinal Plants on Induced Periodontitis: A Systematic Review. International journal of dentistry, 2016(3719879), 1-10. | es_ES |
dc.source.bibliographicCitation | Elaissi, A., Rouis, Z., Mabrouk, S., Salah, K. B., Aouni, M., Khouja, M. L., Farhat, F.,…Harzallah-Skhiri, F. (2012). Correlation between chemical composition and antibacterial activity of essential oils from fifteen Eucalyptus species growing in the Korbous and Jbel Abderrahman arboreta (North East Tunisia). Molecules (Basel, Switzerland), 17(3), 3044–3057. Elaissi, A., Rouis, Z., Salem, N. A., Mabrouk, S., Ben Salem, Y., Salah, K. B.,…Khouja, M. L. (2012). Chemical composition of 8 eucalyptus species' essential oils and the evaluation of their antibacterial, antifungal and antiviral activities. BMC complementary and alternative medicine, 12(81), 1-15. | es_ES |
dc.source.bibliographicCitation | Enersen, M., Nakano, K., & Amano, A. (2013) Porphyromonas gingivalis fimbriae. Journal of Oral Microbiology, 5(1), 1-10. | es_ES |
dc.source.bibliographicCitation | Erriu, M., Pili, F. M., Tuveri, E., Pigliacampo, D., Scano, A., Montaldo, C.,… Orrù, G. (2013). Oil Essential Mouthwashes Antibacterial Activity against Aggregatibacter actinomycetemcomitans: A Comparison between Antibiofilm and Antiplanktonic Effects. International journal of dentistry, 2013, 1-5. | es_ES |
dc.source.bibliographicCitation | Fardini, Y., Wang, X., Témoin, S., Nithianantham, S., Lee, D., Shoham, M., & Han, Y. W. (2011). Fusobacterium nucleatum adhesin FadA binds vascular endothelial cadherin and alters endothelial integrity. Molecular microbiology, 82(6), 1468–1480. | es_ES |
dc.source.bibliographicCitation | Ghaffar, A., Yameen, M., Kiran, S., Kamal, S., Jalal, F., Munir, B.,… Jabbar, A. (2015). Chemical Composition and in-Vitro Evaluation of the Antimicrobial and Antioxidant Activities of Essential Oils Extracted from Seven Eucalyptus Species. Molecules (Basel, Switzerland), 20(1), 20487–20498. | es_ES |
dc.source.bibliographicCitation | Guerrero, B., Mojica, G., y Solano, K. (2018). Efecto antibacteriano del principio activo cinecol vs aceite esencial eucalipto sobre Porphyromonas gingivalis. (Tesis de pregrado). Universidad Antonio Nariño, Cúcuta, Colombia. | es_ES |
dc.source.bibliographicCitation | Guven, Y., Ustun, N., Aksakal S. D., Topcuoglu, N., Aktoren, O., & Kulekci, G. (2018). Assessment of the endodontic microbiota of abscessed primary teeth using microarray technology. Indian Journal of Dental Research, 29(6), 781-786. | es_ES |
dc.source.bibliographicCitation | Han, Y. W., Shi, W., Huang, G. T., Kinder Haake, S., Park, N. H., Kuramitsu, H., & Genco, R. J. (2000). Interactions between periodontal bacteria and human oral epithelial cells: Fusobacterium nucleatum adheres to and invades epithelial cells. Infection and immunity, 68(6), 3140–3146. | es_ES |
dc.source.bibliographicCitation | Hans, V. M., Grover, H. S., Deswal, H., & Agarwal, P. (2016). Antimicrobial Efficacy of Various Essential Oils at Varying Concentrations against Periopathogen Porphyromonas gingivalis. Journal of clinical and diagnostic research, 10(9), 16–19. | es_ES |
