يعرض 1 - 20 نتائج من 118 نتيجة بحث عن '"periodontitis agresiva"', وقت الاستعلام: 0.54s تنقيح النتائج
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    المصدر: Biomedica; Vol. 43 No. 1 (2023); 61-68 ; Biomédica; Vol. 43 Núm. 1 (2023); 61-68 ; 2590-7379 ; 0120-4157

    وصف الملف: application/pdf; text/xml

    Relation: https://revistabiomedica.org/index.php/biomedica/article/view/6690/5195; https://revistabiomedica.org/index.php/biomedica/article/view/6690/5311; Petersen PE, Ogawa H. Strengthening the prevention of periodontal disease: The WHO Approach. J Periodontol. 2005;76:2187-93. https://doi.org/10.1902/jop.2005.76.12.2187; Oppermann RV, Haas AN, Rösing CK, Susin C. Epidemiology of periodontal diseases in adults from Latin America. Periodontol 2000. 2015;67:13-33. https://doi.org/10.1111/prd.12061; Balwant R, Simmi K, Rajnish J, Suresh C. Biomarkers of periodontitis in oral fluids. J Oral Sci. 2008;50:53-6. https://doi.org/10.2334/josnusd.50.53; Papapanou PN, Sanz M, Budunelli N, Dietrich T, Feres M, Fine DH, et al. Periodontitis: Consensus report of workgroup 2 of the 2017 world workshop on the classification of periodontal and peri-implant diseases and conditions. J Periodontol. 2018;89(Suppl.1):S173-S82. https://doi.org/10.1002/JPER.17-0721; Skaleric U, Gaspirc B, McCartney-Francis N, Masera A, Wahl S. Proinflammatory and antimicrobial nitric oxide in gingival fluid of diabetic patients with periodontal disease. Infect Immun. 2006;74:7010-3. https://doi.org/10.1128/IAI.00071-06; Norskov-Lauritsen N, Kilian M. Reclassification of Actinobacillus actinomycetemcomitans, Haemophilus aphrophilus, Haemophilus paraphrophilus and Haemophilus segnis as Aggregatibacter actinomycetemcomitans gen. nov., comb. nov., Aggregatibacter aphrophilus comb. nov. and Aggregatibacter segnis comb. nov., and emended description; of Aggregatibacter aphrophilus to include V factor-dependent and V factor-independent isolates. Int J Sys Evol Microbiol. 2006;56:2135-46. https://doi.org/10.1099/ijs.0.64207-0; Okada H, Murakami S. Cytokine expression in periodontal health and disease. Crit Rev Oral Biol Med.1998;9:248-66. https://doi.org/10.1177/10454411980090030101; Armitage G. Development of a classification system for periodontal diseases and conditions. Ann Periodontol. 1999;4:1-7. https://doi.org/10.1902/annals.1999.4.1.1; Tonetti M, Mombelli A. Early-onset periodontitis. Ann Periodontol. 1999;4:39-52. https://doi.org/10.1902/annals.1999.4.1.39; Flemmig T, Lindhe J, Niklaus L. Periodontitis. Ann Periodontol. 1999;4:32-7. https://doi.org/10.1902/annals.1999.4.1.32; Groves J, Wang C. Nitric oxide synthase: Models and mechanisms. Curr Opin Chem Biol. 2000;4:687-95. https://doi.org/10.1016/s1367-5931(00)00146-0; Stangl K, Cascorbi I, Laule M, Klein T, Stangl V, Rost S, et al. High CA repeat numbers in intron 13 of the endothelial nitric oxide synthase gene and increased risk of coronary artery disease. Pharmacogenetics. 2000;10:133-40. https://doi.org/10.1097/00008571-200003000-00005; Lohinai Z, Szabó C. Role of nitric oxide in physiology and pathophysiology of periodontal tissues. Med Sci Monit. 1998;4:1089-95.; Reher V, Zenóbio E, Costa F, Reher P, Soares R. Nitric oxide levels in saliva increase with severity of chronic periodontitis. J Oral Sci. 2007;47:271-6. https://doi.org/10.2334/josnusd.49.271; Choudhari S, Chaudhary M, Bagde S, Gadbail A, Joshi V. Nitric oxide and cancer: A review. World J Surg Oncol. 2013;11:118. https://doi.org/10.1186/1477-7819-11-118; Wadhwa D, Bey A, Hasija M, Moin S, Kumar A, Aman S, et al. Determination of levels of nitric oxide in smoker and nonsmoker patients with chronic periodontitis. J Periodontal Implant Sci. 2013;43:215-20. https://doi.org/10.5051/jpis.2013.43.5.215; Schmidt H, Nau H, Wittfoht W, Gerlach J, Prescher K, Klein M, et al. Arginine is a physiological precursor of endothelium-derived nitric oxide. Eur J Pharmacol. 