DOI:

10.37988/1811-153X_2022_4_119

Electrokinetic indices of erythrocytes in assessing the effectiveness of NO-therapy in elder patients with odontogenic phlegmon

Authors

  • B.Ya. Agadzhanyan 1, postgraduate at the the Surgical Dentistry and Implantology Department
    ORCID: 0000-0001-7353-153X
  • M.A. Amkhadova 1, PhD in Medical Sciences, full professor of the Surgical Dentistry and Implantology Department
    ORCID: 0000-0002-9105-0796
  • I.A. Vasilenko 1, 2, PhD in Medical Sciences, full professor, head of the Biomedical research Laboratory; professor of the Inorganic and analytical Chemistry Department
    ORCID: 0000-0002-6374-9786
  • 1 Moscow Regional Research Clinical Institute (MONIKI), 129110, Moscow, Russia
  • 2 Kosygin University, 115035, Moscow, Russia

Abstract

Timely diagnostics of odontogenic purulent-inflammatory complications after dental surgery, prognosis of their course and evaluation of treatment efficacy remains an actual problem of dentistry. The risk group consists of persons older than 65 years old, in whom moderate or severe forms, atypical prolonged course of the disease and delayed regeneration are more often manifested. The aim of the study to evaluate he efficacy of exogenous nitrogen therapy in elderly and senile patients with odontogenic phlegmons using the express method of peripheral blood erythrocyte microelectrophoresis. >. We examined 34 patients with odontogenic phlegmon aged from 67 to 78 years. At the stage of postoperative treatment 18 patients additionally underwent NO-therapy procedures, 16 patients received only conventional treatment. Electrokinetic indices of erythrocytes were used as criteria for evaluating the effectiveness of therapy: mean value of oscillation amplitude; fraction of mobile cells. >. In patients with odontogenic phlegmon before treatment the proportion of mobile erythrocytes was 78—81% (vs 96% in the control), and the amplitude of their oscillations decreased more than 2-fold. After the NO-therapy sessions, the electrokinetic parameters practically corresponded to the normal values. In the group with conventional therapy, the results were less satisfactory. >. NO-therapy is a pathogenetically oriented method of treatment in patients with odontogenic phlegmon, which corrects disturbances of cellular homeostasis and the clinical course of the purulent process. Electrokinetic parameters of erythrocytes can be considered as informative and objective indicators of the effectiveness of the therapy when monitoring the patient’s condition.

Key words:

exogenous nitric oxide, NO-therapy, odontogenic phlegmons, erythrocytes, electrophoretic mobility, elderly patient

For Citation

[1]
Agadzhanyan B.Ya., Amkhadova M.A., Vasilenko I.A. Electrokinetic indices of erythrocytes in assessing the effectiveness of NO-therapy in elder patients with odontogenic phlegmon. Clinical Dentistry (Russia).  2022; 25 (4): 119—123. DOI: 10.37988/1811-153X_2022_4_119

