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The role of cytokines, chemokines and growth factors in extraction socket healing

https://doi.org/10.33925/1683-3759-2021-26-1-58-63

Abstract

Relevance. Reparative processes in the extraction socket include hemostasis, inflammation, proliferation and tissue remodelling. These processes are caused by mediators which determine interactions in the immunoregulatory, cytokine network. After the tooth extraction, pro- and anti-inflammatory mediators are unbalanced. The number of macrophages, lymphocytes, neutrophils releasing lysosomal enzymes increases in the surrounding tissues, and it leads to cleaning of the extraction socket from the damaged tissues and microorganisms. The growth factors are of great importance for reparative processes. The level of cytokines, chemokines and growth factors in biological fluids is the assessment criterium of various physiological and pathological processes and effectiveness of the treatment procedures. Purpose – to assess the activity of the wound healing processes by studying the level of cytokines/ chemokines and growth factors in the extraction socket.
Materials and methods. The data received on examination of 40 patients was used in the study. 20 of the patients had their teeth extracted for chronic periodontitis and the socket healing was studied by clinical and laboratory findings (seven mediators of immunoregulatory processes were studied). The comparison group consisted of 20 subjects without periodontal pathology.
Results. Clinical data, typical for the normal socket healing, are characterized by the certain content of immunoregulatory mediators (IL1β and IL6 – proinflammatory cytokines, IL8 and MCP1 – chemokines, RAIL1 – anti-inflammatory cytokine, VEGF and TGFβ1- growth factors). The content of proinflammatory cytokines and chemokines was detected to increase in the socket on the first day after the extraction, which indicates the activity of the local inflammatory process. The level of RAIL 1 and VEGF and TGFβ1 growth factors increases in the extraction socket five days later.
Conclusion. The post-surgical activity of the inflammatory and regenerative processes in the tissues is revealed by the level of cytokines/ chemokines on the first day after surgery and the level of growth factors and RAIL1 in the socket discharge on the fifth day after surgery.

About the Authors

N. L. Erokina
Saratov State Medical University
Russian Federation

Erokina, Nadezhda L., PhD, MD, DSc, Professor of the department of surgical dentistry and maxillofacial surgery

Saratov



A. V. Lepilin
Saratov State Medical University
Russian Federation

Lepilin, Alexander V., PhD, MD, DSc, Professor, chief of the department of surgical dentistry and maxillofacial surgery

Saratov



A. Yu. Mironov
Saratov State Medical University
Russian Federation

Mironov, Alexey Yu., Assistant of the Department of Surgical Dentistry and Oral and Maxillofacial Surgery

Saratov



N. B. Zakharova
Saratov State Medical University
Russian Federation

Zakharova, Natalia B., PhD, MD, DSc, Professor of the department of Clinical Laboratory Diagnostics

Saratov



S. B. Fishtchev
St. Petersburg State Pediatric Medical University
Russian Federation

Fishchev, Sergey B., PhD, MD, DSc, Professor, Head of the department of the department of pediatric dentistry and orthodontics

Saint Petersburg



References

1. Koh T. J, DiPietro L. A. Inflammation and wound healing: the role of the macrophage. Expert Rev Mol Med. 2011;13:e23. https://doi.org/10.1017/S1462399411001943.

2. Zhao R., Liang H., Clarke E., Jackson C., Xue M. Inflammation in chronic wounds. Int J Mol Sci. 2016;17(12):2085. https://doi.org/10.3390/ijms17122085.

3. Park J. W., Hwang S. R., Yoon I. S. Advanced growth factor delivery systems in wound management and skin regeneration. Molecules. 2017;22:E1259. https://doi.org/10.3390/molecules22081259.

4. Olczyk P., Mencner Ł., Komosinska-Vassev K. The role of the extracellular matrix components in cutaneous wound healing. Bio Med Res Int. 2014;747584:1–8. https://doi.org/10.1155/2014/747584.

5. Barrientos S., Brem H., Stojadinovic O., Tomic-Canic M. Clinical application of growth factors and cytokines in wound healing. Wound Repair Regen. 2014;22(5):569–578. https://doi.org/10.1111/wrr.12205.

6. Ke J., Wilgus T. A. Vascular endothelial growth factor and angiogenesis in the regulation of cutaneous wound repair. Adv Wound Care (New Rochelle). 2014;3(10):647–661. https://doi.org/10.1089/wound.2013.0517.

7. Gilbert R. W. D., Vickaryous M. K., Viloria-Petit A M. Signalling by transforming growth factor beta isoforms in wound healing and tissue regeneration. J Dev Biol. 2016;4(2):21. https://doi.org/10.3390/jdb4020021.

8. Erokina, N.L., Lepilin, A.V., Zakharova, N.B., Rogatina, T.V., Lyapina, Y.A., Prokofiev, O.V. The profile of cytokines in the contents of periodontal pockets in patients with fractures of the lower jaw with periodontitis. Clinical laboratory diagnostics. 2011;10:6. Available at: https://www.elibrary.ru/item.asp?id=23285298.


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For citations:


Erokina NL, Lepilin AV, Mironov AY, Zakharova NB, Fishtchev SB. The role of cytokines, chemokines and growth factors in extraction socket healing. Parodontologiya. 2021;26(1):58-63. (In Russ.) https://doi.org/10.33925/1683-3759-2021-26-1-58-63

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ISSN 1683-3759 (Print)
ISSN 1726-7269 (Online)