• Title/Summary/Keyword: Radioiodination

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Radio-Iodinated arbutin for tumor imaging

  • Huynh, Phuong Tu;Ha, Yeong Su;Lee, Woonghee;Yoo, Jeongsoo
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.3 no.2
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    • pp.72-79
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    • 2017
  • Arbutin is a hydroquinone derivative with a glucose moiety. As a tyrosinase inhibitor, it is widely used as a skin-whitening cosmetic agent for the treatment of cutaneous hyperpigmentary disorders, such as melasma and freckles. In the medical field, many studies have addressed the use of arbutin in various tumors, but the mechanism for tumor uptake of arbutin is still unclear. In this paper, we radiolabeled arbutin using radioiodine and studied its pharmacokinetics and tumor uptake via biodistribution experiments and single-photon emission computed tomography (SPECT) imaging. Radiolabeled $^{131}I-arbutin$ was stable for up to 24 h in PBS and serum. Biodistribution studies and SPECT imaging indicated high uptake of the compound in the bladder and kidneys shortly after injection. Twenty-four hours post-injection, significant deiodination was observed. Apart from high thyroid uptake, selective tumor uptake was clearly observed. The tumor-to-muscle and tumor-to-blood ratios were 26 and 9, respectively.

Enzymatic Radioiodination of Insulin for Radioimmunoassay Use

  • Awh, Ok-Doo;Kim, Jae-Rok
    • Nuclear Engineering and Technology
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    • v.12 no.2
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    • pp.81-87
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    • 1980
  • Insulin was labelled with $^{125}$ I using lactoperoxidase as an oxidizing agent. The reaction product was purified via two stages: a starch gel electrophoresis(SGE) and a Sephadex gel filtration (SF). Upon comparison of the labelling yields and the bindabilities of the labelled insulin to its antibody, it has been found that the enzyme method shows higher yields (50%) and the better bindability to its antibody than the conventional chloramine-T method (35%). By checking the insulin blank labelling mixture with a SGE, a paper chromatography, and a radioautography technique, a by-product in the lactoperoxidase method has been identified. The separated fractions in SGE and SF were also analyzed and discussed.

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Direct radio-iodination of folic acid for targeting folate receptor-positive tumors

  • Huynh, Phuong Tu;Lee, Woonghee;Ha, Yeong Su;Yoo, Jeongsoo
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.4 no.1
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    • pp.3-10
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    • 2018
  • The folate receptor (FR) is a promising cell membrane-associated target for nuclear imaging of various cancers (via imaging $FR-{\alpha}$) and potentially also inflammatory diseases (via imaging $FR-{\beta}$), through the use of folic acid-based radioconjugates. However, there have been several drawbacks of previously reported radioconjugates, such as a short half-life of the radiolabel ($^{68}Ga\;t_{1/2}$ 68 min), a complex and time-consuming multistep radiosynthesis, and a high renal uptake of radiolabeled folate derivatives. The goal of this study was to develop an imaging probe by directly labeling folate with radioactive iodine without using an extra prosthetic group. The radiolabeling of folate was optimized using various labeling conditions and the labeled tracers were isolated by high-performance liquid chromatography. The in vitro stability of labeled folate was checked in phosphate-buffered saline and serum. The tumor-targeting efficacy of the probe was also evaluated by biodistribution studies using a murine 4T1 tumor model.

Radiolabelled Monoclonal Antibodies (McAb): An Alternate Approach to the Conventional Methods for the Assessment of Cardiomyocyte Damage in an Experimental Brain-Death Pig Model

  • Haider, Kh.H.;Stimson, W.H.
    • Archives of Pharmacal Research
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    • v.21 no.5
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    • pp.496-502
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    • 1998
  • The present study was carried out to determine the possible use of cTn-I in the cardiac myofibrillar architecture, as a potential target for in vivo radioimmunodetection of cardiac damage in a brain death pig model. Radioiodiantion of the anti-cTn-I 5F4 McAb was carried out by lactoperoxidase method. the percentage iodine incorporation achieved was 70-75%. The radioiodinated McAbs were purified on Sephadex G-25 column and characterised by Paper chromatography, Phast Gel electrophoresis and electroimmunoblotting. Radioiodinated anticTn-I 5F4 McAbs were employed alongside Pyrophosphate($Tc_{99m}$-PPi$) and $Thallium^{201}$ chloride($TI^{201}$) in 24 landrace pigs (brain-dead=18 & sham-operated=6). The percentage cardiac uptake of the radiolabelled antibody injected dose was significantly higher in the brain dead animals(0.196%) as compared to that of sham-operated animals (0.11%). Specific in vivo localization of radiolabelled McAbs in the infarcted cardiac tissue was confirmed by computer-aided reconstruction of 3-D images of the isolated heart. The preliminary results of the study revealed preferential uptake of radiolabelled antibody at the site of myocyte damage resulting from artificially induced brain death.

