Levels of IL-23/IL-17 Axis in Plasma and Gingival Tissue of Periodontitis Patients According to the New Classification
Abstract
:1. Introduction
2. Materials and Methods
2.1. Ethical Approval and Informed Consent
2.2. Study Subjects
2.3. Periodontal Clinical Parameters
2.4. Study Groups
2.5. Plasma Sample Collection
2.6. Gingival Tissue Collection and Protein Extraction
2.7. Enzyme-Linked Immunosorbent Assay (ELISA)
2.8. Statistical Analysis
3. Results
3.1. Demographic Characteristics and Clinical Parameters
3.2. Levels of IL-23/IL-17A Axis and Soluble Receptors in Plasma
3.3. Levels of IL-23/IL-17A Axis and Receptors in the Gingival Tissue
3.4. Correlation between IL-23, IL-17A, IL-23R, and IL-17RA with Clinical Parameters in Plasma and Gingival Tissue
3.5. Power and Effect Size
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Papapanou, P.N.; Sanz, M.; Buduneli, N.; Dietrich, T.; Feres, M.; Fine, D.H.; Flemmig, T.F.; Garcia, R.; Giannobile, W.V.; Graziani, F.; 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. Clin. Periodontol. 2018, 45 (Suppl. S2), S162–S170. [Google Scholar] [CrossRef] [PubMed]
- Hajishengallis, G. The Inflammophilic Character of the Periodontitis-Associated Microbiota. Mol. Oral Microbiol. 2014, 29, 248–257. [Google Scholar] [CrossRef] [PubMed]
- Kinane, D.F.; Stathopoulou, P.G.; Papapanou, P.N. Periodontal Diseases. Nat. Rev. Dis. Prim. 2017, 3, 17038. [Google Scholar] [CrossRef] [PubMed]
- Díaz-Zúñiga, J.; Monasterio, G.; Alvarez, C.; Melgar-Rodríguez, S.; Benítez, A.; Ciuchi, P.; García, M.; Arias, J.; Sanz, M.; Vernal, R. Variability of the Dendritic Cell Response Triggered by Different Serotypes of Aggregatibacter Actinomycetemcomitans or Porphyromonas Gingivalis Is Toll-Like Receptor 2 (TLR2) or TLR4 Dependent. J. Periodontol. 2015, 86, 108–119. [Google Scholar] [CrossRef]
- Cheng, W.; Asten, S.D.; Burns, L.A.; Evans, H.G.; Walter, G.J.; Hashim, A.; Hughes, F.J.; Taams, L.S. Periodontitis-associated Pathogens P. Gingivalis and A. Actinomycetemcomitans Activate Human CD14 + Monocytes Leading to Enhanced Th17/IL-17 Responses. Eur. J. Immunol. 2016, 46, 2211–2221. [Google Scholar] [CrossRef]
- Ivanov, I.I.; McKenzie, B.S.; Zhou, L.; Tadokoro, C.E.; Lepelley, A.; Lafaille, J.J.; Cua, D.J.; Littman, D.R. The Orphan Nuclear Receptor RORγt Directs the Differentiation Program of Proinflammatory IL-17+ T Helper Cells. Cell 2006, 126, 1121–1133. [Google Scholar] [CrossRef]
- Langrish, C.L.; Chen, Y.; Blumenschein, W.M.; Mattson, J.; Basham, B.; Sedgwick, J.D.; McClanahan, T.; Kastelein, R.A.; Cua, D.J. IL-23 Drives a Pathogenic T Cell Population That Induces Autoimmune Inflammation. J. Exp. Med. 2005, 201, 233–240. [Google Scholar] [CrossRef]