dc.source.bibliographicCitation | Harkat-Madouri, L., Asma, B., Madani, K., Si Said, Z. B-O., Rigou, P., Grenier D., AllalouH.,…Boulekbache-Makhlouf, L. (2015). Chemical composition, antibacterial and antioxidant activities of essential oil of Eucalyptus globulus from Algeria. Industrial Crops and Products, 78(2015), 148–153. | es_ES |
dc.source.bibliographicCitation | Herbert, B. A., Novince, C. M., & Kirkwood, K. L. (2016). Aggregatibacter actinomycetemcomitans, a potent immunoregulator of the periodontal host defense system and alveolar bone homeostasis. Molecular oral microbiology, 31(3), 207–227. | es_ES |
dc.source.bibliographicCitation | How, K. Y., Song, K. P., & Chan, K. G. (2016). Porphyromonas gingivalis: An Overview of Periodontopathic Pathogen below the Gum Line. Frontiers in microbiology, 7(53), 1-14. | es_ES |
dc.source.bibliographicCitation | Johansson, A. (2011). Aggregatibacter actinomycetemcomitans leukotoxin: a powerful tool with capacity to cause imbalance in the host inflammatory response. Toxins, 3(3), 242–259. | es_ES |
dc.source.bibliographicCitation | Juiz, P. J., Lucchese, A. M., Gambari, R., Piva, R., Penolazzi, L., Di Ciano, M., Trovatti, A. P.,…Avila-Campos, M. J. (2015). Essential oils and isolated compounds from Lippia alba leaves and flowers: Antimicrobial activity and osteoclast apoptosis. International journal of molecular medicine, 35(1), 211-217. | es_ES |
dc.source.bibliographicCitation | Karbach, J., Ebenezer, S., Warnke, P. H., Behrens, E., & Al-Nawas, B. (2015). Antimicrobial effect of Australian antibacterial essential oils as alternative to common antiseptic solutions against clinically relevant oral pathogens. Clinical laboratory, 61(1-2), 61–68. | es_ES |
dc.source.bibliographicCitation | Kaur, M., & Kachlany, S. C. (2014). Aggregatibacter actinomycetemcomitans leukotoxin (LtxA; Leukothera) induces cofilin dephosphorylation and actin depolymerization during killing of malignant monocytes. Microbiology (Reading, England), 160(11), 2443–2452. | es_ES |
dc.source.bibliographicCitation | Lof, M., Janus, M. M., & Krom, B. P. (2017). Metabolic Interactions between Bacteria and Fungi in Commensal Oral Biofilms. Journal of fungi (Basel, Switzerland), 3(40), 1-13. | es_ES |
dc.source.bibliographicCitation | López, M. (2005). Actinobacillus actinomycetemcomitans y Porphyromas ginngivalis en relación a las periodontitis agresivas. Revista Estomatológica Herediana, 15(2), 178 - 183. | es_ES |
dc.source.bibliographicCitation | Maghsoodlou, M. T., Kazemipoor, N., Valizadeh, J., Seifi1, F. N., & Rahneshan, N. (2015). Essential oil composition of Eucalyptus microtheca and Eucalyptus viminalis. Avicenna journal of phytomedicine, 5(6), 540-552. | es_ES |
dc.source.bibliographicCitation | Mekonnen, A., Yitayew, B., Tesema, A., & Taddese, S. (2016). In Vitro Antimicrobial Activity of Essential Oil of Thymus schimperi, Matricariachamomilla, Eucalyptus globulus, and Rosmarinus officinalis. International Journal of Microbiology, 2016(1), 1-8. | es_ES |
dc.source.bibliographicCitation | Ministerio de Salud y Protección Social. IV Estudio Nacional de Salud Bucal: ENSAB IV 2013-2014. Bogotá DC: Unión Temporal Sistemas Especializados de Información SEI S.A. | es_ES |
