Barnett Samantha, Saggiomo Silvia, Smout Michael, Seymour Jamie
Australian Institute of Tropical Health and Medicine, James Cook University, Cairns, Queensland, Australia.
Australian Institute of Tropical Health and Medicine, James Cook University, 14-88 McGregor Road, Smithfield, Cairns, Queensland 4878, Australia,
Diving Hyperb Med. 2017 Sep;47(3):155-158. doi: 10.28920/dhm47.3.155-158.
To investigate the effects of temperature and hot water immersion time on neutralising venom lethality of the Australian estuarine stonefish (Synanceia horrida).
Depths of the spines were measured while venom was extracted from S. horrida individuals. The venom was then exposed to temperatures of 4°C, 37.0°C, 40.1°C, 42.3°C, 45.0°C, 47.7°C, 55.2°C, and 60.0°C for either five or 20 minutes incubation periods. Venom samples were added to cultured human cardiomyocytes and cell viability curves were produced using the ACEA's xCELLigence real-time cell monitoring system.
Determination of venom lethality on cardiomyocytes at a range of temperatures.
The average depth of the spine required to go into a victims' flesh before the venom gland compressed and expelled venom was 18 mm. Cardiomyocytes exposed to heat-treated venom for five minutes required higher temperatures to neutralise 99% of the venom, namely 44.6°C in comparison to 42.1°C with an incubation time of 20 minutes.
This study supports the use of hot water immersion therapy in the treatment of S. horrida stings. It is suggested that due to the depth of the puncture wound longer incubation times should be sought to allow heat to penetrate the deeper portions of the dermis and effectively begin venom deactivation.
研究温度和热水浸泡时间对澳大利亚河口石鱼(虎纹钝口螈)毒液致死性中和作用的影响。
从虎纹钝口螈个体中提取毒液时测量其刺的深度。然后将毒液分别在4°C、37.0°C、40.1°C、42.3°C、45.0°C、47.7°C、55.2°C和60.0°C的温度下孵育5分钟或20分钟。将毒液样本添加到培养的人心肌细胞中,并使用ACEA的xCELLigence实时细胞监测系统绘制细胞活力曲线。
测定一系列温度下心肌细胞的毒液致死性。
在毒腺压缩并排出毒液之前,刺入受害者皮肤所需的刺的平均深度为18毫米。暴露于热处理毒液5分钟的心肌细胞需要更高的温度来中和99%的毒液,即44.6°C,而孵育时间为20分钟时为42.1°C。
本研究支持使用热水浸泡疗法治疗虎纹钝口螈蜇伤。建议由于刺伤伤口的深度,应寻求更长的孵育时间,以使热量穿透真皮深层并有效开始毒液失活。