- Sato, K.; Suematsu, A.; Okamoto, K.; Yamaguchi, A.; Morishita, Y.; Kadono, Y.; Tanaka, S.; Kodama, T.; Akira, S.; Iwakura, Y.; et al. Th17 Functions as an Osteoclastogenic Helper T Cell Subset That Links T Cell Activation and Bone Destruction. J. Exp. Med. 2006, 203, 2673–2682. [Google Scholar] [CrossRef]
- Lin, D.; Li, L.; Sun, Y.; Wang, W.; Wang, X.; Ye, Y.; Chen, X.; Xu, Y. Interleukin-17 Regulates the Expressions of RANKL and OPG in Human Periodontal Ligament Cells via TRAF6/TBK1-JNK/NF-κ B Pathways. Immunology 2015, 144, 472–485. [Google Scholar] [CrossRef]
- Kan, S.; Mancini, G.; Gallagher, G. Identification and Characterization of Multiple Splice Forms of the Human Interleukin-23 Receptor α Chain in Mitogen-Activated Leukocytes. Genes Immun. 2008, 9, 631–639. [Google Scholar] [CrossRef]
- Franke, M.; Schröder, J.; Monhasery, N.; Ackfeld, T.; Hummel, T.M.; Rabe, B.; Garbers, C.; Becker-Pauly, C.; Floss, D.M.; Scheller, J. Human and Murine Interleukin 23 Receptors Are Novel Substrates for A Disintegrin and Metalloproteases ADAM10 and ADAM17. J. Biol. Chem. 2016, 291, 10551–10561. [Google Scholar] [CrossRef] [PubMed]
- Sohda, M.; Misumi, Y.; Tashiro, K.; Yamazaki, M.; Saku, T.; Oda, K. Identification of a Soluble Isoform of Human IL-17RA Generated by Alternative Splicing. Cytokine 2013, 64, 642–645. [Google Scholar] [CrossRef]
- Nile, C.J.; Apatzidou, D.A.; Awang, R.A.; Riggio, M.P.; Kinane, D.F.; Lappin, D.F. The Effect of Periodontal Scaling and Root Polishing on Serum IL-17E Concentrations and the IL-17A: IL-17E Ratio. Clin. Oral Investig. 2016, 20, 2529–2537. [Google Scholar] [CrossRef] [PubMed]
- Himani, G.S.; Prabhuji, M.L.V.; Karthikeyan, B. V Gingival Crevicular Fluid and Interleukin-23 Concentration in Systemically Healthy Subjects: Their Relationship in Periodontal Health and Disease. J. Periodontal Res. 2014, 49, 237–245. [Google Scholar] [CrossRef] [PubMed]
- Liukkonen, J.; Gürsoy, U.K.; Pussinen, P.J.; Suominen, A.L.; Könönen, E. Salivary Concentrations of Interleukin (IL)-1β, IL-17A, and IL-23 Vary in Relation to Periodontal Status. J. Periodontol. 2016, 87, 1484–1491. [Google Scholar] [CrossRef]
- Sadeghi, R.; Sattari, M.; Dehghan, F.; Akbari, S. Interleukin-17 and Interleukin-23 Levels in Gingival Crevicular Fluid of Patients with Chronic and Aggressive Periodontitis. Cent. J. Immunol. 2018, 43, 76–80. [Google Scholar] [CrossRef]
- Shimada, Y.; Tabeta, K.; Sugita, N.; Yoshie, H. Profiling Biomarkers in Gingival Crevicular Fluid Using Multiplex Bead Immunoassay. Arch. Oral Biol. 2013, 58, 724–730. [Google Scholar] [CrossRef]
- Rodríguez-Montaño, R.; Bernard-Medina, A.G.; Oregon-Romero, E.; del Carmen Martínez-Rodríguez, V.M.; Pita-López, M.L.; Gómez-Meda, B.C.; Guerrero-Velázquez, C. IL-23/IL-17 Axis and Soluble Receptors Isoforms SIL-23R and SIL-17RA in Patients with Rheumatoid Arthritis-presenting Periodontitis. J. Clin. Lab. Anal. 2021, 35, e23963. [Google Scholar] [CrossRef]
