• 제목/요약/키워드: $[^{11}C]CH_3OTf$

검색결과 3건 처리시간 0.02초

Radiolabeling of 11C-sertraline by fast and easy loop method with [11C]CH3OTf

  • Lee, Hak Jeong;Jeong, Jae Min;Lee, Sang-Yoon;Ido, Tatsuo
    • 대한방사성의약품학회지
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    • 제3권1호
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    • pp.32-37
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    • 2017
  • Cis-(1S,4S)-4-(3,4-dichlorophenyl)-1,2,3,4-tertrahydro-N-methyl-1-naphthalenamine (sertraline) hydrochloride from among selective serotonin reuptake inhibitors (SSRIs) is a treatment of major depression. For the differential diagnosis by metabolizing serotonin in a patient with neurological disorders, the radiolabeled $^{11}C$-sertraline was developed for non-invasive positron emission tomography in living brain and use the evaluation of new drug for SSRIs. We release the results of a fast and easy radiolabeling method applied a one-step loop method with $[^{11}C]CH_3OTf$ for routine clinical applications of $^{11}C$-sertraline. 1 mg of a precursor for $^{11}C$-sertraline in 0.1 mL DMF and $5{\mu}L$ of 1N NaOH, were injected into the loop of semi-prep high-performance liquid chromatography (HPLC). $[^{11}C]CH_3OTf$ was passed through the loop at room temperature (RT). The $^{11}C$-sertraline was separated by the semi-preparative HPLC. $^{11}C$-sertraline was eluted at 28.0 min was collected and evaluated by analytical HPLC and mass spectrometer. The total radiolabeling efficiency of $^{11}C$-sertraline was $30.7{\pm}8.7%$. The specific activity was $64.8{\pm}51.4GBq/{\mu}mol$. The radiochemical and chemical purities were higher than 99%. The mass spectrum of the product showed m/z peaks at 307.1 (M+1), indicating the mass of sertraline. By the one-step loop method with $[^{11}C]CH_3OTf$, $^{11}C$-sertraline could be quickly and easily prepared for clinical application.

$[^{11}C]6-OH-BTA-1$ 조제 시 생성되는 부산물 규명과 반응용매에 따른 표지 효율 비교 (Radiosynthesis of $[^{11}C]6-OH-BTA-1$ in Different Media and Confirmation of Reaction By-products.)