1988;154:213-16. https://doi.org/10.1016/0014-2999(88)90101-x; Wang Y, Huang X, He F. Mechanism and role of nitric oxide signaling in periodontitis. Exp Ther Med. 2019;18:3929-35. https://doi.org/10.3892/etm.2019.8044; Scarel-Caminaga RM, Cera FF, Pigossi SC, Finoti LS, Kim YJ, Viana AC, et al. Inducible nitric oxide synthase polymorphisms and nitric oxide levels in individuals with chronic periodontitis. Int J Mol Sci. 2017;18:1128. https://doi.org/10.3390/ijms18061128; Brandi M, Hukkanen M, Umeda T, Moradi-Bidhendi N, Bianchi S, Gross S, et al. Bidirectional regulation of osteoclast function by nitric oxide synthase isoforms. Proc Natl Acad Sci USA. 1995;92:2954-8. https://doi.org/10.1073/pnas.92.7.2954; Brennan P, Thomas G, Langdon J. The role of nitric oxide in oral diseases. Arch Oral Biol. 2003;48:93-100. https://doi.org/10.1016/s0003-9969(02)00183-8; Grabowski P, England A, Dykhuizen R, Copland M, Benjamin N, Reid DM, et al. Elevated nitric oxide production in rheumatoid arthritis: Detection using the fasting urinary nitrate: Creatinine ratio. Arthritis Rheum. 1996;39:643-7. https://doi.org/10.1002/art.1780390416; Sakurai H, Koshaka H, Lui M, Higashiyama H, Hirata Y, Kanno K, et al. Nitric oxide production and inducible nitric oxide synthase expression in inflammatory arthritides. J Clin Invest. 1995;96:2357-63. https://doi.org/10.1172/JCI118292; Hukkanen M, Hughes F, Buttery L, Gross S, Evans T, Seddon S, et al. Cytokine-stimulated expression of inducible nitric oxide synthase by mouse, rat and human osteoblast-like cells and its functional role in osteoblast metabolic activity. Endocrinology. 1995;136:5445-53. https://doi.org/10.1210/endo.136.12.7588294; McCarty M. Supplemental arginine and high dose folate may promote bone health by supporting the activity of endothelial-type nitric oxide synthase in bone. Med Hypotheses. 2005;64:1030-3. https://doi.org/10.1016/j.mehy.2003.10.036; MacIntyre I, Zaidi M, Toehidul A, Datta H, Moonga B, Lidbury P, et al. Osteoclastic inhibition: An action of nitric oxide not mediated by cyclic GMP. Proc Natl Acad Sci USA. 1991;88:2936-40. https://doi.org/10.1073/pnas.88.7.2936; Daghigh F, Borghaei R, Thornton R, Bee J. Human gingival fibroblasts produce nitric oxide in response to proinflammatory cytokines. J Periodontol. 2002;73:392-400. https://doi.org/10.1902/jop.2002.73.4.392; Sun S, Zhang D, Wu Y, Yan L, Liu J, Pan C, et al. The expression of the inducible nitric oxide synthase in the gingiva of rats with periodontitis and diabetes mellitus. Arch Oral Biol. 2020;112:104652. https://doi.org/10.1016/j.archoralbio.2020.104652; Lappin D, Kjeldsen M, Sander L, Kinane D. Inducible nitric oxide synthase expression in periodontitis. J Periodontal Res. 2000;35:369-73. https://doi.org/10.1034/j.1600-0765.2000.035006369.x; Batista A, Silva T, Chun J, Lara V. Nitric oxide synthesis and severity of human periodontal disease. Oral Dis. 2002;8:254-60. https://doi.org/10.1034/j.1601-0825.2002.02852.x; Fukada S, Silva T, Saconato I, Garlet G, Ávila-Campos M, Silva J, et al. iNOS-derived nitric oxide modulates infection-stimulated bone loss. J Dent Res. 2008;87:1155-9. https://doi.org/10.1177/154405910808701207; Damoulis P, Hauschka P. Nitric oxide acts in conjunction with pro-inflammatory cytokines to promote cell death in osteoblasts. J Bone Miner Res. 1997;12:412-22. https://doi.org/10.1359/jbmr.1997.12.3.412; Ralston S, Ho L, Helfrich M, Grabowski P, Johnston P, Benjamin N. Nitric oxide: A cytokineinduced regulator of bone resorption. J Bone Miner Res. 1995;10:1040-9. https://doi.org/10.1002/jbmr.5650100708; Löwik C, Nibbering P, van de Ruit M, Papapoulos S. Inducible production of nitric oxide in osteoblast-like cells and in fetal mouse bone explants is associated with suppression of osteoclastic bone resorption. J Clin Invest. 1994;93:1465-72. https://doi.org/10.1172/JCI117124; Herrera BS, Martins-Porto R, Maia-Dantas A, Campi P, Spolidorio LC, Costa SKP, et al. iNOS-derived nitric oxide stimulates osteoclast activity and alveolar bone loss in ligatureinduced periodontitis in rats. J Periodontol. 2011;82:1608-15. https://doi.org/10.1902/jop.2011.100768; Armour K, Armour K, Gallagher M, Gödecke A, Helfrich M, Reid D, et al. Defective bone formation and anabolic response to exogenous estrogen in mice with targeted disruption of endothelial nitric oxide synthase. Endocrinology. 2001;142:760-6. https://doi.org/10.1210/endo.142.2.7977; Sudo T, Okada Y, Ozaki K, Urayama K, Kanai M, Kobayashi H, et al. Association of NOD2 mutations with aggressive periodontitis. J Dent Res 2017;96:1100-5. https://doi.org/10.1177/0022034517715432; Mizuno N, Kume K, Nagatani Y, Matsuda S, Iwata T, Ouhara K, et al. Aggressive periodontitis and NOD2 variants. J Hum Genet. 2020;65:841-6. https://doi.org/10.1038/s10038-020-0777-z; https://revistabiomedica.org/index.php/biomedica/article/view/6690