dc.source.bibliographicCitation | Morales, A., Gandolfo, A., Bravo, J., Carvajal, P., Silva, N., Godoy, C., Garcia-Sesnich, J.,…Gamonal, J. (2018). Microbiological and clinical effects of probiotics and antibiotics on nonsurgical treatment of chronic periodontitis: a randomized placebo- controlled trial with 9-month follow-up. Journal of Applied Oral Science, 26(1), 1-9. | es_ES |
dc.source.bibliographicCitation | Mulyaningsih, S., Sporer, F., Reichling, J., & Wink, M. (2011). Antibacterial activity of essential oils from Eucalyptus and of selected components against multidrug-resistant bacterial pathogens. Pharmaceutical biology, 49(9), 893–899. | es_ES |
dc.source.bibliographicCitation | Ololade, Z. S., & Olawore, N. O. (2017). Characterization of Essential Oil from the Seed of Eucalyptus cloeziana and Evaluation of its Modes of Medicinal Potentials. Edorium Journal of Infectious Diseases, 3(1), 1–8. | es_ES |
dc.source.bibliographicCitation | Olsen, I., & Singhrao, S. K. (2018). Importance of heterogeneity in Porhyromonas gingivalis lipopolysaccharide lipid A in tissue specific inflammatory signalling. Journal of oral microbiology, 10(1440128), 1-10. | es_ES |
dc.source.bibliographicCitation | Oscarsson, J., Claesson, R., Lindholm, M., Höglund Åberg, C., & Johansson, A. (2019). Tools of Aggregatibacter actinomycetemcomitans to Evade the Host Response. Journal of clinical medicine, 8(7), 1079-1091. | es_ES |
dc.source.bibliographicCitation | Pardo, C. G., Monsalve, G. S., Erira, A., Espinosa, Y., y Jaramillo, G. I. (2017). Efecto antimicrobiano del aceite esencial de Citrus reticulata sobre Fusobacterium nucleatum asociada a enfermedad periodontal. Revista Colombiana de Biotecnología, 19(2), 7-14. | es_ES |
dc.source.bibliographicCitation | Park, J., Shokeen, B., Haake, S. K., & Lux, R. (2016). Characterization of Fusobacterium nucleatum ATCC 23726 adhesins involved in strain-specific attachment to Porphyromonas gingivalis. International Journal of Oral Science, 8(3), 138–144. | es_ES |
dc.source.bibliographicCitation | Ragul, P., Dhanraj, M., & Ashish, R. J. (2018). Efficacy of eucalyptus oil over chlorhexidine mouthwash in dental practice. Drug Invention Today, 10(5), 638-641. | es_ES |
dc.source.bibliographicCitation | Raja, M., Ummer, F., & Dhivakar, C. P. (2014). Aggregatibacter actinomycetemcomitans - a tooth killer?. Journal of clinical and diagnostic research: JCDR, 8(8), ZE13–ZE16. | es_ES |
dc.source.bibliographicCitation | Ramos, D., Moromi, H. y Martínez, E. (2011). Porphyromonas gingivalis: patógeno predominante en la periodontitis crónica. Revista Odontología Sanmarquina, 14(1), 34-38. | es_ES |
dc.source.bibliographicCitation | Sebei, K., Sakouhi, F., Herchi, W., Khouja, M. L., & Boukhchin, S. (2015). Chemical composition and antibacterial activities of seven Eucalyptus species essential oils leaves. Biological Research, 48(7), 1-7. | es_ES |
dc.source.bibliographicCitation | Shah, R., Donde, R., Mitra, D., Rodrigues, S., Shetty, G., Prithyani, S., & Vijayakar, H. (2018). Herbal periodontology- a review. International Journal For Research In Health Sciences And Nursing, 4(9), 1-10. | es_ES |
dc.source.bibliographicCitation | Simsek, M., & Duman, R. (2017). Investigation of effect of 1,8-cineole on antimicrobial activity of chlorhexidine gluconate. Farmacognosy Research, 9(3), 234-237. | es_ES |