- Cifcibasi, E.; Koyuncuoglu, C.; Ciblak, M.; Badur, S.; Kasali, K.; Firatli, E.; Cintan, S. Evaluation of Local and Systemic Levels of Interleukin-17, Interleukin-23, and Myeloperoxidase in Response to Periodontal Therapy in Patients with Generalized Aggressive Periodontitis. Inflammation 2015, 38, 1959–1968. [Google Scholar] [CrossRef]
- Peña-Echeverría, P.A.; Rodríguez-Montaño, R.; del Carmen Ruiz-Gutiérrez, A.; del Carmen Martínez-Rodríguez, V.M.; Gómez-Meda, B.C.; Cervantes-Cabrera, J.J.; Guerrero-Velázquez, C. Determination of the Concentration of IL-23 and the Soluble Receptor to IL-17 (IL-17RA) in Serum and Plasma of Patients with Chronic and Aggressive Periodontitis: A Pilot Study. Rev. Mex. Periodontol. 2018, 8, 46–53. [Google Scholar]
- Vernal, R.; Dutzan, N.; Chaparro, A.; Puente, J.; Antonieta Valenzuela, M.; Gamonal, J. Levels of Interleukin-17 in Gingival Crevicular Fluid and in Supernatants of Cellular Cultures of Gingival Tissue from Patients with Chronic Periodontitis. J. Clin. Periodontol. 2005, 32, 383–389. [Google Scholar] [CrossRef]
- Fu, Q.-Y.; Zhang, L.; Duan, L.; Qian, S.-Y.; Pang, H.-X. Correlation of Chronic Periodontitis in Tropical Area and IFN-γ, IL-10, IL-17 Levels. Asian Pac. J. Trop. Med. 2013, 6, 489–492. [Google Scholar] [CrossRef]
- del Carmen Ruiz-Gutiérrez, A.; de la Cruz Herrera-Mora, M.; Zamora-Pérez, A.L.; Meléndez-Ruiz, J.L.; del Carmen Martínez-Rodríguez, V.; Guerrero-Velázquez, C. Determinación de Los Niveles de IL-17 En El Líquido Crevicular Gingival de Pacientes Con Periodontitis Crónica y Agresiva. Rev. Mex. Periodontol. 2014, 5, 46–50. [Google Scholar]
- Batool, H.; Nadeem, A.; Kashif, M.; Shahzad, F.; Tahir, R.; Afzal, N. Salivary Levels of IL-6 and IL-17 Could Be an Indicator of Disease Severity in Patients with Calculus Associated Chronic Periodontitis. BioMed Res. Int. 2018, 2018, 8531961. [Google Scholar] [CrossRef]
- Javed, F.; Al-Zawawi, A.S.; Allemailem, K.S.; Almatroudi, A.; Mehmood, A.; Divakar, D.D.; Al-Kheraif, A.A. Periodontal Conditions and Whole Salivary IL-17A and -23 Levels among Young Adult Cannabis Sativa (Marijuana)-Smokers, Heavy Cigarette-Smokers and Non-Smokers. Int. J. Environ. Res. Public Health 2020, 17, 7435. [Google Scholar] [CrossRef]
- Ozçaka, O.; Nalbantsoy, A.; Buduneli, N. Interleukin-17 and Interleukin-18 Levels in Saliva and Plasma of Patients with Chronic Periodontitis. J. Periodontal Res. 2011, 46, 592–598. [Google Scholar] [CrossRef]
- Isaza-Guzmán, D.M.; Cardona-Vélez, N.; Gaviria-Correa, D.E.; Martínez-Pabón, M.C.; Castaño-Granada, M.C.; Tobón-Arroyave, S.I. Association Study between Salivary Levels of Interferon (IFN)-Gamma, Interleukin (IL)-17, IL-21, and IL-22 with Chronic Periodontitis. Arch. Oral Biol. 2015, 60, 91–99. [Google Scholar] [CrossRef]
