Physicochemical parameters of NO-containing gas flow affect wound healing therapy. An experimental study

被引:18
作者
Shekhter, Anatoly B. [1 ]
Pekshev, Alexander, V [2 ]
Vagapov, Andrey B. [2 ]
Telpukhov, Vladimir, I [1 ]
Panyushkin, Peter, V [1 ]
Rudenko, Tatyana G. [1 ]
Fayzullin, Alexey L. [1 ]
Sharapov, Nikolay A. [2 ]
Vanin, Anatoly F. [1 ,3 ]
机构
[1] IM Sechenov First Moscow State Med Univ, Moscow, Russia
[2] Bauman Moscow State Tech Univ, Moscow, Russia
[3] NN Semenov Inst Chem Phys, Kosygin Str 4, Moscow 119991, Russia
关键词
Wound healing; Gaseous nitric oxide; Nitric oxide therapy; Plasma-chemical NO generation; NO-containing gas flow; Plason device; GASEOUS NITRIC-OXIDE; AIR;
D O I
10.1016/j.ejps.2018.11.034
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Therapy of wounds and inflammatory diseases with NO-containing gas flows (NO-CGF) has proved to be effective in a longterm clinical practice. Plasma-chemical generation of nitric oxide occurs from atmospheric air in Plason device. For the purpose of modification and improvement of NO-therapy, effects of various physicochemical parameters of the NO-CGF on inflammatory and reparative processes in wounds were studied. Treatment of planar full-thickness skin wounds in laboratory rats was analyzed with morphological, immunohistochemical, morphometric and statistical methods. The study showed that the Plason device and the experimental device, which differs from Plason by the NO-CGF temperature, significantly reduce inflammatory and enhance regenerative processes in the wounds. The NO-CGF with an ambient temperature generated by the experimental device has noticeably facilitated the wound healing in direct ration to a nitric oxide content and flow velocity at the area of application. Temperature did not affect the course of wound healing process. The development of a new device for NO-therapy may be of use for both physicians and patients.
引用
收藏
页码:193 / 201
页数:9
相关论文
共 32 条
  • [21] A phase I clinical study of inhaled nitric oxide in healthy adults
    Miller, Chris
    Miller, Minna
    McMullin, Bevin
    Regev, Gilly
    Serghides, Lena
    Kain, Kevin
    Road, Jeremy
    Av-Gay, Yossef
    [J]. JOURNAL OF CYSTIC FIBROSIS, 2012, 11 (04) : 324 - 331
  • [22] Study of plasma-chemical NO-containing gas flow for treatment of wounds and inflammatory processes
    Pekshev, Alexander V.
    Shekhter, Anatoly B.
    Vagapov, Andrey B.
    Sharapov, Nikolay A.
    Vanin, Anatoly F.
    [J]. NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2018, 73 : 74 - 80
  • [23] Reshetov R. K., 2000, ANN PLASTIC RECONSTR, V4, P24
  • [24] Dinitrosyl iron complexes with thiol ligands promote skin wound healing in animals
    Shekhter A.B.
    Rudenko T.G.
    Serezhenkov V.A.
    Vanin A.F.
    [J]. Biophysics, 2007, 52 (5) : 515 - 520
  • [25] Experimental and clinical validation of plasmadynamic therapy of wounds with nitric oxide
    Shekhter, AB
    Kabisov, RK
    Pekshev, AV
    Kozlov, NP
    Perov, YL
    [J]. BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 1998, 126 (08) : 829 - 834
  • [26] Beneficial effect of gaseous nitric oxide on the healing of skin wounds
    Shekhter, AB
    Serezhenkov, VA
    Rudenko, TG
    Pekshev, AV
    Vanin, AF
    [J]. NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2005, 12 (04): : 210 - 219
  • [27] Dinitrosyl iron complexes with glutathione incorporated into a collagen matrix as a base for the design of drugs accelerating skin wound healing
    Shekhter, Anatoly B.
    Rudenko, Tatyana G.
    Istranov, Leonid P.
    Guller, Anna E.
    Borodulin, Rostislav R.
    Vanin, Anatoly F.
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2015, 78 : 8 - 18
  • [28] Shulutko A M, 2004, Khirurgiia (Mosk), P43
  • [29] Sommer C, 2011, I S BIOMED IMAGING, P230, DOI 10.1109/ISBI.2011.5872394
  • [30] Air plasma-generated nitric oxide in treatment of skin scars and articular musculoskeletal disorders: Preliminary review of observations
    Vasilets, Victor N.
    Shekhter, Anatoly B.
    Guller, Anna E.
    Pekshev, Alexander V.
    [J]. CLINICAL PLASMA MEDICINE, 2015, 3 (01): : 32 - 39