Effect of photodynamic doses of laser irradiation on endogenous intoxication indices

Authors

  • F.A. Bakhritdinova Ocular Disease Department, Tashkent Medical Academy, Tashkent, Uzbekistan
  • K.I. Narzikulova Ocular Disease Department, Tashkent Medical Academy, Tashkent, Uzbekistan
  • S.Sh. Mirrakhimova Ocular Disease Department, Tashkent Medical Academy, Tashkent, Uzbekistan

DOI:

https://doi.org/10.31288/oftalmolzh201543537

Keywords:

photodynamic therapy, endogenous intoxication, middle-weight molecules (MWM)

Abstract

Background: One of the promising areas in ophthalmology is photodynamic therapy (PDT).

Purpose: To assess the effect of laser irradiation of the rat eye at the doses applied in PDT (without photosensitizer) on endogenous intoxication indices.

Materials and Methods: Fifty rats were used to investigate the effect of different modes of photodynamic irradiation of the rat eye on changes in endogenous intoxication indices over time.

Results: Exposure to 630-nm laser irradiation of 300-mJ pulsed mode (3 min) and 60-J photodynamic dose (PDD) mode (15 s) does not result in the development of endogenous intoxication. According to the literature, serum level of middle-weight molecules (MWM) is an integral marker of metabolic disorders of the body and can be used as evidence of the intensity of endogenous intoxication.

Conclusion: Exposure to 630-nm laser irradiation of 300-mJ pulsed mode (3 min) and 60-J PDD mode (15 s) does not result in the development of endogenous intoxication, making possible the application of these modes in practical ophthalmology. Because exposure to 890-nm laser irradiation of 300-mJ pulsed mode (3 min), and, especially, to 630-nm laser irradiation of 120-J PDD mode (30 s) results in the increased accumulation of MWM in circulating blood of animals, the eye should not be exposed to such irradiation doses.

References

1. Volodin PL. [Photodynamic therapy with chlorin photosensitizer in ophthalmology (experimental and clinical study)]. [Dr. Sc. (Med.) thesis]. Obninsk (Russia): Medical Radiological Research Center of RAMS; 2009. 265 p. Russian.

2. Gelfond ML, Arseniev AI, Levchenko EV et al. [Photodynamic therapy in complex treatment of malignant tumors: current state and future prospects]. Laser Med. 2012;16(2):25-30. Russian.

3. Samlin RM, Sten'ko AA, Zhuk IG, Bragov MIu. [Main areas of photodynamic therapy in medicine]. NovKhir. 2008;3:155-162.

4. Takhchidi HP, Bely? IuA, Tereshchenko AV et al. [Photodynamic therapy in ophthalmology (review)]. Oftalmokh. 2005; 1:45-51. Russian.

5. Nazyrov FG, Sadykov RA, Mirzakulov A, Sadykov RR. [Potential and prospects of photodynamic therapy for tumors]. Uzb Med J. 2010;2:55-8. Russian.

6. Sadykov RA, Kasymov KR, Sadykov RR. [Technical and scientific aspects of photodynamic therapy]. Tashkent;2012. 167 p.

7. Korochkin IM, Chukaeva Sh.I. [Determination of serum levels of middle molecule peptides in patients with acute myocardial infarction]. Lab Delo. 1988;9:15-8. Russian.

8. Kariakina EV, Belova SV. [Middle-weight molecules as an integral marker of metabolic disorders (literature review)]. Clin Lab Diagn. 2004;3:3-8. Russian.

Published

2026-07-13

How to Cite

[1]
Bakhritdinova, F. et al. 2026. Effect of photodynamic doses of laser irradiation on endogenous intoxication indices. Ukrainian Journal of Ophthalmology . 4 (Jul. 2026), 35–37. DOI:https://doi.org/10.31288/oftalmolzh201543537.

Issue

Section

Experimental Studies

Most read articles by the same author(s)

Similar Articles

<< < 1 2 3 4 5 > >> 

You may also start an advanced similarity search for this article.