Kopec Scott E, Irwin Richard S, DeBellis Ronald J, Bohlke Mark B, Maher Timothy J
The Division of Pulmonary, Allergy, and Critical Care Medicine, UMASS Memorial Medical Center, Worcester, MA, USA.
Massachusetts College of Pharmacy and Health Sciences, Boston, MA, USA.
Cough. 2008 May 27;4:3. doi: 10.1186/1745-9974-4-3.
Because variable results of capsaicin challenges may be due to the incomplete solubility of capsaicin, we sought to determine if the use of Tween-80 in solutions of capsaicin improves actual concentrations of freshly prepared and stored solutions.
Capsaicin solutions ranging from 0.5-128 muM were mixed with and without Tween-80. Samples of various concentrations were then stored under 4 environmental conditions: 4 degrees C, protected from light; room temperature, protected from light; room temperature, exposed to light; -20 degrees C. All samples were analyzed initially, and at 2 and 4 months.
While freshly prepared solutions with Tween-80 had consistently higher concentrations than those prepared without Tween-80 (83% vs. 69%), Tween-80 does not facilitate complete solubility. For solutions stored at 4 degrees C and protected from light, there was a significant decrease after 2 months in low concentration solutions of both the Tween-80 and non-Tween-80 solutions. Both Tween-80 and non-Tween-80 containing solutions significantly decreased in concentration after 2 months when stored at room temperature and protected from light, room temperature and exposed to light, and -20 degrees C. Concentrations of solutions made of 4 muM or higher are stable when stored at 4 degrees C and protected from light for 4 months.
While the inherent difficulty of forcing capsaicin into solution cannot be eliminated, it can be improved with Tween-80. However, the addition of Tween-80 does not prevent the breakdown of stored capsaicin solutions. We recommend preparing and storing capsaicin solutions according to the methods and results of this study.
由于辣椒素激发试验结果存在差异可能是由于辣椒素的不完全溶解性,我们试图确定在辣椒素溶液中使用吐温-80是否能提高新制备和储存溶液的实际浓度。
将浓度范围为0.5 - 128μM的辣椒素溶液分别与有无吐温-80混合。然后将不同浓度的样品储存在4种环境条件下:4℃,避光;室温,避光;室温,光照;-20℃。所有样品在初始时、2个月和4个月时进行分析。
虽然新制备的含吐温-80的溶液浓度始终高于不含吐温-80的溶液(83%对69%),但吐温-80并不能促进完全溶解。对于储存在4℃且避光的溶液,2个月后低浓度的吐温-80溶液和不含吐温-80的溶液均有显著下降。当储存在室温且避光、室温且光照以及-20℃时,含吐温和不含吐温的溶液在2个月后浓度均显著下降。由4μM或更高浓度制成的溶液在4℃且避光储存4个月时浓度稳定。
虽然无法消除将辣椒素溶解到溶液中的固有困难,但使用吐温-80可以改善这一情况。然而,添加吐温-80并不能防止储存的辣椒素溶液分解。我们建议根据本研究的方法和结果制备和储存辣椒素溶液。