Наличие версии для слабовидящих (для инвалидов и лиц с ограниченными возможностями здоровья по зрению)

RU
EN
АЛТАЙСКИЙ ГОСУДАРСТВЕННЫЙ МЕДИЦИНСКИЙ УНИВЕРСИТЕТ
Бюллетень медицинской науки

ИСТОРИЯ И ОБЛАСТИ ПРИМЕНЕНИЯ ИНДОЦИАНИНА ЗЕЛЕНОГО В МЕДИЦИНСКОЙ ПРАКТИКЕ. ОБЗОР ЛИТЕРАТУРЫ

ИСТОРИЯ И ОБЛАСТИ ПРИМЕНЕНИЯ ИНДОЦИАНИНА ЗЕЛЕНОГО В МЕДИЦИНСКОЙ ПРАКТИКЕ. ОБЗОР ЛИТЕРАТУРЫ

УДК 610:615.03:535.371
DOI: 10.31684/25418475-2024-3-96

Фирсов Д. В.
Российский национальный исследовательский медицинский
университет имени Н.И. Пирогова (ФГАОУ ВО РНИМУ им. Н.И. Пирогова Минздрава России)
Россия, 117997, г. Москва, ул. Островитянова, 1
E-mail: dr.atroshchenko@gmail.com

Жила Е. С.
Российский национальный исследовательский медицинский
университет имени Н.И. Пирогова (ФГАОУ ВО РНИМУ им. Н.И. Пирогова Минздрава России)
Россия, 117997, г. Москва, ул. Островитянова, 1
E-mail: dr.atroshchenko@gmail.com

Атрощенко А. О.
Российский национальный исследовательский медицинский
университет имени Н.И. Пирогова (ФГАОУ ВО РНИМУ им. Н.И. Пирогова Минздрава России)
Россия, 117997, г. Москва, ул. Островитянова, 1
Московский многопрофильный клинический центр «Коммунарка» Департамента здравоохранения города Москвы (ГБУЗ «ММКЦ «Коммунарка» ДЗМ»)
Россия, 108814, Москва, п. Сосенское, ул. Сосенский стан, 8
E-mail: dr.atroshchenko@gmail.com
https://orcid.org/0000-0002-8629-8252

Ганова Т. Д.
Алтайский государственный медицинский университет
(ФГБОУ ВО АГМУ Минздрава России)
Россия, 656038, Алтайский край, г. Барнаул, пр. Ленина, 40
E-mail: tanya_ganova@mail.ru
https://orcid.org/0000-0002-0688-3372

Ганов Д. И.
Алтайский государственный медицинский университет
(ФГБОУ ВО АГМУ Минздрава России)
Россия, 656038, Алтайский край, г. Барнаул, пр. Ленина, 40
E-mail: ganovdmit@yandex.ru
https://orcid.org/0000-0002-7118-1668


Ключевые слова: индоцианин зеленый (ICG), флюоресценция, перфузия
Аннотация:
Индоцианин зеленый (ICG) ‒ флюоресцирующий йодный краситель, применяющийся в медицинской практике ICG с середины 1950-х годов в кардиологии, нейрохирургии, офтальмологии. В 1970-х гг. после открытия способности ICG к флюоресценции его стали применять для оценки перфузии и сосудистой анатомии различных тканей и органов, что впоследствии стало основной областью его использования в современной медицинской практике. В статье обобщены данные об истории применения красителя в медицине, его свойствах, а также освещаются основные перспективы применения ICG в современной хирургии и онкологии.
Библиографические ссылки:

Alander J.T. et al. A review of indocyanine green fluorescent imaging in surgery. Int J Biomed Imag. 2012https://doi.org/10.1155/2012/940585

Reinhart M.B. et al. Indocyanine green: historical context, current applications, and future considerations. Surg Innovat. 2016; 23(2): 166-175https://doi.org/10.1177/1553350615604053

Yannuzzi L.A. Indocyanine green angiography: a perspective on use in the clinical setting. Am J Ophthalmol. 2011; 151(5): 745-751.e1https://doi.org/10.1016/j.ajo.2011.01.043

Indocyanine Green kit. PULSION, 2010http://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?id=15096. Accessed 2014.

