THE USE OF THE FLUORESCENT DYE INDOCYANINE GREEN IN THE THERANOSTICS OF ONCOLOGICAL DISEASES (LITERATURE REVIEW)
Rubrics: REVIEWS
Abstract and keywords
Abstract (English):
In modern medicine, the fluorescent dye indocyanine green (ICG) is used in the diagnosis and treatment of many diseases, including malignant neoplasms. The use of ICG is primarily due to such positive properties of the drug as chemical resistance and photostability, unique traceability and high lymphotropicity. The ICG preparation, as a fluorescent contrast agent, is used in the diagnosis of many diseases, in particular to determine the fraction of cardiac output, the function of blood flow of parenchymal organs (liver, spleen) and in ophthalmology, to assess the blood supply of intestinal anastomoses and in angiography. ICG is used in oncology in the surgical treatment of tumors. The fluorescent image under the control of infrared radiation makes it possible to identify the structures to be removed (tumor tissue, lymph nodes). The role of the fluorescent dye ICG in the mapping of signaling lymph nodes in oncology is high. The technique is highly informative in identifying lymph nodes involved in the tumor process, to determine the stage of the tumor, prediction and selection of antitumor therapy. In addition, ICG is used in photodynamic and photothermal therapy of tumors. Due to its photosensitizing properties, ICG is used to generate forms of oxygen or heat in order to destroy tumor cells.

Keywords:
indocyanin green, fluorescent lymphography, fluorescent imaging of tumors, mapping of signaling lymph nodes, photodynamic therapy, photothermal therapy
References

1. Akopov, A.L. i dr. Prizhiznennoe izuchenie napravleniya ottoka limfy pri rake legkogo s pomosch'yu indocianina zelenogo / A.L. Akopov, G.V. Papayan i A.A. Il'in //Regionarnoe krovoobraschenie i mikrocirkulyaciya. - 2020. - T. 19, № 3. - S. 19-24.

2. Alekseev, M. V. i dr. Fluorescentnaya vizualizaciya s indocianinom zelenym v lechenii kolorektal'nogo raka / M.V. Alekseev, E.G. Rybakov i Yu.A. Shelygin //Limfologiya: ot fundamental'nyh issledovaniy k medicinskim tehnologiyam. - 2021. - S. 33-37.

3. Baytinger, V.F. i dr. Novaya tehnologiya dlya profilaktiki postmastektomicheskoy limfedemy verhnih konechnostey / V.F. Baytinger, O.S. Kurochkina, E. G. Zvonarev [i dr.] //Voprosy rekonstr. i plast. hirurgii. - 2019. - T. 22, № 3. - S. 5-15.

4. Beloshickiy, M.E. i dr. Pervyy opyt ispol'zovaniya indocianina zelenogo pri endovideoskopicheskih operaciyah na schitovidnoy zheleze / M.E. Beloshickiy, T.A. Britvin i D.Yu. Semenov //Tavricheskiy mediko-biolog. vestnik. - 2020. - T. 23, № 2. - S. 20-24.

5. Beschastnov, V.V. i dr. Sovremennye metody ocenki kislorodnogo statusa i sostoyaniya mikrocirkulyacii biotkaney: opticheskaya diffuzionnaya spektroskopiya (obzor) / V.V. Beschastnov, M.G. Ryabkov, I.V. Pavlenko [i dr.] //Sovr. tehnologii v medicine. - 2018. - T. 10, № 4. - S. 183-195.

6. Dmitriev, A.Yu. i dr. Fluorescein natriya i indocianin zelenyy v neyroonkologii i hirurgii arteriovenoznyh mal'formaciy golovnogo mozga. Obzor literatury /A.Yu. Dmitriev i V.G. Dash'yan //Vest. nevrologii, psihiatrii i neyrohirurgii. - 2021. - № 8. - S. 614-627.

7. Zaharenko, A.A. i dr. Intraoperacionnaya ocenka zhiznesposobnosti stenki kishki (obzor literatury) /A.A. Zaharenko, M.A. Belyaev, A.A Trushin [i dr.] //Vest. hirurgii im. I.I. Grekova. - 2020. - T. 179, № 1. - S. 82-88.

8. Zikiryahodzhaev, A.D. i dr. Biopsiya storozhevogo limfaticheskogo uzla pri rake molochnoy zhelezy s primeneniem metoda fluorescentnoy vizualizacii krasitelya indocianin zelenyy / A.D. Zikiryahodzhaev, E.K. Saribekyan, D.V. Bagdasarova [i dr.] //Biomedical Photonics. - 2020. - T. 8, № 4. - S. 4-10.

