The effect of chlorin e6 drug on platelet aggregation activity

N. Petrishchev, M. Galkin, T. Grishacheva, I. N. Dementjeva, S. Chefu
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引用次数: 2

Abstract

The goal of the study is to evaluate the effect of Radachlorin (OOO “RADA-PHARMA”, Russia) (RC) on platelet aggregation in ex vivo and in vivo experiments. The experiments were conducted on male Wistar rats. Platelet aggregation activity was determined in platelet-rich plasma (PRP) using a turbidimetric method and the aggregation inducer was ADP at a final concentration of 1.25 μM. PRP samples containing RC were irradiated with ALOD-Granat laser device (OOO “Alkom Medika”, Russia) at 662 nm wavelength with 0.05 W/cm2 power density. After a 5-minute incubation of PRP with RC in the dark, dose-dependent inhibition of platelet aggregation was observed. Laser irradiation (12.5 J/cm2 and, especially, 25 J/cm2) increased the inhibitory effect of RC. 3 hours after intravenous administration of RC, the rate and intensity of platelets aggregation did not change, while disaggregation slowed down significantly. Irradiation at a dose of 5 J/cm2 did not affect the platelets aggregation kinetics, and disaggregation slowed down even more at 10 J/cm2, and at 20 J/cm2 the rate and intensity of platelets aggregation decreased, and no disaggregation occurred.In vitro, RC inhibited the ADP-induced platelet aggregation in rats in a dose-dependent manner; after laser irradiation, this effect was enhanced significantly. The effect of RC on circulating platelets leads to a change in their functional state, which manifests in slowing down the disaggregation after exposure to ADP. After laser irradiation (10 J/cm2 and, especially, 20 J/cm2), the severity of the functional changes increases. The role of decreasing the disaggregation activity of platelets in the mechanism of vascular thrombosis in the affected area of photodynamic therapy (PDT) is discussed.
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氯e6药物对血小板聚集活性的影响
本研究的目的是在体外和体内实验中评价Radachlorin (OOO " RADA-PHARMA ", Russia) (RC)对血小板聚集的影响。实验以雄性Wistar大鼠为实验对象。采用浊度法测定富血小板血浆(PRP)中血小板聚集活性,聚集诱导剂为终浓度为1.25 μM的ADP。用ALOD-Granat激光装置(OOO " Alkom Medika ", Russia)在662 nm波长、0.05 W/cm2功率密度下照射含RC的PRP样品。PRP与RC在黑暗中孵育5分钟后,观察到血小板聚集的剂量依赖性抑制。激光辐照(12.5 J/cm2,特别是25 J/cm2)增强了RC的抑制作用。静脉给药3 h后,血小板聚集的速度和强度没有变化,而解聚速度明显减慢。5 J/cm2照射对血小板聚集动力学无影响,10 J/cm2照射时血小板聚集速度减慢,20 J/cm2照射时血小板聚集速度和强度降低,不发生血小板聚集。在体外,RC抑制adp诱导的大鼠血小板聚集呈剂量依赖性;激光照射后,这种效果明显增强。RC对循环血小板的影响导致其功能状态的改变,表现为暴露于ADP后的分解速度减慢。激光照射(10 J/cm2,特别是20 J/cm2)后,功能改变的严重程度增加。本文讨论了血小板解聚活性降低在光动力治疗(PDT)受累区血管血栓形成机制中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomedical Photonics
Biomedical Photonics Medicine-Surgery
CiteScore
1.80
自引率
0.00%
发文量
19
审稿时长
8 weeks
期刊介绍: The main goal of the journal – to promote the development of Russian biomedical photonics and implementation of its advances into medical practice. The primary objectives: - Presentation of up-to-date results of scientific and in research and scientific and practical (clinical and experimental) activity in the field of biomedical photonics. - Development of united Russian media for integration of knowledge and experience of scientists and practitioners in this field. - Distribution of best practices in laser medicine to regions. - Keeping the clinicians informed about new methods and devices for laser medicine - Approval of investigations of Ph.D candidates and applicants.
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