{"created":"2023-05-15T14:51:50.931520+00:00","id":70877,"links":{},"metadata":{"_buckets":{"deposit":"965b283b-9b3d-4381-aa86-48bb284ca079"},"_deposit":{"created_by":1,"id":"70877","owners":[1],"pid":{"revision_id":0,"type":"depid","value":"70877"},"status":"published"},"_oai":{"id":"oai:repo.qst.go.jp:00070877","sets":["10:28"]},"author_link":["696461","696469","696467","696470","696462","696468","696464","696463","696465","696466"],"item_10005_date_7":{"attribute_name":"発表年月日","attribute_value_mlt":[{"subitem_date_issued_datetime":"2012-09-08","subitem_date_issued_type":"Issued"}]},"item_10005_description_5":{"attribute_name":"抄録","attribute_value_mlt":[{"subitem_description":"Introduction: Size-tunable unilamellar polyion complex vesicles (PICsome) has been developed as anovel nano-vesicle for therapeutics and diagnosis (Anraku Y, et al; J Am Chem Soc., 2010). Theaccumulation of Cy5-labeled PICsomes in tumor has recently been demonstrated using a fluorescenceimaging technique (Anraku Y, et al: Chem Comm., 2011). It was found that the half-life of thePICsomes in the bloodstream can be extended over 24 hours by adjusting the size of PICsomes,providing ample time for the vesicles to accumulate in the target tissue. For the present study,\nPICsomes containing super paramagnetic iron oxide nanoparticle (SPIO, ferucarbotran) were developedand in vivo accumulation in mouse tumor was evaluated with MR imaging. Methods: Female Balb/c nude\nmice were used for in vivo MR imaging experiments. A subcutaneous tumor model was created by\ninjecting Colon26 cancer cells (1.0 106 cells / 50 ) into the rump of the animals and allowing them\nto grow for 7 to 8 days. SPIO (Resovist®), which contains ferucarbotran as a major component, wasencapsulated in the Cy5-labeled PICsomes. The diameter of the PICsomes was about 100 nm. ThePICsomes were administered to the model mice via the tail vein in a 0.45 mg/kg dose of iron. As a\ncontrol group, SPIO alone was injected via the tail vein of tumor model mice. All MR image acquisitionswere performed on a 7.0 Tesla animal MRI (Magnet: Kobelco and JASTEC, Japan, Console: Bruker-\nBiospin, Germany) with a 35 mm inner-diameter transmit/receive volume coil (Rapid Biomedical,\nGermany). T1-weighted and T2-weighted MR images were acquired before, immediately after, at 3, 6and 24 hours after the drug administration. Imaging parameters were as follows: TR/TE/NEX = 400 ms\n/ 9.57 ms / 4 (T1-weighted image), 3000 ms / 30 ms / 1 (T2-weighted image); FOV = 38.4 mm 19.2\nmm; and Matrix = 256 128. After MR image acquisition was completed for the PICsome group,fluorescence images were acquired using a fluorescence imager (Maestro Ex, Caliper LifeScience, USA)to confirm the accumulation of PICsomes at the tumor region. Results & Discussion: For 3-24 hours\nafter PICsome administration, the T2-weighted signal intensity in the tumor region significantlydecreased from the intensity before administration. After 24 hours the area in tumor showing decreased T2-weighted signal expanded, and it was also possible to detect decreased signal intensity in the T1-weighted images. At the same time, the fluorescence signal also increased in the tumor region in\ncomparison to the signal before administration. On the other hand, there were no signal changes in thesubcutaneous tumor using SPIO alone, probably because the drug was predominantly captured by the Kupffer cells in the liver (Kato N, et al: Invest Radiol., 1999). These results indicate that the SPIOcontaining\nPICsome passively accumulated due to EPR (Enhanced Permeability and Retention) effectand altered the MR signal in the tumor region specifically.","subitem_description_type":"Abstract"}]},"item_10005_description_6":{"attribute_name":"会議概要(会議名, 開催地, 会期, 主催者等)","attribute_value_mlt":[{"subitem_description":"2012 World Molecular Imaging Congress","subitem_description_type":"Other"}]},"item_access_right":{"attribute_name":"アクセス権","attribute_value_mlt":[{"subitem_access_right":"metadata only access","subitem_access_right_uri":"http://purl.org/coar/access_right/c_14cb"}]},"item_creator":{"attribute_name":"著者","attribute_type":"creator","attribute_value_mlt":[{"creatorNames":[{"creatorName":"Kokuryo, Daisuke"}],"nameIdentifiers":[{"nameIdentifier":"696461","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"Kano, Mitsunobu"}],"nameIdentifiers":[{"nameIdentifier":"696462","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"Saga, Tsuneo"}],"nameIdentifiers":[{"nameIdentifier":"696463","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"Kataoka, Kazunori"}],"nameIdentifiers":[{"nameIdentifier":"696464","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"Aoki, Ichio"}],"nameIdentifiers":[{"nameIdentifier":"696465","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"et.al"}],"nameIdentifiers":[{"nameIdentifier":"696466","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"國領 大介","creatorNameLang":"en"}],"nameIdentifiers":[{"nameIdentifier":"696467","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"狩野 光伸","creatorNameLang":"en"}],"nameIdentifiers":[{"nameIdentifier":"696468","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"佐賀 恒夫","creatorNameLang":"en"}],"nameIdentifiers":[{"nameIdentifier":"696469","nameIdentifierScheme":"WEKO"}]},{"creatorNames":[{"creatorName":"青木 伊知男","creatorNameLang":"en"}],"nameIdentifiers":[{"nameIdentifier":"696470","nameIdentifierScheme":"WEKO"}]}]},"item_language":{"attribute_name":"言語","attribute_value_mlt":[{"subitem_language":"eng"}]},"item_resource_type":{"attribute_name":"資源タイプ","attribute_value_mlt":[{"resourcetype":"conference object","resourceuri":"http://purl.org/coar/resource_type/c_c94f"}]},"item_title":"SPIO-containing unilamellar polyion complex vesicles (PICsome) for in vivo tumor detection using MRI","item_titles":{"attribute_name":"タイトル","attribute_value_mlt":[{"subitem_title":"SPIO-containing unilamellar polyion complex vesicles (PICsome) for in vivo tumor detection using MRI"}]},"item_type_id":"10005","owner":"1","path":["28"],"pubdate":{"attribute_name":"公開日","attribute_value":"2012-09-11"},"publish_date":"2012-09-11","publish_status":"0","recid":"70877","relation_version_is_last":true,"title":["SPIO-containing unilamellar polyion complex vesicles (PICsome) for in vivo tumor detection using MRI"],"weko_creator_id":"1","weko_shared_id":-1},"updated":"2023-05-15T19:57:47.694366+00:00"}