Engel E., Schraml R., Maisch T., et al. Light-induced decomposition of indocyanine green. Invest Ophthalmol Vis Sci. 2008; 49: 1777-1783https://doi.org/10.1167/iovs.07-0911

Alander J.T., Kaartinen I., Laakso A., et al. A review of indocyanine green fluorescent imaging in surgery. Int J Biomed Imaging. 2012; 2012: 940585https://doi.org/10.1155/2012/940585

Cherrick G.R., Stein S.W., Leevy C.M., Davidson C.S. Indocyanine green: observations on its physical properties, plasma decay, and hepatic extraction. J Clin Invest. 1960; 39: 592-600https://doi.org/10.1172/JCI104072

Paumgartner G. The handling of indocyanine green by the liver. Schweiz Med Wochensch. 1975; 105(Suppl 17): 1-30.

Feigenbaum H., Stone J.M., Lee D.A., Nasser W.K., Chang S. Identification of ultrasound echoes from the left ventricle by use of intracardiac injections of indocyanine green. Circulation. 1970; 41: 615-621https://doi.org/10.1161/01.CIR.41.4.615

Daskalaki D., Fernandes E., Wang X., et al. Indocyanine green (ICG) fluorescent cholangiography during robotic cholecystectomy: results of 194 consecutive cases in a single institution. Surg Innov. 2014; 21: 615-621https://doi.org/10.1177/1553350614524839

Lutty G.A. The acute intravenous toxicity of biological stains, dyes, and other fluorescent substances. Toxicol Appl Pharmacol. 1978; 44: 225-49https://doi.org/10.1016/0041-008X(78)90185-0

Wolf' S., Arend О., Schulte K., Reim M. Severe anaphylactic reaction after indocyanine green fluorescence angiography. Am J Ophthalmol. 1992; 114: 638-9https://doi.org/10.1016/S0002-9394(14)74501-5

Yannuzzi L.A., Rohrer K.T., Tindel U., et al. Fluorescein angiography complication survey. Ophthalmology. 1986; 93: 611-17https://doi.org/10.1016/S0161-6420(86)33697-2

Tagaya N., Shimoda M., Kato M., et al. Intraoperative exploration of biliary anatomy using fluorescence imaging of indocyanine green in experimental and clinical cholecystectomies. J Hepatobiliary Pancreat Sci. 2010; 17: 595-600https://doi.org/10.1007/s00534-009-0195-2

Hutteman M., van der Vorst J.R., Mieog J.S., et al. Nearinfrared fluorescence imaging in patients undergoing pancreaticoduodenectomy. Eur Surg Res. 2011; 47: 90-97https://doi.org/10.1159/000329411

Verbeek F.P., Schaafsma B.E., Tummers Q.R., et al. Optimization of near-infrared fluorescence cholangiography for open and laparoscopic surgery. Surg Endosc. 2014; 28: 1076-1082.

Van Manen L., Handgraaf H.J.M., Diana M. A practical guide for the use of indocyanine green and methylene blue in fluorescence-guided abdominal surgery. J. Surg. Oncol. 2018; 18(2): 283-300https://doi.org/10.1002/jso.25105

Hirche C., Dresel S., Krempien R., and Hunerbein M. Sentinel node biopsy by indocyanine green retention fluorescence detection for inguinal lymph node staging of anal cancer: preliminary experience. Annals of Surgical Oncology. 2010; 17(9): 2357-2362https://doi.org/10.1245/s10434-010-1010-7

Atroshchenko A.O., Strel'tsov Yu.A., Abdulatipova Z.M. Primenenie indotsianina zelenogo v kolorektal'noy khirurgii [The use of indocyanine green in colorectal surgery]. Koloproktologiya. 2018; 2S: 37-38. – EDN XWTKJN. (In Russian).