dc.source.bibliographicCitation | Sudhoff, H., Klenke, C., Greiner, J. F., Müller, J., Brotzmann, V., Ebmeyer, J., Kaltschmidt, B.,…Kaltschmidt, C. (2015). 1,8-Cineol Reduces Mucus-Production in a Novel Human Ex Vivo Model of Late Rhinosinusitis. Public Library of Science ONE, 10(7), 1-12. | es_ES |
dc.source.bibliographicCitation | Thurnheer, T., Karygianni, L., Flury, M., & Belibasakis, G. N. (2019). Fusobacterium Species and Subspecies Differentially Affect the Composition and Architecture of Supra- and Subgingival Biofilms Models. Frontiers Microbiology, 10(1716), 1-11. | es_ES |
dc.source.bibliographicCitation | Vega, B. A., Belinka, B. A., Jr, & Kachlany, S. C. (2019). Aggregatibacter actinomycetemcomitans Leukotoxin (LtxA; Leukothera®): Mechanisms of Action and Therapeutic Applications. Toxins, 11(9), 489-510. | es_ES |
dc.source.bibliographicCitation | Velusamy, S. K., Sampathkumar, V., Ramasubbu, N., Paster, B. J. & Fine, D. H. (2019). Aggregatibacter actinomycetemcomitans colonization and persistence in a primate model. Proceedings of the National Academy of Sciences, 116(44), 22307-22313. | es_ES |
dc.source.bibliographicCitation | Vinod, K. S., Sunil, K. S., Sethi, P., Bandla, R. C., Singh, S., & Patel, D. (2018). A Novel Herbal Formulation versus Chlorhexidine Mouthwash in Efficacy against Oral Microflora. Journal of International Society of Preventive & Community Dentistry, 8(2), 184–190. | es_ES |
dc.source.bibliographicCitation | Winska, K., Maczka, W., Łyczko, L., Grabarczyk, M., Czubaszek, A., &Szumny, A. (2019). Essential Oils as Antimicrobial Agents—Myth or Real Alternative?. Molecules, 24(11), 1-21. | es_ES |
dc.source.bibliographicCitation | Xie, H. (2015). Biogenesis and function of Porphyromonas gingivalis outer membrane vesicles. Future microbiology, 10(9), 1517–1527. | es_ES |
dc.source.bibliographicCitation | Yadav, H. K., Yadav, R. K., Chandra, A., & Thakkar, R. R. (2016). The effectiveness of eucalyptus oil, orange oil, and xylene in dissolving different endodontic sealers. Journal of conservative dentistry, 19(4), 332–337. | es_ES |
dc.source.bibliographicCitation | Yadav, N., & Chandra, H. (2017) Suppression of inflammatory and infection responses in lung macrophages by eucaliptus oil and its constituent 1,8-cineole: Role of pattern recognition receptors TREM-1 and NLRP3, the MAP kinase regulator MKP-1, and NFκB. Public Library of Science ONE, 12(11), 1-19. | es_ES |
dc.source.bibliographicCitation | Zerón, A., y Porras, D. (2016). Fusobacterium nucleatum ¿Un patógeno periodontal promotor de carcinogénesis colorrectal?. Revista ADM, 73(6), 280-285. | es_ES |
dc.description.degreename | Odontólogo(a) | es_ES |
dc.description.degreelevel | Pregrado | es_ES |
dc.publisher.faculty | Facultad de Odontología | es_ES |
dc.description.notes | Presencial | es_ES |
dc.creator.cedula | 1090522036 | es_ES |
dc.creator.cedula | 1090528839 | es_ES |
dc.publisher.campus | Cúcuta | - |
Aparece en las colecciones: | Odontología |
Ficheros en este ítem:
Fichero | Tamaño | |
---|---|---|
2020_SashaGutiérrez | 1.73 MB | Visualizar/Abrir |
2020_SashaGutiérrez_Autorización Restricted Access | 1.2 MB | Visualizar/Abrir Request a copy |
Este ítem está sujeto a una licencia Creative Commons Licencia Creative Commons