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    Dissertation/ Thesis

    المؤلفون: Romero Fonseca, Adriana Zuleny

    المساهمون: Rey Buitrago, Mauricio, Genética clínica

    وصف الملف: xv, 34 páginas; application/pdf

    Relation: Aguillón G, Juan C, Cruzat C, Andrea, Cuenca M, Jimena, & Cuchacovich T, Miguel. (2002). El polimorfismo genético del factor de necrosis tumoral alfa como factor de riesgo en patología. Revista médica de Chile, 130(9), 1043-1050. https://dx.doi.org/10.4067/S0034-98872002000900013; Arrunategui, Ana María, Villegas, Adriana, Ocampo, Luz Ángela, Rodríguez, Libia María, & Badih, Abdelmounim. (2013). Frecuencias alélicas, genotípicas y haplotípicas del sistema HLA clase I y II en donantes de una población del suroccidente colombiano. Acta Medica Colombiana, 38(1), 16-21. Retrieved March 30, 2023, from http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0120-24482013000100006&lng=en&tlng=es.; Babel, N., Cherepnev, G.,Babel, D., Tropmann Alla and Hammer, M., Volk, H.-D., & Reinke, P. (2006). Analysis of tumor necrosis factor-alpha, transforming growth factor-beta, interleukin-10, IL-6, and interferon-gamma gene polymorphisms in patients with chronic periodontitis. JOURNAL OF PERIODONTOLOGY, 77(12), 1978–1983. https://doi.org/10.1902/jop.2006.050315; Barnea, T. V., Sava, A., Gentimir, C., Goriuc, A., Boisteanu, O., Chelaru, L., Iancu, R. I., Avram, C. A., Acatrinei, D. D., Bogza, E. G., Raducanu, O. C., Cioloca, D. P., Vasincu, D., & Costuleanu, M. (2015). Genetic polymorphisms of TNFA and IL-1A and generalized aggressive periodontitis. ROMANIAN JOURNAL OF MORPHOLOGY AND EMBRYOLOGY, 56(2), 459–464; Batool, A.-G. H., Saif, S. S., Raad, A.-A. S., & Ahmed, A. A. (2017a). Analysis of HLA-DQB1 Alleles Frequency in Patients with Chronic Periodontitis. International Journal of Medical Research & Health Sciences, 6(8), 12–16.; Berker, E., Eratalay, K., & Tepe, E. (2015). Analysis of TNF- a ( -308 ) polymorphism and gingival crevicular fluid TNF- a levels in aggressive and chronic periodontitis : A preliminary report. Cytokine, 72, 173–177. https://doi.org/10.1016/j.cyto.2015.01.001; Brett, P. M., Zygogianni, P., Griffiths, G. S., Tomaz, M., Parkar, M., D’Aiuto, F., & Tonetti, M. (2005). Functional Gene Polymorphisms in Aggressive and Chronic Periodontitis. JOURNAL OF DENTAL RESEARCH, 12, 1149–1153. https://doi.org/10.1177/154405910508401211; Cardoso, E. M., Reis, C., & Manzanares-Céspedes, M. C. (2018). Chronic periodontitis, inflammatory cytokines, and interrelationship with other chronic diseases. In Postgraduate Medicine (Vol. 130, Issue 1, pp. 98–104). Taylor and Francis Inc. https://doi.org/10.1080/00325481.2018.1396876; Cao Jea. Hyaluronan Increases RANKL Expression in Bone Marrow Stromal Cells Through CD44. J Bone Miner Res. 2005; 20(1); Costa, A. M., Guimaraes, M. C. M., Souza, E. R. de, & Nobrega, O. T. (2010). Interleukin-6 ( G-174C ) and tumour necrosis factor-alpha ( G-308A ) gene polymorphisms in geriatric patients with chronic periodontitis. Gerodontology, 27, 70–75. https://doi.org/10.1111/j.1741-2358.2009.00291.x; Craandijk, J., van Krugten, M. v, Verweij, C. L., van der Velden, U., & Loos, B. G. (2002). Tumor