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Synthesis of 125I-labeled thiol-reactive prosthetic group for site-specific radiolabeling of human serum albumin

  • Shim, Ha Eun;Song, Lee;Jeon, Jongho
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.4 no.2
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    • pp.85-89
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    • 2018
  • We demonstrate a detail protocol for the radiosynthesis of an $^{125}I$-labeled MSTP prosthetic group and its application to the efficient radiolabeling of human serum albumin (HSA). Radioiodination of the precursor (2) was carried out by using $[^{125}I]$NaI and chloramine T as an oxidant at room temperature for 15 min. After HPLC purification of the crude product, the purified $^{125}I$-labeled MSTP ($[^{125}I]1$) was obtained with high radiochemical yield ($73{\pm}5%$, n = 3) and excellent radiochemical purity (>99%). Site-specific reaction between ($[^{125}I]1$) and HSA gave the $^{125}I$-labeled human serum albumin ($[^{125}I]3$) with more than 99% of radiochemical yield as determined by radio-thin-layer chromatography (radio-TLC). These results clearly demonstrate that the present radiolabeling method will be useful for the efficient and convenient radiolabeling of thiol-bearing biomolecules.

Study on radiolabeling method of chitosan to improve the radiolabeling yield of the final product

  • Jung Ae Kang;A-Ram Yu;Jae Jun Lee;Yeong Su Ha
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.7 no.2
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    • pp.113-118
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    • 2021
  • Chitosan is a polysaccharide derived from chitin by deacetylation. Chitosan is non-toxic, biodegradable, and biocompatible, so that it can be used in wide variety of medical applications such as wound healing and antimicrobial biomaterials. It also used as dermal fillers due to its ability to inject with liquid formulations. For investigation on in vivo distribution of these chitosans, Bolton-Hunter-conjugated chitosan (Chitosan-BH) was synthesized by the reaction between the primary amino group of chitosan and N-hydroxysuccinimide ester group of Bolton-Hunter reagent. Then Chitosan-BH was radiolabeled with 125I (Chitosan-BH-125I) using a Chloramine-T method. The effects of each radiolabeling step on the radiolabeling yield of the final product were tested. The results showed that purification step had significant effects on the radiolabeling yield of the final product. Finally, SPECT/CT images were obtained to evaluate in vivo uptake of the radiolabeled chitosan (Chitosan-BH-125I) in several organs. The highest uptake was found in the site of injection at 21 days post-injection. The results of this study suggest that chitosan is expected to be useful for biomaterials of dermal fillers.

Indigenous Radiosynthesis of [131I]Iodobenzylguanidine ([131I]mIBG) for Neuroblastoma Imaging

  • Nadeem Ahmed Lodhi;Muhammad Irfan;Muhammad Nasir Saddique;Kahkshan Bashir Mir;Naseer Ahmed;Shazia Fatima;Mumtaz Khan;Muhammad Wasim;Samina Roohi
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.8 no.2
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    • pp.71-76
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    • 2022
  • Indigenous diagnostic dose of 131I-labeled meta-iodobenzylguanidine ([131I]mIBG) was prepared via Cu+ catalyzed isotope exchange reaction generated in situ by sodium metabisulfite for imaging of neuroblastoma tumor. [131I]mIBG was produced in overall 85-90% radiochemical yield. The average amount of radioactivity of [131I]mIBG was 2164 MBq (1998-2331MBq) with an average specific activity > 1000 MBq/mg at the end of synthesis. The radiochemical purity was ≥ 99.9% after purification through Dowex-1 × 8 ion exchange resin (100-150 mesh) at the date of preparation. The stability of [131I]mIBG at concentration 480-555 MBq/mL was > 97% at 4 ℃ after 4 days. The room temperature (25 ℃) stability of [131I]mIBG was > 98% after 24 h. Biodistribution of [131I]mIBG in patient showed uptake in salivary glands, liver, spleen and excreted though urinary bladder. Neuroendocrine medicated uptake into tumor lesion and metastatic sites were noted which strongly correlate with the morphological abnormalities of patient.

