• 제목/요약/키워드: Radiohalogen

검색결과 3건 처리시간 0.019초

Bombesin-based Radiopharmaceuticals for Imaging and Therapy of Cancers Expressing Gastrin-releasing Peptide Receptor

  • Hwi-Soo Lim;Choong Mo Kang
    • 대한방사성의약품학회지
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    • 제8권2호
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    • pp.129-137
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    • 2022
  • Bombesin has a high binding affinity to gastrin-releasing peptide receptor (GRPR) and can be used as a targeting ligand in GRPR-related cancers. Because GRPR is overexpressed in prostate cancer, bombesin analogues have been investigated extensively for diagnosis and treatment of prostate cancer. In nuclear medicine, bombesin derivatives labeled with radiometals such as 55/57Co, 64Cu, 68Ga, 99mTc, and 177Lu or radiohalogen such as 131I and 211At were developed as markers for early detection of tumors and theragnostic tool for cancer treatment. This review focuses on the introduction of bombesin-based radiopharmaceuticals that are studied in pre-clinical or clinical research.

유전자 영상용 HSV1-TK 기질의 합성 (Synthesis of Substrates for Gene Therapy Monitoring of HSV1-TK System)

  • 최태현;안순혁;최창운;임상무;오옥두
    • 대한핵의학회지
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    • 제36권2호
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    • pp.102-109
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    • 2002
  • 목적: 유전자 치료에서, 종양세포에 herpes simplex virus thymidine kinase 유전자를 발현시키고 이에 민감한 prodrug을 전신투여하여 발현된 종양세포에 특이적으로 집적되는 방법은 매우 효율적인 방법이다. 대표적인 prodrug인, IVDU, IVFRU는 herpes simplex virus type 1의 비침습적 영상화 방법에 응용되는 방사옥소 표지가능 화합물이다. 재료 및 방법: Trans-l-trimethylsilyl-2-tri-n-butylstannylethylene과 uridine 변형체상의 iodo-uracil을 Pd촉매하에서 반응시켜 표지전구체인 5-trimethylvinyl-deoxy-uridine과 5-trimethylsilylvinyl-deoxy-fluororibofuranosyl uracil을 합성하였다. 이것을 column chromatography의 방법으로 분리 정제하였다. 합성한 각 전구체를 ICI 담체를 이용하여 높은 수율로 표지하였고, HPLC를 사용하여 분리하였다. Radiohalogen exchange 방법은 비방사능을 낮게 할수록 표지에 효율적으로 알려져 있다. 이 방법으로 ICI 방법을 사용하여 담체를 포함하는 높은 방사능의 화합물을 얻을 수 있다. 결과: IVDU와 IVFRU 표지를 위한 전구체 합성수율은 각각 43, 72% 였다. ICl로 담체를 이용한 표지방법을 사용하여 IVDU와 IVFRU 표지수율은 98% 이상이었다. 결론: HSV1-tk를 이용한 유전자 영상용 기질의 전구체를 성공적으로 합성하였고. 95% 이상의 높은 표지수율의 유전자 영상용 방사성 추적자를 성공적으로 제조하였다.

Radiolabeling of nanoparticle for enhanced molecular imaging

  • Kim, Ho Young;Lee, Yun-Sang;Jeong, Jae Min
    • 대한방사성의약품학회지
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    • 제3권2호
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    • pp.103-112
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    • 2017
  • The combination of nanoparticle with radioisotope could give the in vivo information with high sensitivity and specificity. However, radioisotope labeling of nanoparticle is very difficult and radioisotopes have different physicochemical properties, so the radioisotope selection of nanoparticle should be carefully considered. $^{18}F$ was first option to be considered for labeling of nanoparticle. For the labeling of $^{18}F$ with nanoparticle, Prosthetic group is widely used. Iodine, another radioactive halogen, is often used. Since radioiodine isotopes are various, they can be used for different imaging technique or therapy in the same labeling procedures. $^{99m}Tc$ can easily be obtained as pertechnatate ($^{99m}{TcO_4}^-$) by commercial generator. Ionic $^{68}Ga$ (III) in dilute HCl solution is also obtained by generator system, but $^{68}Ga$ can be substituted for $^{67}Ga$ because of the short half-life (67.8 min). $^{64}Cu$ emits not only positron but also ${\beta}-particle$. Therefore $^{64}Cu$ can be used for imaging and therapy at the same time. These radioactive metals can be labeled with nanoparticle using the bifunctional chelator. $^{89}Zr$ has longer half-life (78.4 h) and is used for the longer imaging time. Unlike different metals, $^{89}Zr$ should use the other chelate such as DFO, 3,4,3-(LI-1,2-HOPO) or DFOB.