분자영상 및 방사화학

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  • [PLoS One .] Enhancement of in vivo targeting properties of ErbB2 aptamer by chemical modification화학적 변형을 통한 ErbB2 압타머의 생체 내 표적화 특성 향상

    연세의대 / 박준영, 강원준*

  • 출처
    PLoS One .
  • 등재일
    2023 Sep 20
  • 저널이슈번호
    18(9):e0291624. doi: 10.1371/journal.pone.0291624. eCollection 2023.
  • 내용

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    Abstract
    Aptamers have great potential for diagnostics and therapeutics due to high specificity to target molecules. However, studies have shown that aptamers are rapidly distributed and excreted from blood circulation due to nuclease degradation. To overcome this issue and to improve in vivo pharmacokinetic properties, inverted deoxythymidine (idT) incorporation at the end of aptamer has been developed. The goal of this study was to evaluate the biological characterization of 3'-idT modified ErbB2 aptamer and compare with that of unmodified aptamer via nuclear imaging. ErbB2-idT aptamer was labeled with radioisotope F-18 by base-pair hybridization using complementary oligonucleotide platform. The hyErbB2-idT aptamer demonstrated specific binding to targets in a ErbB2 expressing SK-BR-3 and KPL4 cells in vitro. Ex vivo biodistribution and in vivo imaging was studied in KPL4 xenograft bearing Balb/c nu/nu mice. 18F-hyErbB2-idT aptamer had significantly higher retention in the tumor (1.36 ± 0.17%ID/g) than unmodified 18F-hyErbB2 (0.98 ± 0.19%ID/g) or scrambled aptamer (0.79 ± 0.26% ID/g) at 1 h post-injection. 18F-hyErbB2-idT aptamer exhibited relatively slow blood clearance and delayed excretion by the renal and hepatobiliary system than 18F-hyErbB2 aptamer. In vivo PET imaging study showed that 18F-hyErbB2-idT aptamer had more stronger PET signals on KPL4 tumor than 18F-hyErbB2 aptamer. The results of this study demonstrate that attachment of idT at 3'-end of aptamer have a substantial influence on biological stability and extended blood circulation led to enhanced tumor uptake of aptamer.

     

     

    Affiliations

    Jun Young Park 1, Ye Lim Cho 1, Ju Ri Chae 1, Jung Hwan Lee 2, Won Jun Kang 1
    1Department of Nuclear Medicine, Severance Hospital, Yonsei University College of Medicine, Seoul, Republic of Korea.
    2INTEROligo Corporation, Anyang-si, Gyeonggi-do, Republic of Korea.

  • 편집위원

    aptamer은 항체에 비교될 정도로 높은 표적특이성과 활용도를 가짐에도 불구하고 체내에서는 nuclease에 의해 쉽게 분해될수 있다는 점이 약점으로 지적되고 있다. 본 연구에서는 Inverted deoxythymidine(idT)을 aptamer 말단에 삽입하여 nuclease에 의한 분해가 되지 않도록 하여 aptamer의 단점을 보완하고, 이에 따라 체내 안정성을 증가시키고 혈중 제거율을 감소시켜 표적항원에 대한 높은 표적성을 유지할 수 있도록 하였다. 또한 base-pair hybridization을 이용하여 손쉽게 F-18을 aptamer에 표지하고 진단용 방사성의약품으로서 기존 aptamer 대비 높은 영상대조도를 보이는 성과를 이루었다.

    2023-12-05 17:37:40

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