necrosis factor- a gene polymorphisms in relation to periodontitis. J Clin Periodontol, 29, 28–34; Craandijk, J., van Krugten, M. v, Verweij, C. L., & van der Velden U and Loos, B. G. (2002). Tumor necrosis factor-alpha gene polymorphisms in relation to periodontitis. JOURNAL OF CLINICAL PERIODONTOLOGY, 29(1), 28–34. https://doi.org/10.1034/j.1600-051x.2002.290105.x; Darvishi, E., Yari, K., Kahrizi, D., & Karim, H. A. (2016). Lack of association between the TNF-α-1031 genotypes and generalized aggressive periodontitis disease. Cell. Mol. Biol, 62(11), 62–65. https://doi.org/10.14715/cmb/; Donati, M., Berglundh, T., Hytonen, A. M., Hahn-Zoric, M., Hanson, L., & Padyukov, L. (2005). Association of the-159 CD14 gene polymorphism and lack of association of the-308 TNFA and Q551R IL-4RA polymorphisms with severe chronic periodontitis in Swedish Caucasians. JOURNAL OF CLINICAL PERIODONTOLOGY, 32(5), 474–479. https://doi.org/10.1111/j.1600-051X.2005.00697.x; Dosseva-Panova, V., Mlachkova, A., Popova, C., & Kicheva, M. (2015). Evaluation of Interleukin-6, Lymphotoxin-Α and Tnf-Α Gene Polymorphisms in Chronic Periodontitis. Journal of IMAB - Annual Proceeding (Scientific Papers), 21(3), 868–875. https://doi.org/10.5272/jimab.2015213.868; Ebadian, A. R., Radvar, M., Afshari, J. T., Sargolzaee, N., Brook, A., Ganjali, R., Tamizi, M., & Arab, H. R. (2013). Gene Polymorphisms of TNF-alpha and IL-1 beta Are Not Associated with Generalized Aggressive Periodontitis in an Iranian Subpopulation. IRANIAN JOURNAL OF ALLERGY ASTHMA AND IMMUNOLOGY, 12(4), 345–351; Endo, M., Tai, H., Tabeta, K., Kobayashi, T., Yamazaki, K., & Yoshie, H. (2001). Analysis of single nucleotide polymorphisms in the 5’-flanking region of tumor necrosis factor-alpha gene in Japanese patients with early-onset periodontitis. JOURNAL OF PERIODONTOLOGY, 72(11), 1554–1559. https://doi.org/10.1902/jop.2001.72.11.1554; Fassmann, A., Holla, L. I., Buckova, D., Vasku, A., Znojil, V., & Vanek, J. (2003). Polymorphisms in the+252(A/G) lymphotoxin-alpha and the-308(A/G) tumor necrosis factor-alpha genes and susceptibility to chronic periodontitis in a Czech population. JOURNAL OF PERIODONTAL RESEARCH, 38(4), 394–399. https://doi.org/10.1034/j.1600-0765.2003.00661.x; Feuk, L., Carson, A., & Scherer, S. (2006). Structural variation in the human genome. Nat Rev Genet., 7(2), 85‐97.; Figueredo, C. M., Lira-Junior, R., & Love, R. M. (2019). T and B Cells in Periodontal Disease: New Functions in A Complex Scenario. . International journal of molecular sciences, 20(16), 3949. doi:doi:10.3390/ijms20163949; Folwaczny, M., Glas, J., Torok, H. P., Mende, M., & Folwaczny, C. (2004). Lack of association between the TNF alpha G-308 A promoter polymorphism and periodontal disease. JOURNAL OF CLINICAL PERIODONTOLOGY, 31(6), 449–453. https://doi.org/10.1111/j.1600-051X.2004.00499.x; Galbraith, G. M. P., Hendley, T. M., Sanders, J. J., Palesch, Y., & Pandey, J. P. (1999). Polymorphic cytokine genotypes as markers of disease severity in adult periodontitis. JOURNAL OF CLINICAL PERIODONTOLOGY, 26(11), 705–709.; Galbraith, G. M. P., Steed, R. B., Sanders, J. J., & Pandey, J. P. (1998). Tumor necrosis