- Johnson, R.B.; Wood, N.; Serio, F.G. Interleukin-11 and IL-17 and the Pathogenesis of Periodontal Disease. J. Periodontol. 2004, 75, 37–43. [Google Scholar] [CrossRef]
- Takahashi, K.; Azuma, T.; Motohira, H.; Kinane, D.F.; Kitetsu, S. The Potential Role of Interleukin-17 in the Immunopathology of Periodontal Disease. J. Clin. Periodontol. 2005, 32, 369–374. [Google Scholar] [CrossRef]
- Ohyama, H.; Kato-Kogoe, N.; Kuhara, A.; Nishimura, F.; Nakasho, K.; Yamanegi, K.; Yamada, N.; Hata, M.; Yamane, J.; Terada, N. The Involvement of IL-23 and the Th17 Pathway in Periodontitis. J. Dent. Res. 2009, 88, 633–638. [Google Scholar] [CrossRef]
- Del Carmen Ruíz-Gutiérrez, A.; Rodríguez-Montaño, R.; Pita-López, M.L.; Zamora-Perez, A.L.; Guerrero-Velázquez, C. Inverse Behavior of IL-23R and IL-17RA in Chronic and Aggressive Periodontitis. J. Periodontal Implant Sci. 2021, 51, 254. [Google Scholar] [CrossRef] [PubMed]
- Franco-Topete, R.; Zepeda-Nuño, J.S.; Zamora-Perez, A.L.; Fuentes-Lerma, M.G.; Gómez-Meda, B.C.; Guerrero-Velázquez, C. IFN-ΓR2 Is Strongly Expressed on Endothelial Cells of Gingival Tissues from Patients with Chronic Periodontitis. J. Appl. Oral Sci. 2018, 26, 522–529. [Google Scholar] [CrossRef] [PubMed]
- Sánchez-Hernández, P.E.; Zamora-Perez, A.L.; Fuentes-Lerma, M.; Robles-Gómez, C.; Mariaud-Schmidt, R.P.; Guerrero-Velázquez, C. IL-12 and IL-18 Levels in Serum and Gingival Tissue in Aggressive and Chronic Periodontitis. Oral Dis. 2011, 17, 522–529. [Google Scholar] [CrossRef] [PubMed]
- Caton, J.G.; Armitage, G.; Berglundh, T.; Chapple, I.L.C.; Jepsen, S.; Kornman, K.S.; Mealey, B.L.; Papapanou, P.N.; Sanz, M.; Tonetti, M.S. A New Classification Scheme for Periodontal and Peri-Implant Diseases and Conditions—Introduction and Key Changes from the 1999 Classification. J. Periodontol. 2018, 89, S1–S8. [Google Scholar] [CrossRef]
- Van Dyke, T.E.; Bartold, P.M.; Reynolds, E.C. The Nexus Between Periodontal Inflammation and Dysbiosis. Front. Immunol. 2020, 11, 511. [Google Scholar] [CrossRef]
- Medara, N.; Lenzo, J.C.; Walsh, K.A.; Darby, I.B.; O’Brien-Simpson, N.M.; Reynolds, E.C. T Helper 17 Cell-Related Cytokines in Serum and Saliva during Management of Periodontitis. Cytokine 2020, 134, 155186. [Google Scholar] [CrossRef]
- Ghoreschi, K.; Laurence, A.; Yang, X.-P.; Tato, C.M.; McGeachy, M.J.; Konkel, J.E.; Ramos, H.L.; Wei, L.; Davidson, T.S.; Bouladoux, N.; et al. Generation of Pathogenic TH17 Cells in the Absence of TGF-β Signalling. Nature 2010, 467, 967–971. [Google Scholar] [CrossRef]
- de Almeida Guardiola, C.J.; Clemente-Napimoga, J.T.; Martinez, E.F.; Abdalla, H.B.; Peruzzo, D.C.; Joly, J.C.; Napimoga, M.H. DC-STAMP and TACE Levels Are Higher in Patients with Periodontitis. Braz. Dent. J. 2020, 31, 122–126. [Google Scholar] [CrossRef]
