Sasahara Ikuko, Furuhata Yasufumi, Iwasaki Yusaku, Inoue Naohiko, Sato Hitoshi, Watanabe Tatsuo, Takahashi Michio
Research Institute for Health Fundamentals, Ajinomoto Co., Inc., Kawasaki, Kanagawa, Japan.
Biosci Biotechnol Biochem. 2010;74(2):274-8. doi: 10.1271/bbb.90570. Epub 2010 Feb 7.
CH-19 Sweet is a newly found chili pepper breed bearing much less pungent fruits. Because CH-19 Sweet fruits were found to contain three analogs (capsinoids) of capsaicin, a major component of pungency of hot peppers (the analogs are capsiate or CST, dihydrocapsiate or DCT, and nordihydrocapsiate or NDCT), we assessed in this study the bio-potencies of these three capsinoids by comparing them with capsaicin. The three capsinoids bound to transient potential vanilloid 1 (TRPV1) receptors expressed in cultured cells and activated Ca(2+) influx in a concentration-dependent manner with similar magnitudes. In contrast to capsaicin, capsinoids at the same concentration induced virtually no nociceptive responses when applied to the eyes or the oral cavities of mice. Intravenous administration of capsaicin or 20-fold increased doses of each capsinoid to rats induced significant increases in plasma catecholamine levels. Orally administered, each capsinoid enhanced oxygen consumption in mice. Based on the present results, capsaicin and these three capsinoids should have similar bio-potency, though capsinoids do not generate pungency or sensory irritation.
CH-19甜椒是新发现的一种辣椒品种,其果实的辛辣味要淡得多。由于发现CH-19甜椒果实含有辣椒素(辣椒辛辣味的主要成分)的三种类似物(类辣椒素)(这三种类似物分别是辣椒脂或CST、二氢辣椒脂或DCT以及去甲二氢辣椒脂或NDCT),我们在本研究中通过将这三种类辣椒素与辣椒素进行比较来评估它们的生物活性。这三种类辣椒素与培养细胞中表达的瞬时受体电位香草酸亚型1(TRPV1)受体结合,并以浓度依赖性方式激活Ca(2+)内流,其程度相似。与辣椒素不同,相同浓度的类辣椒素应用于小鼠眼睛或口腔时几乎不会引起伤害性反应。给大鼠静脉注射辣椒素或每种类辣椒素剂量增加20倍会导致血浆儿茶酚胺水平显著升高。口服时,每种类辣椒素都会增加小鼠的耗氧量。基于目前的结果,辣椒素和这三种类辣椒素应该具有相似的生物活性,尽管类辣椒素不会产生辛辣味或感觉刺激。