  • 이학정;정재민;이윤상;김형우;이은경;이동수;정준기;이명철
    • Nuclear Medicine and Molecular Imaging
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    • 제41권3호
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    • pp.241-246
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    • 2007
  • 목적: 베타아밀66로이드 양전자단층촬영 영상 추적자인 $[^{11}C]OH-BTA-1(1)$는 알쯔하이머병의 진단용으로 개발되었다. 반응용매 루프 방법에 의한 $[^{11}C]1$$[^{11}C]MeOTf$를 통해서 한번의 반응으로 $^{11}C$을 바로 표지 할 수 있다. 또한 반응 중에 $[^{11}C]2$가 생긴다는 것이 보고된바 있다. 하지만, 실험 중에 다른 부산물이 생기는 것이 발견되어 그 물질을 추정하고, 각 반응용매에 따른 $[^{11}C]1$과 부산물의 표지효율 변화에 대한 조사를 했다. 대상 및 방법: 사이클로트론에서 $^{14}N(p,{\alpha})^{11}C$ 핵반응과 미량의 $O_2$로 부터 의하여 생산되는 $[^{11}C]CO_2$를 0.2 M $LiAlH_4/THF$ 0.2 ml로 환원한 다음 HI 1ml과 반응하여 $[^{11}C]CH_3I$를 생산했다. 질소가스를 20 ml/min로 불어 주면서 200C 에서 AgOTf-Graphpac GC column를 통과시켜 $[^{11}C]CH_3OTf$를 생산했다. 각 반응용매 (MEK, CHO, DEK, DMF) 100 1에 녹인 전구물질 1 mg를 고성능 액체 크로마토그래피 시료 루프에 미리 주입하고 $[^{11}C]CH_3OTf$를 상온에서 7분 동안 질소가스를 불어줬다. Semi-preparative HPLC로 분리하였다. 결과: 각 반응용매에서 $[^{11}C]1$에 표지효율은 MEK: $86.0{\pm}5.5%$, CHO: $59.7{\pm}2.4%$, DEK: $29.9{\pm}1.8%$, DMF: $7.6{\pm}0.5%$이었다. MEK에서 얻은 $[^{11}C]1$의 비방사능은 98 ($GBq/{\mu}mol$)이다. 각 물질의 질량 분석은 1: m/z 257.3 (M+1), 2: 257.3 (M+1), 3: 271.3 (M+1)이었다. 각 생성물질의 표지효율은 MEK에서 $86.0{\pm}5.5%:5.0{\pm}3.4%:1.5{\pm}1.3%$ $([^{11}C]1:[^{11}C]2:[^{11}C]3)$, CHO에서 $59.7{\pm}2.4%:4.7{\pm}3.2%:1.3{\pm}0.5%$, DEK에서 $29.9{\pm}1.8%:2.0{\pm}0.7%:0.3{\pm}0.1%$, DMF에서 $7.6{\pm}0.5%:0.0%:0.0%$이다. 결론: $[^{11}C]1$은 4가지 반응용매 중 MEK 반응용매에서 가장 높은 표지효율을 나타냈다. 부산물인 $[^{11}C]3$은 고성능 액체 크로마토그래피의 자외선, 방사능 검출기와 질량 분석법을 통해 물질을 추정할 수 있었다.

Consecutive automated production of carbon-11 labeled radiopharmaceuticals by sharing 11C-methylation reagent from one 11C-synthetic module

  • Park, Hyun Sik;Lee, Hong Jin;An, Hyun Ho;Moon, Byung Seok;Lee, Byung Chul;Kim, Sang Eun
    • 대한방사성의약품학회지
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    • 제2권2호
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    • pp.123-131
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    • 2016
  • Increasing clinical demand for carbon-11 labeled radiopharmaceuticals has triggered technological advances in fields of radiochemistry and automated modules. Even though carbon-11 has a short half-life ($t_{1/2}=20.4min$), the consecutive second production of carbon-11 labeled radiopharmaceutical in one $^{11}C$-synthetic module should be delayed at least over 4 h to avoid the high radiation exposure. We herein aimed to produce two different carbon-11 labeled radiopharmaceuticals ([$^{11}C$]PIB and [$^{11}C$]methionine) by sharing of [$^{11}C$]methylation source in one $^{11}C$-synthetic module. The synthesis of $^{11}C$-labeling reagents ($[^{11}C]CH_3I$ or $[^{11}C]CH_3OTf$) is fully automated using the commercial TRACERlab $FX_{C-pro}$ module and is readily adaptable to $^{11}C$-labeling reactor for [$^{11}C$]PIB as well as another $^{11}C$-labeling apparatus for [$^{11}C$]methionine via the three-way valve. After completing the [$^{11}C$]PIB production, the re-synthesized $[^{11}C]CH_3I$ was passed through the three-way valve connected the polyetheretherketone (PEEK) line and loaded into the C18 Sep-Pak cartridge including the methionine precursor. The labeled product [^${11}C$]methionine was purified by a simple cartridge separation and reformulated into saline. The radiochemical yield of [$^{11}C$]PIB and [$^{11}C$]methionine were $5.3{\pm}0.6%$ and $18.7{\pm}0.8%$ (n.d.c.), respectively, with over 97% of radiochemical purity. The specific activity of [$^{11}C$]PIB was over $110GBq/{\mu}mol$. Total production time of two radiopharmaceuticals needs about 2 h from $1^{st}$ beam irradiation including quality control tests. Final [$^{11}C$]PIB and [$^{11}C$]methionine were satisfied all quality control test standards.