- Kinoshita, N.; Awano, S.; Yoshida, A.; Soh, I.; Ansai, T. Periodontal Disease and Gene-Expression Levels of Metalloendopeptidases in Human Buccal Mucosal Epithelium. J. Periodontal Res. 2013, 48, 606–614. [Google Scholar] [CrossRef]
- Aebersold, R.; Mann, M. Mass Spectrometry-Based Proteomics. Nature 2003, 422, 198–207. [Google Scholar] [CrossRef]
- Sivanesan, D.; Beauchamp, C.; Quinou, C.; Lee, J.; Lesage, S.; Chemtob, S.; Rioux, J.D.; Michnick, S.W. IL23R (Interleukin 23 Receptor) Variants Protective against Inflammatory Bowel Diseases (IBD) Display Loss of Function Due to Impaired Protein Stability and Intracellular Trafficking. J. Biol. Chem. 2016, 291, 8673–8685. [Google Scholar] [CrossRef] [PubMed]
- Yetkin Ay, Z.; Sütçü, R.; Uskun, E.; Bozkurt, F.; Berker, E. The Impact of the IL-11:IL-17 Ratio on the Chronic Periodontitis Pathogenesis: A Preliminary Report. Oral Dis. 2009, 15, 93–99. [Google Scholar] [CrossRef] [PubMed]
- Zhang, L.; Zhou, P.; Wei, P.; Cong, X.; Wu, L.; Hua, H. Expression of Interleukin-17 in Primary Sjögren’s Syndrome and the Correlation with Disease Severity: A Systematic Review and Meta-Analysis. Scand. J. Immunol. 2018, 87, e12649. [Google Scholar] [CrossRef] [PubMed]
- Beringer, A.; Miossec, P. Systemic Effects of IL-17 in Inflammatory Arthritis. Nat. Rev. Rheumatol. 2019, 15, 491–501. [Google Scholar] [CrossRef] [PubMed]
- Kutwin, M.; Migdalska-Sęk, M.; Brzeziańska-Lasota, E.; Zelga, P.; Woźniacka, A. An Analysis of IL-10, IL-17A, IL-17RA, IL-23A and IL-23R Expression and Their Correlation with Clinical Course in Patients with Psoriasis. J. Clin. Med. 2021, 10, 5834. [Google Scholar] [CrossRef]
- Lucaciu, L.A.; Ilieș, M.; Vesa Ștefan, C.; Seicean, R.; Din, S.; Iuga, C.A.; Seicean, A. Serum Interleukin (IL)-23 and IL-17 Profile in Inflammatory Bowel Disease (IBD) Patients Could Differentiate between Severe and Non-Severe Disease. J. Pers. Med. 2021, 11, 1130. [Google Scholar] [CrossRef]
- Ridgley, L.A.; Anderson, A.E.; Pratt, A.G. What Are the Dominant Cytokines in Early Rheumatoid Arthritis? Curr. Opin. Rheumatol. 2018, 30, 207–214. [Google Scholar] [CrossRef]
- De Molon, R.S.; Rossa, C.; Thurlings, R.M.; Cirelli, J.A.; Koenders, M.I. Linkage of Periodontitis and Rheumatoid Arthritis: Current Evidence and Potential Biological Interactions. Int. J. Mol. Sci. 2019, 20, 4541. [Google Scholar] [CrossRef]
- Roos, A.B.; Mori, M.; Gura, H.K.; Lorentz, A.; Bjermer, L.; Hoffmann, H.J.; Erjefält, J.S.; Stampfli, M.R. Increased IL-17RA and IL-17RC in End-Stage COPD and the Contribution to Mast Cell Secretion of FGF-2 and VEGF. Respir. Res. 2017, 18, 48. [Google Scholar] [CrossRef]
- Van Baarsen, L.G.M.; Lebre, M.C.; van der Coelen, D.; Aarrass, S.; Tang, M.W.; Ramwadhdoebe, T.H.; Gerlag, D.M.; Tak, P.P. Heterogeneous Expression Pattern of Interleukin 17A (IL-17A), IL-17F and Their Receptors in Synovium of Rheumatoid Arthritis, Psoriatic Arthritis and Osteoarthritis: Possible Explanation for Nonresponse to Anti-IL-17 Therapy? Arthritis Res. Ther. 2014, 16, 426. [Google Scholar] [CrossRef]