factor alpha production by oral leukocytes: Influence of tumor necrosis factor genotype. JOURNAL OF PERIODONTOLOGY, 69(4), 428–433. https://doi.org/10.1902/jop.1998.69.4.428; Giovannetti de Menezes, N., & Colombo Vieira, A. P. (2008). Lack of association between the TNF- α -308 ( G / A ) genetic polymorphism and periodontal disease in Brazilians. Braz Oral Res, 22(4), 322–327; Gutiérrez, Iván Aurelio Páez; Hernández, David; Lozano, Diana María Vanegas; Rodríguez, Bernardo Armando Camacho; Arciniegas, Ana María Perdomo (2019). HLA-A, -B, -C, -DRB1 and –DQB1 allele and haplotype frequencies of 1463 umbilical cord blood units typed in high resolution from Bogotá, Colombia. Human Immunology, (), S0198885918309960–. doi:10.1016/j.humimm.2019.03.006; Hajeer, A., & Hutchinson, I. (2000). TNF-a Gene Polymorphism: Clinical and Biological Implications. Microsc. Res. Tech., 50 , 216-228.; Hajeer, H., & Hutchinson, I. (2001). Human Immunology, 62, 1191-1199.; Havlíček, J., Winternitz, J., & Craig Roberts. (2020). Jan Havlíček, JamieMajor histocompatibility complex-associated odour preferences and human mate choice: near and far horizons. Phil. Trans. R. Soc.; Highfield, J. (2009). Diagnosis and classification of periodontal disease. Australian Dental Journal, S11-S26.; Ho, Y.-P., Lin, Y.-C., Yang, Y.-H., Chou, Y.-H., Ho, K.-Y., Wu, Y.-M., & Tsai, C.-C. (2015). Analysis of tumor necrosis factor-alpha(-308) and lymphotoxin-alpha(+252) gene polymorphisms in Taiwanese patients with periodontitis. JOURNAL OF DENTAL SCIENCES, 10(3), 316–322. https://doi.org/10.1016/j.jds.2015.03.003; Ianni, M., Bruzzesi, G., Pugliese, D., Porcellini, E., Carbone, I., Schiavone, A., & Licastro, F. (2013). Variations in inflammatory genes are associated with periodontitis. IMMUNITY & AGEING, 10(39). https://doi.org/10.1186/1742-4933-10-39; Jaago M, Pupina N, Rähni A, Pihlak A, Sadam H, Vrana NE, Sinisalo J, Pussinen P, Palm K. Antibody response to oral biofilm is a biomarker for acute coronary syndrome in periodontal disease. Commun Biol. 2022 Mar 4;5(1):205. doi:10.1038/s42003-022-03122-4. PMID: 35246599; PMCID: PMC8897497.; Kazazoglu, E., & Korachi, M. (2011). A Comparative Study of the Role of Cytokine Polymorphisms Interleukin-10 and Tumor Necrosis Factor Alpha in Susceptibility to Implant Failure and Chronic Periodontitis. The International Journal of Oral & Maxillofacial Implants, 26(5), 955–960; Khammissa, R., Ballyram, R., Jadwat, Y., Fourie, J., Lemmer, J., & Feller, F. (octubre de 2018). Vitamin D Deficiency as It Relates to Oral Immunity and Chronic Periodontitis. Int J Dent.; Kim, H., Ae, E. K., Park, K., Shin, Y., Kang, J., Lim, J., Bhak, J., Lee, J., Chul, B., & Joo, K. J. (2020). Detection of association between periodontitis and polymorphisms of IL-1 β + 3954 and TNF- α -863 in the Korean population after controlling for confounding risk factors. J Periodont Res. 2020, 55, 905–917. https://doi.org/10.1111/jre.12783; Kumar, N., Kaur, G., Tandon, N., & Mehra, N. (2012). Tumor necrosis factor–associated susceptibility to type 1 diabetes is caused by linkage disequilibrium with HLA-DR3 haplotypes. Human Immunology, 566-573; Kumar, S. (2019). Evidence-Based Update