Panaiotti L.L., Karachun A.M., Muravtseva A.L., Golovanova T.S., Khaetskaya M.A., Shkatov M.M., Olkina A.Yu., Artemyeva A.S., Sanyan E.V. Interim results and safety assessment of indocyanine green peritumoral injection for regional lymphatic outflow area mapping in colon cancer as a part of the ISCAPE TRIAL. Pirogov Russian Journal of Surgery. 2023; 6: 69 84https://doi.org/10.17116/hirurgia202306169

Krag D.N., Anderson S.J., Julian T.B., Brown A.M. et al. National Surgical Adjuvant Breast and Bowel Project. Technical outcomes of sentinel-lymph-node resection and conventional axillary-lymph-node dissection in patients with clinically node-negative breast cancer: Results from the NSABP B-32 randomised phase III trial. Lancet Oncology. 2007; 8(10): 881-888https://doi.org/10.1016/S1470-2045(07)70278-4

Bäumler W., Abels C., Karrer S. et al. Photo-oxidative killing of human colonic cancer cells using indocyanine green and infrared light. Br J Cancer. 1999; 80: 360-363https://doi.org/10.1038/sj.bjc.6690363

Farrakhova D.S., Romanishkin I.D., Maklygina Yu.S., Yakovlev D.V., Ryabova A.V., Loschenov V.B., Bezdetnaya L. Fluorescence liefteme of indocyanine green in molecular and nano-forms in the cellular model of a brain tumor in vitro. Journal of Physics Conference Series. October 2021; 2058(1): 012031https://doi.org/10.1088/1742-6596/2058/1/0120312021.

Mordon S., Devoisselle J.M., Soulie-Begu S., Desmettre T. Indocyanine green: physicochemical factors affecting its fluorescence in vivo. Microvasc Res. 1998; 55: 146-152https://doi.org/10.1006/mvre.1997.2055

Wang H., Li X., Tse BW-C., et al. Indocyanine green-incorporating nanoparticles for cancer theranostics. Theranostics. 2018; 8: 1227-1242https://doi.org/10.7150/thno.22872

Bae S.U., Min B.S., Kim N.K. Robotic low ligation of the inferior mesenteric artery for rectal cancer using the frefy technique. Yonsei Med J. 2015; 56:1028-1035https://doi.org/10.3349/ymj.2015.56.4.1028

Kim M., Son S.Y., Cui L.H., Shin H.J., Hur H., Han S.U. Realtime vessel navigation using indocyanine green fuorescence during robotic or laparoscopic gastrectomy for gastric cancer. J Gastric Cancer. 2017; 17:145-153https://doi.org/10.5230/jgc.2017.17.e17

Foppa C., Denoya P.I., Tarta C., Bergamaschi R. Indocyanine green fuorescent dye during bowel surgery: are the blood supply "guessing days" over? Tech Coloproctol. 2014; 18:753-758https://doi.org/10.1007/s10151-014-1130-3

Boni L., David G., Dionigi G., Rausei S., Cassinotti E., Fingerhut A. Indocyanine green-enhanced fuorescence to assess bowel perfusion during laparoscopic colorectal resection. Surg Endosc. 2016; 30: 2736-2742.

Hellan M., Spinoglio G., Pigazzi A., Lagares-Garcia J.A. The infuence of fuorescence imaging on the location of bowel transection during robotic left-sided colorectal surgery. Surg Endosc. 2014; 28: 1695-1702https://doi.org/10.1007/s00464-013-3377-6

Raabe A., Nakaji P., Beck J. et al. Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery. Journal of Neurosurgery. 2005; 103(6): 982-989https://doi.org/10.3171/jns.2005.103.6.0982

Dashti R., Laakso A., Niemela M., Porras M., and Hernesniemi J. Microscope-integrated near-infrared indocyanine green videoangiography during surgery of intracranial aneurysms: the Helsinki experience. Surgical Neurology. 2009; 71(5): 543-550https://doi.org/10.1016/j.surneu.2009.01.027

Li J., Lan Z., He M., and You C. Assessment of microscopeintegrated indocyanine green angiography during intracranial aneurysm surgery: a retrospective study of 120 patients. Neurology India. 2009; 57(4): 453-459https://doi.org/10.4103/0028-3886.55607

Ma C.-Y., Shi J.-X., Wang H.-D., Hang C.-H., Cheng H.-L., and Wu W., Intraoperative indocyanine green angiography in intracranial aneurysm surgery: microsurgical clipping and revascularization. Clinical Neurology and Neurosurgery. 2009; 111(10): 840-846https://doi.org/10.1016/j.clineuro.2009.08.017