- Raychaudhuri, S.P.; Raychaudhuri, S.K.; Genovese, M.C. IL-17 Receptor and Its Functional Significance in Psoriatic Arthritis. Mol. Cell. Biochem. 2012, 359, 419–429. [Google Scholar] [CrossRef]
- Kuestner, R.E.; Taft, D.W.; Haran, A.; Brandt, C.S.; Brender, T.; Lum, K.; Harder, B.; Okada, S.; Ostrander, C.D.; Kreindler, J.L.; et al. Identification of the IL-17 Receptor Related Molecule IL-17RC as the Receptor for IL-17F. J. Immunol. 2007, 179, 5462–5473. [Google Scholar] [CrossRef]
- Wang, Y.-H.; Angkasekwinai, P.; Lu, N.; Voo, K.S.; Arima, K.; Hanabuchi, S.; Hippe, A.; Corrigan, C.J.; Dong, C.; Homey, B.; et al. IL-25 Augments Type 2 Immune Responses by Enhancing the Expansion and Functions of TSLP-DC-Activated Th2 Memory Cells. J. Exp. Med. 2007, 204, 1837–1847. [Google Scholar] [CrossRef]
- Bi, C.; Sun, L.; Qu, H.; Chen, F.; Tian, B.; Chen, F. The Relationship between T-helper Cell Polarization and the RANKL/OPG Ratio in Gingival Tissues from Chronic Periodontitis Patients. Clin. Exp. Dent. Res. 2019, 5, 377–388. [Google Scholar] [CrossRef]
- Thorbert-Mros, S.; Larsson, L.; Kalm, J.; Berglundh, T. Interleukin-17–Producing T Cells and Interleukin-17 MRNA Expression in Periodontitis and Long-standing Gingivitis Lesions. J. Periodontol. 2019, 90, 516–521. [Google Scholar] [CrossRef]
- De Aquino, S.G.; Talbot, J.; Sônego, F.; Turato, W.M.; Grespan, R.; Avila-Campos, M.J.; Cunha, F.Q.; Cirelli, J.A. The Aggravation of Arthritis by Periodontitis Is Dependent of IL-17 Receptor A Activation. J. Clin. Periodontol. 2017, 44, 881–891. [Google Scholar] [CrossRef]
- Wendling, D.; Verhoeven, F.; Prati, C. Anti-IL-17 Monoclonal Antibodies for the Treatment of Ankylosing Spondylitis. Expert Opin. Biol. Ther. 2019, 19, 55–64. [Google Scholar] [CrossRef]
- Rothstein, B.; Gottlieb, A. Secukinumab for Treating Plaque Psoriasis. Expert Opin. Biol. Ther. 2016, 16, 119–128. [Google Scholar] [CrossRef]
- Tomalin, L.E.; Russell, C.B.; Garcet, S.; Ewald, D.A.; Klekotka, P.; Nirula, A.; Norsgaard, H.; Suàrez-Fariñas, M.; Krueger, J.G. Short-Term Transcriptional Response to IL-17 Receptor-A Antagonism in the Treatment of Psoriasis. J. Allergy Clin. Immunol. 2020, 145, 922–932. [Google Scholar] [CrossRef]
- Deodhar, A.; Helliwell, P.S.; Boehncke, W.-H.; Kollmeier, A.P.; Hsia, E.C.; Subramanian, R.A.; Xu, X.L.; Sheng, S.; Agarwal, P.; Zhou, B.; et al. Guselkumab in Patients with Active Psoriatic Arthritis Who Were Biologic-Naive or Had Previously Received TNFα Inhibitor Treatment (DISCOVER-1): A Double-Blind, Randomised, Placebo-Controlled Phase 3 Trial. Lancet 2020, 395, 1115–1125. [Google Scholar] [CrossRef]
