著者
花尻(木倉) 瑠理 内山 奈穂子 河村 麻衣子 緒方 潤 合田 幸広
出版者
公益社団法人 日本薬学会
雑誌
YAKUGAKU ZASSHI (ISSN:00316903)
巻号頁・発行日
vol.133, no.1, pp.31-40, 2013 (Released:2013-01-01)
参考文献数
30
被引用文献数
14 26

In recent years, many analogs of narcotics have been widely distributed as easily available psychotropic substances and have become a serious problem in Japan. To counter the spread of these non-controlled substances, the Pharmaceutical Affairs Law in Japan was amended in 2006 to establish a new category; Designated Substances in order to more strictly control these substances. In April 2007, 31 compounds and 1 plant were first controlled as Designated Substances. Before 2007, the major compounds distributed in the Japanese illegal drug market were tryptamines, phenethylamines and piperazines. Alkyl nitrites, such as isobutyl nitrite and isopentyl nitrite, were also widely distributed. After they were listed as Narcotics or Designated Substances in 2007, these compounds, especially the tryptamines, quickly disappeared from the market. In their place, cathinone derivatives have been widely distributed, as well as different phenethylamines and piperazines. Additionally, in recent years, new herbal products containing synthetic cannabinoids have appeared globally. As at July 2012, 78 substances (including 1 plant; Salvia divinorum) were listed in the category of Designated Substances. They were 13 tryptamines, 17 phenethylamines, 11 cathinones, 4 piperazines, 23 synthetic cannabinoids, 6 alkyl nitrites, 3 other compounds and 1 plant. In this review, we show our survey of the spread of new designer drugs in Japan, focusing especially on synthetic cannabinoids and cathinone derivatives. Also, the prevalence and legal status of these substances in other countries will be presented.
著者
緒方 潤 河村 麻衣子 袴塚 高志 花尻(木倉) 瑠理
出版者
公益社団法人 日本薬学会
雑誌
YAKUGAKU ZASSHI (ISSN:00316903)
巻号頁・発行日
vol.140, no.12, pp.1501-1508, 2020-12-01 (Released:2020-12-01)
参考文献数
18
被引用文献数
3

In Japan, mitragynine, 7-hydroxymitragynine and Mitragyna speciosa Korth. (M. speciosa, “Kratom”) were controlled as Designated Substances under the Pharmaceutical and Medical Device Act from March 2016. In this study, the origins of 16 Kratom products obtained from the illegal drug market in Japan were investigated by DNA analyses and LC-MS analyses. When the PCR-restriction fragment length polymorphism (RFLP) was performed using the restriction enzyme XmaI (as reported by Sukrong et al. to be able to distinguish M. speciosa), the same DNA fragment patterns were obtained from all 16 products. On the other hand, as a result of the identification of the plant species of each product by nucleotide sequence analyses, the sequences of M. speciosa were detected in only 14 products. Despite the facts that mitragynine and 7-hydroxymitragynine were detected also in the other two products by the LC-MS analyses, M. speciosa DNAs were not amplified from these products by the PCR. Moreover, the DNA amplicons of the other psychotropic plant (Mesembryanthemum sp., e.g. “Kanna”) were detected. This plant PCR amplicon has the restriction site for the XmaI at the same position of the M. speciosa PCR amplicon and it is difficult to distinguish “Kratom” and “Kanna” by the conventional PCR-RFLP. When the restriction enzyme XhoI was used simultaneously with the Xmal, the specific DNA fragment was only observed from the M. speciosa amplicon and it was possible to distinguish both species using this improved PCR-RFLP method. This method is useful to identify the origin of Kratom products distributed in the illegal drug market.
著者
緒方 潤 花尻(木倉) 瑠理 吉松 嘉代 木内 文之 合田 幸広
出版者
公益社団法人 日本薬学会
雑誌
YAKUGAKU ZASSHI (ISSN:00316903)
巻号頁・発行日
vol.128, no.11, pp.1707-1711, 2008-11-01 (Released:2008-11-01)
参考文献数
11
被引用文献数
4 10

Cannabis plants show a high Δ9-tetrahydrocannabinol content and are used as a psychoactive drug. Therefore the cultivation of hemp and its possession are prohibited by law in Japan. Meanwhile, Cannabis seeds have been used as a component of shichimi-togarashi (a Japanese spice), bird feed, or a crude drug (mashinin). To exclude the possibility of germination, it is officially noticed that hemp seeds must be killed. However, the number of violators has increased in recent years. To judge the ability of seed germination, a germination test is performed. However, the test requires several days and thus has not been used for on-site inspection. In this study, we developed a rapid detection method to determine the ability of Cannabis seeds to germinate using 2,3,5-triphenyl-2H-tetrazolium chloride (TTC). The principle of the assay is as follows. The endogenous respiratory enzymes in hemp seeds convert added colorless TTC into red 1,3,5-triphenylformazan. Consequently, a living embryo is stained red, while red does not appear in the dead seeds. The reaction was active over a pH range of 8.0-9.0, and the optimum activity was found from 40 to 50°C. Under the optimum conditions, we were able to determine the ability of seeds to germinate based on the presence of color within 20 min. Since this method is rapid and simple, it is applicable to on-site inspections. In addition, it could be used as an alternative technique to the germination test, because erroneous decisions is cannot occur under the assay principle.