Percutaneous carbon dioxide treatment using a gas mist generator enhances the collateral blood flow in the ischemic hindlimb.

نویسندگان

  • Yasukatsu Izumi
  • Takehiro Yamaguchi
  • Takanori Yamazaki
  • Naoto Yamashita
  • Yasuhiro Nakamura
  • Masayuki Shiota
  • Masako Tanaka
  • Soichi Sano
  • Mayuko Osada-Oka
  • Kenei Shimada
  • Hideki Wanibuchi
  • Katsuyuki Miura
  • Minoru Yoshiyama
  • Hiroshi Iwao
چکیده

AIM Highly concentrated carbon dioxide (CO2) is thought to be useful for ischemic diseases. We investigated whether treatment with a few micrometers of CO2 molecules atomized via two fluidnozzles (CO2 mist) exerts an angiogenic effect in a mouse ischemic hindlimb model. METHODS Mice with unilateral hindlimb ischemia were divided into untreated (UT), 100% CO2 gas alone-treated (CG), mixed air (O2; 20%, N2; 80%) mist-treated (AM) and 100% CO2 mist-treated (CM) groups. The lower body of the mice was encased in a polyethylene bag filled with each gaseous agent using a gas mist generator for 10 minutes daily. RESULTS According to a laser Doppler analysis, the ischemic hindlimb blood flow was persistently higher after the seventh day of induction of ischemia in the CM group than in the UT group. The capillary density was also greater in the CM group on day 28 compared with that observed in the UT group. In addition, the parameters in the AM and CG groups were similar to those obtained in the UT group. The observed effects were abolished by the administration of an inhibitor of nitric oxide synthase (NOS). The vascular endothelial growth factor mRNA expression and protein levels and the phosphorylated endothelial NOS level were increased in the CM group compared with that observed in the UT group. A proteomic analysis using liquid chromatography-tandem mass spectrometry identified novel protein candidates regulated by CO2 mist. CONCLUSION Percutaneous CO2 mist therapy may be useful for treating ischemia-induced angiogenesis.

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عنوان ژورنال:
  • Journal of atherosclerosis and thrombosis

دوره 22 1  شماره 

صفحات  -

تاریخ انتشار 2015