- Vidal, S.; Puig, L.; Carrascosa-Carrillo, J.-M.; González-Cantero, Á.; Ruiz-Carrascosa, J.-C.; Velasco-Pastor, A.-M. From Messengers to Receptors in Psoriasis: The Role of IL-17RA in Disease and Treatment. Int. J. Mol. Sci. 2021, 22, 6740. [Google Scholar] [CrossRef] [PubMed]
- Iznardo, H.; Puig, L. The Safety of Brodalumab for the Treatment of Psoriasis. Expert Opin. Drug Saf. 2020, 19, 365–372. [Google Scholar] [CrossRef] [PubMed]
HS | P | |
---|---|---|
Gender M/F | 6/22 | 8/26 |
Age (years) | 37.26 ± 1.82 | 40.85 ± 2.06 * |
PD (mm) | 2.14 ± 0.13 | 4.87 ± 0.4 * |
CAL (mm) | 1.02 ± 0.2 | 5.24 ± 0.49 * |
BoP% | 0.52 ± 0.52 | 22.65 ± 6.77 * |
RBL% | - | 60.55 ± 5.18 |
PD GT (mm) | 2.31 ± 0.11 | 5.21 ± 0.44 * |
CAL GT (mm) | 1.07 ± 0.25 | 5.47 ± 0.46 * |
BoP GT% | 1.38 ± 1.38 | 24.47 ± 8.56 |
Stage III | - | 26 |
Stage IV | - | 8 |
Grade A | - | 17 |
Grade B | - | 11 |
Grade C | - | 6 |
IL-23 | sIL-23R | IL-17A | sIL-17RA | IL-23-GT | IL-23R-GT | IL-17A-GT | IL-17RA-GT | |
---|---|---|---|---|---|---|---|---|
Power | 0.99 * | 0.098 | 1 * | 0.99 * | 0.43 | 1 * | 0.99 * | 1 * |
Effect size | 1.04 * | 0.075 | 2.02 * | 0.89 * | 0.37 | 2.61 * | 1.46 * | 2.55 * |
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Rodríguez-Montaño, R.; Ruiz-Gutiérrez, A.d.C.; Martínez-Rodríguez, V.M.d.C.; Gómez-Sandoval, J.R.; Guzmán-Flores, J.M.; Becerra-Ruiz, J.S.; Zamora-Perez, A.L.; Guerrero-Velázquez, C. Levels of IL-23/IL-17 Axis in Plasma and Gingival Tissue of Periodontitis Patients According to the New Classification. Appl. Sci. 2022, 12, 8051. https://doi.org/10.3390/app12168051
Rodríguez-Montaño R, Ruiz-Gutiérrez AdC, Martínez-Rodríguez VMdC, Gómez-Sandoval JR, Guzmán-Flores JM, Becerra-Ruiz JS, Zamora-Perez AL, Guerrero-Velázquez C. Levels of IL-23/IL-17 Axis in Plasma and Gingival Tissue of Periodontitis Patients According to the New Classification. Applied Sciences. 2022; 12(16):8051. https://doi.org/10.3390/app12168051
Chicago/Turabian StyleRodríguez-Montaño, Ruth, Alondra del Carmen Ruiz-Gutiérrez, Vianeth María del Carmen Martínez-Rodríguez, Juan Ramón Gómez-Sandoval, Juan Manuel Guzmán-Flores, Julieta Sarai Becerra-Ruiz, Ana Lourdes Zamora-Perez, and Celia Guerrero-Velázquez. 2022. "Levels of IL-23/IL-17 Axis in Plasma and Gingival Tissue of Periodontitis Patients According to the New Classification" Applied Sciences 12, no. 16: 8051. https://doi.org/10.3390/app12168051
APA StyleRodríguez-Montaño, R., Ruiz-Gutiérrez, A. d. C., Martínez-Rodríguez, V. M. d. C., Gómez-Sandoval, J. R., Guzmán-Flores, J. M., Becerra-Ruiz, J. S., Zamora-Perez, A. L., & Guerrero-Velázquez, C. (2022). Levels of IL-23/IL-17 Axis in Plasma and Gingival Tissue of Periodontitis Patients According to the New Classification. Applied Sciences, 12(16), 8051. https://doi.org/10.3390/app12168051