9. Kereeva, N.M. i dr. Fluorescentnyy metod ICG dlya obnaruzheniya chuvstvitel'nyh limfaticheskih ulov pri rake molochnoy zhelezy /N.M. Kereeva, M.A. Aytmagambetova, G.A. Smagulova [i dr.] //Astana medicinalyқ zhurnaly. - 2020. - T. 106, № 4. - S. 67-71.

10. Mkrtchyan, G.B. Ocenka effektivnosti detekcii signal'nyh limfaticheskih uzlov metodom fluorescencii u bol'nyh rakom sheyki matki. - diss.... kand. med. nauk: 14.01.12 / Gayk Bagratovich Mkrtchyan. - SPb, 2019. - 115 s.

11. Shilov, I.P. i dr. Teranostika kozhnyh novoobrazovaniy na osnove lyuminescentnoy diagnostiki v sochetanii s fotodinamicheskoy terapiey v polose pogloscheniya porfirina /I.P. Shilov, A.S. Gorshkova, A.V. Ivanov [i dr.] //Kvantovaya elektronika. - 2022. - T. 52, № 1. - S. 56-62.

12. Egloff-Juras, C. et al. NIR fluorescence-guided tumor surgery: new strategies for the use of indocyanine green / C. Egloff-Juras, L. Bezdetnaya, G. Dolivet and H.-P. Lassalle // Int. J. Nanomed. - 2019. - № 14. - R. 7823-7838. doi:https://doi.org/10.2147/IJN.S207486

13. Hu, H. et al. Potentiating photodynamic therapy of ICG-loaded nanoparticles by depleting GSH with PEITC / H. Hu, J. Chen, H. Yang [et al.] // Nanoscale. - 2019. - № 11. - R. 6384-6393. doi:https://doi.org/10.1039/C9NR01306G.

14. Li, Z. et al. Ultra-pH-sensitive indocyanine green-conjugated nanoprobes for fluorescence imaging-guided photothermal cancer therapy /Z. Li, Q. Yin, B. Chen [et al.] // Nanomedicine. - 2019. - № 17. - R. 287-296. doi:https://doi.org/10.1016/j.nano.2019.02.001

15. Liu, P. et al. Concurrent photothermal therapy and photodynamic therapy for cutaneous squamous cell carcinoma by gold nanoclusters under a single NIR laser irradiation / P. Liu, W. Yang, L. Shi [et al.] // J. Mater. Chem. - 2019a. - № B 7. - R. 6924-6933. doi:https://doi.org/10.1039/C9TB01573F.

16. Liu, X. et al. Water-responsive hybrid nanoparticles codelivering ICG and DOX effectively treat breast cancer via hyperthermia-aided DOX functionality and drug penetration / X. Liu, C. Wang, H. Ma [et al.] // Adv. Healthcare Mater. - 2019b. - № 8. - R. 1801486. doi:https://doi.org/10.1002/adhm.201801486

17. Liu, Y. et al. Folate-targeted and oxygen/indocyanine green-loaded lipid nanoparticles for dual-mode imaging and photo-sonodynamic/photothermal therapy of ovarian cancer in vitro and in vivo /Y. Liu, S. Chen, J. Sun [et al.] // Mol. Pharmaceutics. - 2019c. - № 16. - R. 4104-4120. doi:https://doi.org/10.1021/acs.molpharmaceut.9b00339

18. Pinto, A. et al. Photodynamic therapy and photothermal therapy for the treatment of peritoneal metastasis: a systematic review /A. Pinto, M. Pocard // Pleura and Peritoneum. - 2018. - № 3. - R. 2018-0124. doi:https://doi.org/10.1515/pp-2018-0124.

19. Rossi, G. et al. Fluorescence guided surgery in liver tumors: applications and advantages /G. Rossi, A. Tarasconi, G. Baiocchi [et al.] // Acta Biomed. - 2018. - № 89. - R. 135-140. doi:https://doi.org/10.23750/abm.v89i9-S.7974.

20. Tamai, K. et al. Photodynamic therapy using indocyanine green loaded on super carbonate apatite as minimally invasive cancer treatment /K. Tamai, T. Mizushima, X. Wu [et al.] // Mol. Cancer Ther. - 2018. - № 17. - R. 1613-1622. doi:https://doi.org/10.1158/1535-7163.MCT-17-0788.

21. Valente, S. A. et al. Near infrared fluorescent lymph node mapping with indocyanine green in breast cancer patients: a prospective trial / S.A. Valente, Z. Al-Hilli, D.M. Radford [et al.] // J. Am. Coll. Surg. - 2019. - № 228. - R. 672-678. doi:https://doi.org/10.1016/j.jamcollsurg.2018.12.001

22. Wang, H. et al. Indocyanine green-incorporating nanoparticles for cancer theranostics / H. Wang, X. Li, B.W.-C. Tse [et al.] // Theranostics. - 2018. - № 8. - R. 1227-1242. doi:https://doi.org/10.7150/thno.22872.

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