Raabe A., Nakaji P., Beck J., et al. Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery. J Neurosurg. 2005; 103: 982-989https://doi.org/10.3171/jns.2005.103.6.0982

Shen Y. et al. Intraoperative indocyanine green fluorescence angiography to prevent anastomotic leak after low anterior resection for rectal cancer: a meta‐analysis. ANZ J Surg. 2020; 90(11): 2193-2200https://doi.org/10.1111/ans.15809

Jing Z-Z., Chang S-M., You M.R., Yu G-R. Venous drainage in retrograde island flap: an experimental study using fluorescence tracing technique. Microsurgery. 2010; 30(1): 50-54https://doi.org/10.1002/micr.20692

Holm C., Mayr M., Hofter E., Dornseifer U., Ninkovic M. Assessment of the patency of microvascular anastomoses using microscope-integrated near-infrared angiography: a preliminary study. Microsurgery. 2009; 29(7): 509-514https://doi.org/10.1002/micr.20645

Holm C., Dornseifer U., Sturtz G., Ninkovic M. Sensitivity and specificity of ICG angiography in free flap reexploration. Journal of Reconstructive Microsurgery. 2010; 26(5): 311-316https://doi.org/10.1055/s-0030-1249314

Holm C., Tegeler J., Mayr M., Becker A., Pfeiffer U.J., Mühlbauer W. Monitoring free flaps using laser-induced fluorescence of indocyanine green: a preliminary experience. Microsurgery. 2002; 22(7): 278-287https://doi.org/10.1002/micr.10052

Zimmermann A., Roenneberg C., Wendorff H., Holzbach T., Giunta R.E., Eckstein H.H. Early postoperative detection of tissue necrosis in amputation stumps with indocyanine green fluorescence angiography. Vascular and Endovascular Surgery. 2010; 44(4): 269-273https://doi.org/10.1177/1538574410362109

Krishnan K.G., Schackert G., Steinmeier R. The role of near-infrared angiography in the assessment of post-operative venous congestion in random pattern, pedicled island and free flaps. British Journal of Plastic Surgery. 2005; 58(3): 330-338https://doi.org/10.1016/j.bjps.2004.10.003

Holm C., Mayr M., Höfter E., Becker A., Pfeiffer U.J., Mühlbauer W. Intraoperative evaluation of skin-flap viability using laser-induced fluorescence of indocyanine green. British Journal of Plastic Surgery. 2002; 55(8): 635-644https://doi.org/10.1054/bjps.2002.3969

Yamaguchi S., De Lorenzi F., Petit J.Y., et al. The ‘perfusion map’ of the unipedicled TRAM flap to reduce postoperative partial necrosis. Annals of Plastic Surgery. 2004; 53(3): 205-209https://doi.org/10.1097/01.sap.0000116284.51679.ea

Holm C., Mayr M., Hofter E., Raab N., Ninkovic M. Interindividual variability of the SIEA angiosome: effects on operative strategies in breast reconstruction. Plastic and Reconstructive Surgery. 2008;122(6): 1612-1620https://doi.org/10.1097/PRS.0b013e31818a9a3f

Quilichini J., Le Masurier P., Guihard T. Increasing the reliability of SIEA flap using peroperative fluorescent angiography with indocyanine green in breast reconstruction. Annales de Chirurgie Plastique Esthetique. 2010; 55(6): 531-538. (Fre)https://doi.org/10.1016/j.anplas.2010.08.003

Lee B.T., Hutteman M., Gioux S., et al. The fLARE intraoperative near-infrared fluorescence imaging system: a first-in-human clinical trial in perforator flap breast reconstruction. Plastic and Reconstructive Surgery. 2010; 126(5): 1472-1481https://doi.org/10.1097/PRS.0b013e3181f059c7

Francisco B.S., Kerr-Valentic M.A., Agarwal J.P. Laser-assisted indocyanine green angiography and DIEP breast reconstruction. Plastic and Reconstructive Surgery. 2010; 125(3)https://doi.org/10.1097/PRS.0b013e3181cb67a9