References

  1. Nikitin A.A., Sipkin A.M., Akhtyamov D.V. Organizational and Methodical Approaches to the Management of Patients with Maxillofacial Traumas in Moscow Region. Medical Technologies. Assessment and Choice. 2017; 3 (29): 59—64 (In Russ.). eLIBRARY ID: 30503740
  2. Vu V.C., Avetikov D.S., Kravchenko S.B. Modern view of the etiology and pathogenesis of odontogenic abscesses and phlegmon maxillofacial region. Bulletin of Problems Biology and Medicine. 2014; 2 (107): 79—84 (In Russ.). eLIBRARY ID: 23454006
  3. Böttger S., Zechel-Gran S., Schmermund D., Streckbein P., Wilbrand J.F., Knitschke M., Pons-Kühnemann J., Hain T., Weigel M., Imirzalioglu C., Howaldt H.P., Domann E., Attia S. Clinical Relevance of the Microbiome in Odontogenic Abscesses. Biology (Basel). 2021; 10 (9): 916. PMID: 34571794
  4. Malykh M.S., Mellin R.V., Sivolapov K.A., Vasil’ev Yu.L. Post-traumatic mandibular deformation due to untimely medical treatment. Clinical Dentistry (Russia). 2022; 1: 66—72 (In Russ.). eLIBRARY ID: 48156201
  5. Fusconi M., Greco A., Galli M., Polimeni A., Yusef M., Di Cianni S., De Soccio G., Federici Stanganelli F.R., Lombardi R., de Vincentiis M. Odontogenic phlegmons and abscesses in relation to the financial situation of Italian families. Minerva Stomatol. 2019; 68 (5): 236—241. PMID: 31822047
  6. Ghali S., Katti G., Shahbaz S., Chitroda P.K., V. A., Divakar D.D., Khan A.A., Naik S., Al-Kheraif A.A., Jhugroo C. Fascial space odontogenic infections: Ultrasonography as an alternative to magnetic resonance imaging. World J Clin Cases. 2021; 9 (3): 573—580. PMID: 33553395
  7. Boev IosifA., Godovalov AnatoliyP., Shtraube GalinaI., Antakov GlebI. Intensity of endogenous intoxication in patients with facial phlegmon and comorbid pathology. Actual Problems in Dentistry. 2018; 1: 71—75 (In Russ.). eLIBRARY ID: 32840694
  8. Pham Dang N., Delbet-Dupas C., Mulliez A., Devoize L., Dallel R., Barthélémy I. Five predictors affecting the prognosis of patients with severe odontogenic infections. Int J Environ Res Public Health. 2020; 17 (23): E8917. PMID: 33266250
  9. Pallegedara C., Ekanayake L. Effect of tooth loss and denture status on oral health-related quality of life of older individuals from Sri Lanka. Community Dent Health. 2008; 25 (4): 196—200. PMID: 19149294
  10. Dzevishek Y.A., Kuznetsov S.V., Shevchenko O.V. On the desirability of socially significant target programs of preventive dentistry for the elderly and senile age. Modern Problems of Science and Education. 2016; 5: 39 (In Russ.). eLIBRARY ID: 27181662
  11. Pinelis Y.I. Resistance of oral cavity in elderly people and senile age. Transbaikalian Medical Bulletin. 2014; 2: 153—161 (In Russ.). eLIBRARY ID: 21633615
  12. von Buedingen F., Hammer M.S., Meid A.D., Müller W.E., Gerlach F.M., Muth C. Changes in prescribed medicines in older patients with multimorbidity and polypharmacy in general practice. BMC Fam Pract. 2018; 19 (1): 131. PMID: 30055583
  13. Scutariu M.M., Forna N. Dental esthetics—instrument for recreating a new facial esthetic to the elderly patient. Rev Med Chir Soc Med Nat Iasi. 2014; 118 (1): 186—93. PMID: 24741798
  14. Weise H., Naros A., Weise C., Reinert S., Hoefert S. Severe odontogenic infections with septic progress a constant and increasing challenge: a retrospective analysis. BMC Oral Health. 2019; 19 (1): 173. PMID: 31375095
  15. Chan C.Y., Cheng C.F., Shui H.A., Ku H.C., Su W.L. Erythrocyte degradation, metabolism, secretion, and communication with immune cells in the blood during sepsis: A review. Tzu Chi Med J. 2022; 34 (2): 125—133. PMID: 35465286
  16. McMahon T.J., Darrow C.C., Hoehn B.A., Zhu H. Generation and export of red blood cell ATP in health and disease. Front Physiol. 2021; 12: 754638. PMID: 34803737
  17. Elblbesy M.A., Moustafa M.E. The impact of biophysical properties of erythrocytes on their aggregation. Int J Biomed Sci. 2017; 13 (2): 113—118. PMID: 28824347
  18. Deryugina A.V., Rumyantsev T.V. Electrokinetic and clinic-laboratory parameters of blood of patients with various etiology pathology. Postgraduate doctor. 2016; 6.1: 160—165 (In Russ.). eLIBRARY ID: 27441106
  19. Marakhonich L.A., Bordenyuk V.I., Pekshev A.V., Vagapov A.B. Effective clinical use of no-containing gas flow generated by air-plasma in outpatient settings. Ambulatory Surgery (Russia). 2016; 1—2: 97—101 (In Russ.). eLIBRARY ID: 25870050
  20. Shulutko A.M., Osmanov E.G., Gogokhiya T.R., Khmyrova S.E. Application of plasma flows in soft tissue infection. Grekov’s Bulletin of Surgery. 2017; 1: 65—69 (In Russ.). eLIBRARY ID: 28868239

Received

October 1, 2022

Accepted

November 3, 2022

Published on

December 21, 2022