on Diagnosis and Management of Gingivitis and Periodontitis. In Dental Clinics of North America (Vol. 63, Issue 1, pp. 69–81). W.B. Saunders. https://doi.org/10.1016/j.cden.2018.08.005; Laine, M. L., Moustakis, V., Koumakis, L., Potamias, G., & Loos, B. G. (2013). Modeling Susceptibility to Periodontitis. J DENT RES, 92(1), 45–50. https://doi.org/10.1177/0022034512465435; Lavu, V., Venkatesan, V., Bhaskar, L., Priyanka, V., Durairaj Pau, S. F., & Rao, S. R. (2016). Polymorphic Regions in Fcgr and Tnf Alpha Genes and Susceptibility to Chronic Periodontitis in a Cohort From South India. JOURNAL OF PERIODONTOLOGY, 1–15. https://doi.org/10.1902/jop.2016.150743; Lavu, V., Venkatesan, V., Venugopal, P., Lakkakula, B. V. K. S., Paul, S. F. D., Peria, K., & Rao, S. R. (2017). Clinical Relevance of Cytokines Gene Polymorphisms and Protein Levels in Gingival Cervical Fluid from Chronic Periodontitis Patients. IRANIAN JOURNAL OF IMMUNOLOGY, 14(1), 51–58; Libeth Criado; Oscar Flórez; Javier Martín; Clara Isabel González (2012). Genetic polymorphisms in TNFA/TNFR2 genes and Chagas disease in a Colombian endemic population. , 57(3), 0–401. doi:10.1016/j.cyto.2011.12.007; Loo, W. T. Y., Fan, C., Bai, L., Yue, Y., Dou, Y., Wang, M., Liang, H., Cheung, M. N. B., Chow, L. W. C., Li, J., Tian, Y., & Qing, L. (2012). Gene polymorphism and protein of human pro- and anti-inflammatory cytokines in Chinese healthy subjects and chronic periodontitis patients. Journal of Translational Medicine, 10(suppl 1), S8. https://doi.org/10.1186/1479-5876-10-S1-S8; Loos, B. G., John, R. P., & Laine, M. L. (2005). Identification of genetic risk factors for periodontitis and possible mechanisms of action. Journal of Clinical Periodontology, 36, 159–179; Lundmark, A., Hu, Y., Huss, M., Johannsen, G., Andersson, A. F., & & Yucel-Lindberg, T. (2019). Identification of Salivary Microbiota and Its Association With Host Inflammatory Mediators in Periodontitis. 9(216).; Majumder, P., Thou, K., Bhattacharya, M., Nair, V., Ghosh, S., & Dey, S. K. (2018). Association of tumor necrosis factor-alpha (TNF-alpha) gene promoter polymorphisms with aggressive and chronic periodontitis in the eastern Indian population. 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    Dissertation/ Thesis

    المؤلفون: Fernández Ortega, Baltasar

    المساهمون: Dutzan Muñoz, Nicolás Raúl, Abusleme Ramos, Loreto Andrea, Reyes Rojas, Montserrat de los Angeles, Arce Paniagua, Marion Elizabeth, Rodriguez Peña, Marcelo

    وصف الملف: application/pdf

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    Academic Journal
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    المؤلفون: Fillatreau, Lucas Paul Fabien

    المساهمون: Milian Medina, Lara

    Relation: Fillatreau, L. P. F. (2022). Influencia en el polimorfismo genético de las interleucinas en la aparición de periodontitis agresiva: revisión sistemática. [Trabajo Fin de Estudios, Universidad Europea de Valencia]. Repositorio de Trabajos Fin de Estudios TITULA; http://hdl.handle.net/20.500.12880/1879

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    Academic Journal
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    Academic Journal