Komorowska-Timek E., Gurtner G.C. Intraoperative perfusion mapping with laser-assisted indocyanine green imaging can predict and prevent complications in immediate breast reconstruction. Plastic and Reconstructive Surgery. 2010; 125(4): 1065-1073. https://doi.org/10.1097/PRS.0b013e3181d17f80

Mothes H., Dönicke T., Friedel R., Simon M., Markgraf E., Bach O. Indocyanine-green fluorescence video angiography used clinically to evaluate tissue perfusion in microsurgery. Journal of Trauma. 2004; 57(5): 1018-1024https://doi.org/10.1097/01.TA.0000123041.47008.70

Kamolz L-P., Andel H., Haslik W., et al. Indocyanine green video angiographies help to identify burns requiring operation. Burns. 2003; 29(8): 785-791https://doi.org/10.1016/S0305-4179(03)00200-6

Devgan L., Bhat S., Aylward S., Spence R.J. Modalities for the assessment of burn wound depth. Journal of Burns and Wounds. 2006; 15(5): p. e2.

Kamolz L-P., Andel H., Auer T., Meissl G., Frey M. Evaluation of skin perfusion by use of indocyanine green video angiography: rational design and planning of trauma surgery. Journal of Trauma. 2006; 61(3): 635-641https://doi.org/10.1097/01.ta.0000233910.47550.9c

Hoffmann C., Compton F., Schafer J.H., et al. Intraoperative assessment of kidney allgraft perfusion by laser-assisted indocyanine green fluorescence videography. Transplantation Proceedings. 2010; 42(5): 1526-1530https://doi.org/10.1016/j.transproceed.2010.01.069

Mizuno S., Isaji S. Indocyanine green (ICG) fluorescence imaging-guided cholangiography for donor hepatectomy in living donor liver transplantation. American Journal of Transplantation. 2010; 10(12): 2725-2726https://doi.org/10.1111/j.1600-6143.2010.03288.x

Koh A. et al. EVEREST study: efficacy and safety of verteporfin photodynamic therapy in combination with ranibizumab or alone versus ranibizumab monotherapy in patients with symptomatic macular polypoidal choroidal vasculopathy. Retina. 2012; 32(8): 1453-1464https://doi.org/10.1097/IAE.0b013e31824f91e8

Lim J.Y. et al. Intravitreal bevacizumab alone versus in combination with photodynamic therapy for the treatment of neovascular maculopathy in patients aged 50 years or older: 1-year results of a prospective clinical study. Acta Ophthalmol. 2012; 90(1): 61-67https://doi.org/10.1111/j.1755-3768.2009.01841.x

Gandorfer A., Haritoglou C., Gass C.A., Ulbig M.W., Kampik A. Indocyanine green-assisted peeling of the internal limiting membrane may cause retinal damage. Am J Ophthalmol. 2001; 132: 431-433https://doi.org/10.1016/S0002-9394(01)01087-X

Фирсов Давид Викторович

кафедра факультетской хирургии № 1 ЛФ, Российский национальный исследовательский медицинский университет имени Н.И. Пирогова, г. Москва.

Жила Елизавета Сергеевна

кафедра госпитальной терапии имени академика Г.И. Сторожакова ЛФ, Российский национальный исследовательский медицинский университет имени Н.И. Пирогова, г. Москва.

Атрощенко Андрей Олегович

к. м. н., врач-онколог ММКЦ «Коммунарка», старший научный сотрудник отдела абдоминальной онкологии НИИ клинической хирургии кафедры факультетской хирургии № 1, Российский национальный исследовательский медицинский университет имени Н.И. Пирогова, г. Москва.

Ганова Татьяна Дмитриевна

ординатор кафедры онкологии и лучевой терапии с курсом ДПО, Алтайский государственный медицинский университет, г. Барнаул.

Ганов Дмитрий Иванович

к. м. н., доцент, проректор по лечебной работе и дополнительному профессиональному образованию, зав. кафедрой онкологии и лучевой терапии с курсом ДПО, Алтайский государственный медицинский университет, г. Барнаул.