大阪大学 · 医学
Kazuko Kaneda-Nakashima教授の研究室は、がん治療を目的とした標的α線療法(TAT)の開発を主軸としています。特に、LAT1やFAPといった腫瘍微小環境に特異的に発現するタンパク質を標的にした放射性核種標識化合物の設計・合成と、その抗腫瘍効果の評価を進めています。<sup>211</sup>Atを用いた新規プローブの開発を通じて、転移や全身性がんに対する効果的な治療法の確立を目指しています。
Figures are computed from collected data and may differ slightly.
α-Methyl-l-tyrosine (AMT) has a high affinity for the cancer-specific l-type amino acid transporter 1 (LAT1). Therefore, we established an anti-cancer therapy, with <sup>211</sup> At-labeled α-methyl-l-tyrosine (<sup>211</sup> At-AAMT) as a carrier of <sup>211</sup> At into tumors. <sup>211</sup> At-AAMT had high affinity for LAT1, inhibited tumor cell growth, and induced DNA double-stranded breaks in vitro. We evaluated the accumulation of <sup>211</sup> At-AAMT in vivo and the role of LAT1. Tr
Fibroblast activation proteins (FAP) are overexpressed in the tumor stroma and have received attention as target molecules for radionuclide therapy. The FAP inhibitor (FAPI) is used as a probe to deliver nuclides to cancer tissues. In this study, we designed and synthesized four novel <sup>211</sup>At-FAPI(s) possessing polyethylene glycol (PEG) linkers between the FAP-targeting and <sup>211</sup>At-attaching moieties. <sup>211</sup>At-FAPI(s) and piperazine (PIP) linker FAPI exhibited distinct
Isocyanates are very useful chemicals, and these are important for our daily life. Various products, especially urethane resin, are made from these chemicals. There is no substitute for isocyanates at the present. Isocyanates are patent agents to provoke immunological responses. This article deals with the case reports of hypersensitivity pneumonitis (HP) induced by isocyanates in Japan. It is said that HP is one of the rare diseases induced by isocyanate with very low frequency so far in the wo
Although polymorphisms in RIP2 are not likely to be associated with the development of asthma, the genetic variants might contribute to asthma severity in the Japanese population.
Our results indicate that IgE-dependent Zn release from human MCs involves signaling cascades that are distinct from those of degranulation. Thus, Zn may have a unique function as a mediator of allergic inflammation.
Currently, targeted alpha therapy (TAT) is a new therapy involving the administration of a therapeutic drug that combines a substance of α-emitting nuclides that kill cancer cells and a drug that selectively accumulates in cancer cells. It is known to be effective against cancers that are difficult to treat with existing methods, such as cancer cells that are widely spread throughout the whole body, and there are high expectations for its early clinical implementation. The nuclides for TAT, incl
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