Immunoreactivity of Radiolabelled Monoclonal Antibody and Sensitivity of Immunoradiometric Assay: Effect of Labelling Method and Specific Activity (동위원소 표지 단세포군항체의 면역반응성과 방사면역계수법의 예민도 : 표지방법 및 비방사능이 미치는 영향)

  • Ryu, Jin-Sook;Moon, Dae-Hyuk;Cheon, Jun-Hong;Lee, Myung-Hae;Chung, Hong-Keun
    • The Korean Journal of Nuclear Medicine
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    • v.27 no.2
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    • pp.261-269
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    • 1993
  • When monoclonal antibodies are used in radioimmunoassay or immunoscintigraphic studies, post-labelling immunoreativity is a critical parameter. $^{125}I$ was incorporated to CEA-79 (anti CEA monoclonal antibody developed in Korea) by chloramine T and iodogen method with variable specific activities from $0.1{\mu}Ci/{\mu}g$ to $100{\mu}Ci/{\mu}g$. We used a new method to evaluate the immunoreactivites of modified antibody relative to the unlabelled native antibody from competitive binding assay. The effect of immunoreactivity and specific activity to the sensitivity of radioimmunometric assay was also evaluated. As a result, chloramine T method was better than iodogen method in radioiodination of CEA-79, because the immunoreactivity of antibody was relatively well reserved and more stable. New competitive binding assay was simple and effective to evaluate the change of immunoreactivity in radiolabelling. Antibody with high immunoreactivity and high specific activity improved the sensitivity of radioimmunometric assay, whereas antibody with high specific activity but low immunoreactivity didn't. The immunoreactivity and specific activity should be optimized according to the clinical un, and competitive binding method is useful in selection of optimal radiolabelling assay.

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Synthesis of I-125 Labelled Compound of Taxol Analogue for Radioimmunoassay (Taxol의 방사면역측정을 위한 I-125 표지화합물 합성)

  • 오옥두;금준섭;이양호;박용석;편웅범;최창운
    • Biomedical Science Letters
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    • v.3 no.2
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    • pp.125-130
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    • 1997
  • Taxol, an anticancer drug that has diterpenoid conformation, has been used as an effective chemotherapeutical agent in the treatment of breast and ovarian cancers. Because of its toxicity like other anticancer drugs, monitoring the taxol level in serum is important procedure during cancer therapy. The various monitoring methods using HPLC, ELISA, and RIA have been adopted, and RIA technique is known to be superior than other methods in trems of sensitivity and convenience. In this study, in order to develope taxol RIA system using $^{125}$I labelled antigen, first of all we synthesized taxol derivatives. 2'-hemisuccinyltaxol was obtained with about 80% yield by esterification of taxol at C-2' hydroxyl group on C-13 carbon with succinic anhydride. [$^{125}$I]iodotyramine was prepared with 58% labelling yield by radioiodination of tyramine and purified by gel chromatography. 2'-[$^{125}$I]iodotyramine-hemisuninyltaxol, $^{125}$I labelled antigen for taxol RIA, was synthesized with 96% yield from conjugation of 2'-hemisuccinyltaxol and [$^{125}$I]iodotyramine. Anti-taxol serum was produced from the rabbit immunized with 2'-hemisuccinyltaxol-BSA synthesized by 2'-hemisuccinyltaxol and BSA. The antiserum titer was determined by RIA using 2'-[$^{125}$I]iodotyramine-hemisuccinyltaxol. The titer of 1:20 was obtained with about 40% of B/T. The results suggest that taxol RIA using $^{125}$I labelled antigen can be applied to monitor the taxol level in serum.

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

  • Choi, Tae-Hyun;Ahn, Soon-Hyuk;Choi, Chang-Woon;Lim, Sang-Moo;Awh, Ok-Doo
    • The Korean Journal of Nuclear Medicine
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    • v.36 no.2
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    • pp.102-109
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    • 2002
  • Purpose : In gene therapy, tumor cells expressing the herpes simplex virus thymidine kinase are sensitive to prodrugs. Potential prodrugs IVDU and IVFRU were synthesized and radiolabeled with radioiodine for noninvasive imaging of herpes simplex virus type 1 gene expression. Material and Methods : 5-(2-trimethysilyl) vinyl-2'-deoxyuridine and 5-(2-trimethylsilyl)vinyl-2'-fluoro-2'-deoxyuridine, precursors of 5-(2--iodo)viny l-2'-deoxy uridine(IVDU) and 5-(2-iodo)-2'-vinyl-2'-deoxy-2'-fluororibofuranosyl uracil(IVFRU), were synthesized from reaction of trans-1-trimethylsillyl-2-tri-n-butylstannylethylene with 5-iodo-2'-deoxyuridine and 5-iodo-2'-fluoro-2'-deoxyuridine, respectively, on the condition of Pd catalyst. These precursors were separated from reaction mixture by silica gel column chromatography method. Each precursor was radioiodinated with radioiodine by mixing with ICI oxidizing agent. These radioiodinated compounds were purified with HPLC. Radiohalogen exchange has been shown to be effective for the synthesis of products with lower specific activity. Similarly, carrier-added and high specific activity products have been isolated in respectable radiochemical yields using ICI method. Results : Synthetic yield of precursors, IVDU and IVFRU were 43% and 18%, respectively. Radiochemical purity of both compunds was over 98%. Conclusion : We synthesized precursors of IVDU and IVFRU for monitoring of HSV1-tk gene expression. Radiotracers were radioiodinated with high radiolabeling yield by ICI method.