Study on mechanism of release oxygen by photo-excited hemoglobin in low-level laser therapy

被引:0
|
作者
Yanliang Xu
Yuexia Lin
Simin Gao
Junfeng Shen
机构
[1] Southwest Jiaotong University,School of Physical Science and Technology
来源
Lasers in Medical Science | 2018年 / 33卷
关键词
Low-level laser; Hemoglobin; Heme; Charge distribution; Photo-excitation;
D O I
暂无
中图分类号
学科分类号
摘要
According to the calculated results on the charge distribution of oxygenated heme and deoxygenated heme, and based on the theory of electron excitations in photo-acceptor molecules and the absorption spectra of hemoglobin, it is found that low-level laser within the waveband of about 800–1060 nm can promote the release of oxygen from oxyhemoglobin and improve the oxygen supply of capillaries to surrounding tissues. Furthermore, the reasons have been explained that why the low-level laser at a wavelength of 830 nm is better in the treatment on burn injury and stimulation of hair growth. We also explained why the near-infrared laser of 1064 nm is applied to the forehead to improve cerebral oxygenation in healthy humans. Finally, according to comparison of atomic charge distribution in heme before and after bound to small molecule of carbon monoxide or nitric oxide, it could be inferred that the low-level laser with an appropriate wavelength can promote the carbon monoxide hemoglobin and nitric oxide hemoglobin to dissociate the carbon monoxide molecules and the nitric oxide molecules. This may be used for adjuvant therapy of carbon monoxide poisoning or nitric oxide poisoning.
引用
收藏
页码:135 / 139
页数:4
相关论文
共 50 条
  • [1] Study on mechanism of release oxygen by photo-excited hemoglobin in low-level laser therapy
    Xu, Yanliang
    Lin, Yuexia
    Gao, Simin
    Shen, Junfeng
    LASERS IN MEDICAL SCIENCE, 2018, 33 (01) : 135 - 139
  • [2] Low-Level Laser Therapy
    Ivandic, Tomislav
    DEUTSCHES ARZTEBLATT INTERNATIONAL, 2021, 118 (05): : 69 - 69
  • [3] Low-level laser therapy for wound healing: Mechanism and efficacy
    Posten, W
    Wrone, DA
    Dover, JS
    Arndt, KA
    Silapunt, S
    Alam, M
    DERMATOLOGIC SURGERY, 2005, 31 (03) : 334 - 340
  • [4] Low-level laser therapy Response
    Mistry, Dipika
    Dalci, Oyku
    Papageorgiou, Spyridon N.
    Darendeliler, Mehmet Ali
    Papadopoulou, Alexandra K.
    AMERICAN JOURNAL OF ORTHODONTICS AND DENTOFACIAL ORTHOPEDICS, 2021, 159 (04) : 404 - 406
  • [5] Photobiomodulation or low-level laser therapy
    Hamblin, Michael R.
    Journal of Biophotonics, 2016, 9 (11-12) : 1122 - 1124
  • [6] Progress in low-level laser therapy
    Streeter, Jackson
    2006 IEEE LEOS ANNUAL MEETING CONFERENCE PROCEEDINGS, VOLS 1 AND 2, 2006, : 665 - 666
  • [7] Low-Level Laser Therapy Reply
    Stahl, Andreas
    DEUTSCHES ARZTEBLATT INTERNATIONAL, 2021, 118 (05): : 70 - 70
  • [8] Study on the selection of laser wavelengths in the intravascular low-level laser irradiation therapy
    Xu, Yanliang
    Lin, Yuexia
    Gao, Simin
    LASERS IN MEDICAL SCIENCE, 2015, 30 (04) : 1373 - 1376
  • [9] Study on the selection of laser wavelengths in the intravascular low-level laser irradiation therapy
    Yanliang Xu
    Yuexia Lin
    Simin Gao
    Lasers in Medical Science, 2015, 30 : 1373 - 1376
  • [10] The mechanism of Low-Level Laser Therapy (LLLT) effects on rat mast cells
    Popov, GK
    Solovyova, LI
    Kosel, AI
    EFFECTS OF LOW-POWER LIGHT ON BIOLOGICAL SYSTEMS V, 2000, 4159 : 41 - 47