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[干细胞与可见光及红外光在再生医学中的应用(第二部分)]

[The application of stem together with visible and infrared light in regenerative medicine (Part 2)].

作者信息

Emel'yanov A N, Kir'yanova V V

机构信息

GBOU VPO 'Severo-Zapadnyj gosudarstvennyj meditsinskij universitet im. I.I. Mechnikova' Minzdrava Rossii, ul. Kirochnaja, 41, Sankt-Peterburg, Rossijskaja Federatsija, 191015.

出版信息

Vopr Kurortol Fizioter Lech Fiz Kult. 2015 Mar-Apr;92(2):43-51. doi: 10.17116/kurort2015243-51.

Abstract

UNLABELLED

The objective of the present study was to review the experimental studies concerned with in vitro and in vivo visible and infrared light irradiation of human and animal stem cells (SC) to assess the possibilities of using its photobiomodulatory effects for the purpose of regenerative medicine (RM). Despite the long history of photochromotherapy there is thus far no reliable theoretical basis for the choice of such irradiation parameters as power density, radiation dose and exposure time. Nor is there a generally accepted opinion on the light application for the purpose of regenerative medicine. Therefore, the clinical application of light irradiation remains a matter of controversy, in the first place due to the difficulty of the rational choice of irradiation parameters. In laboratory research, the theoretical basis for the choice of irradiation parameters remains a stumbling block too.

RESULTS

A relationship between the increased radiation power density and the cell differentiation rate was documented. SC exposure to light in the absence of the factors causing their differentiation failed to induce it. On the contrary, it increased the features characteristic of undifferentiated cells. The maximum differentiation rate of the same cells was achieved by using irradiation parameters different from those needed to achieve the maxi- mum proliferation rate. The increase of SC differentiation rate upon a rise in radiation power density was induced by increasing ir- radiation energy density.

CONCLUSION

The increase of power density and the reduction of either energy density or exposure time were needed to enhance the SC responsiveness to irradiation in the form of either proliferation or differentiation. The effectiveness of phototherapy at all stages of SC treatment was documented especially when it was applied to stimulate the reservoirs of bone marrow lying far from the site of the pathogenic process together with simultaneous light irradiation of the affected site and pre-treatment of stem cells prior to their administration. Based on the results of this analysis we have proposed "a plot showing the dependence of cell response on the generalized photostimulus" and coined two new terms "photostress" and "photoshock".

摘要

未标注

本研究的目的是回顾有关对人和动物干细胞进行体外和体内可见光及红外光照射的实验研究,以评估利用其光生物调节作用实现再生医学目的的可能性。尽管光化学疗法历史悠久,但迄今为止,对于诸如功率密度、辐射剂量和照射时间等照射参数的选择,尚无可靠的理论依据。对于再生医学目的的光应用,也没有普遍接受的观点。因此,光照射的临床应用仍然存在争议,首先是因为难以合理选择照射参数。在实验室研究中,照射参数选择的理论依据也是一个绊脚石。

结果

记录了辐射功率密度增加与细胞分化率之间的关系。在没有导致其分化的因素的情况下,干细胞暴露于光下未能诱导其分化。相反,它增加了未分化细胞的特征。通过使用与实现最大增殖率所需参数不同的照射参数,可实现相同细胞的最大分化率。辐射功率密度增加时干细胞分化率的提高是由辐射能量密度的增加诱导的。

结论

需要提高功率密度并降低能量密度或照射时间,以增强干细胞对增殖或分化形式照射的反应性。记录了光疗在干细胞治疗各个阶段的有效性,特别是当它用于刺激远离致病过程部位的骨髓储存库,同时对受影响部位进行光照射以及在干细胞给药前对其进行预处理时。基于该分析结果,我们提出了“显示细胞反应对广义光刺激依赖性的图表”,并创造了两个新术语“光应激”和“光休克”。

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