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Dive into the research topics where Hajime Shigeto is active.

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Featured researches published by Hajime Shigeto.


RSC Advances | 2015

Porphyrin-uptake in liposomes and living cells using an exchange method with cyclodextrin

Atsushi Ikeda; Shodai Hino; Tomoya Mae; Yuki Tsuchiya; Kouta Sugikawa; Manami Tsukamoto; Kazuma Yasuhara; Hajime Shigeto; Hisakage Funabashi; Akio Kuroda; Motofusa Akiyama

The water-solubilisation of porphyrin derivatives is very important for biological applications. Although liposomal drug carriers for porphyrin derivatives have shown significant promise in the field of medicinal chemistry (e.g., as sensitisers for photodynamic therapy), it is currently not possible to prepare lipid-membrane-incorporated tetraphenylporphyrin (TPP) with a high concentration of TPP using conventional methods. In this study, we have succeeded in preparing lipid-membrane-incorporated TPP and zinc(II) tetraphenylporphyrin (ZnTPP) from the corresponding TPP or ZnTPP·cyclodextrin complex using the exchange method in lipid-membranes composed of liposomes. Furthermore, the exchange method allowed for the incorporation of TPP or ZnTPP into the plasma membranes of HeLa cells. However, it was not possible to prepare lipid-membrane-incorporated porphyrin derivatives with polar and hydrophilic groups in the meso positions using this exchange reaction.


Analytical Chemistry | 2015

A BRET-based homogeneous insulin assay using interacting domains in the primary binding site of the insulin receptor.

Hajime Shigeto; Takeshi Ikeda; Akio Kuroda; Hisakage Funabashi

A new homogeneous insulin assay requiring no chemical modification of an insulin recognition domain, which can be applied to continuous monitoring of the time-dependent cellular response in vitro, was developed. The carboxy-terminal α-chain (αCT) segment and first leucine-rich-repeat (L1) domain in the primary binding site on the insulin receptor were genetically fused with a bioluminescent protein (Nanoluc, Nluc) and a fluorescent protein (yellow fluorescent protein, YPet) to produce the insulin-sensing probe proteins Nluc-αCT and L1-YPet. The BRET signal was observed on simple mixing of insulin with these protein probes, in a so-called homogeneous assay. The BRET signal was proportional to the insulin concentration, and the lower detection limit was 0.8 μM. Time-dependent insulin secretion from drug-stimulated MIN6 cells was also successfully monitored continuously with the probe proteins. This BRET-based homogeneous insulin assay method is thus expected to be applicable to drug development by high-throughput screening.


ACS Medicinal Chemistry Letters | 2017

Photodynamic Activities of Porphyrin Derivative–Cyclodextrin Complexes by Photoirradiation

Atsushi Ikeda; Shuhei Satake; Tomoya Mae; Masafumi Ueda; Kouta Sugikawa; Hajime Shigeto; Hisakage Funabashi; Akio Kuroda

Water-soluble cyclodextrin (CyD) complexed with porphyrin derivatives with different substituents in the meso-positions showed different photodynamic activities toward cancer cells under illumination at wavelengths over 600 nm, the most suitable wavelengths for photodynamic therapy (PDT). In particular, aniline- and phenol-substituted derivatives had high photodynamic activity because of the efficient intracellular uptake of the complexes by tumor cells. These complexes showed greater photodynamic activity than photofrin, currently the main drug in clinical use as a photosensitizer. These results represent a significant step toward the optimization of porphyrin derivatives as photosensitizers.


Analytical Chemistry | 2016

Continuous Monitoring of Specific mRNA Expression Responses with a Fluorescence Resonance Energy Transfer-Based DNA Nano-tweezer Technique That Does Not Require Gene Recombination

Hajime Shigeto; Keisuke Nakatsuka; Takeshi Ikeda; Ryuichi Hirota; Akio Kuroda; Hisakage Funabashi

This letter discusses the feasibility of continuously monitoring specific mRNA expression responses in a living cell with a probe structured as a fluorescence resonance energy transfer (FRET)-based DNA nano-tweezer (DNA-NT). The FRET-based DNA-NT, self-assembled from three single-stranded DNAs, alters its structure from an open state to a closed state in recognition of a target mRNA, resulting in the closing of the distal relation of previously modified FRET-paired fluorescent dyes and generating a FRET signal. The expressions of glucose transporters (GLUT) 1 and 4 in a mouse hepato-carcinoma (Hepa 1-6 cells) were selected as the target model. Live-cell imaging analysis of Hepa 1-6 cells with both FRET-based DNA-NTs indicated that the behaviors of the FRET signals integrated in each individual cell were similar to those measured with the conventional mass analysis technique of semiquantitative real-time (RT) polymerase chain reaction (PCR). From these results, it is concluded that continuous monitoring of gene expression response without gene recombination is feasible with a FRET-based DNA-NT, even in a single cell manner.


Biosensors and Bioelectronics | 2015

A split G-quadruplex-based DNA nano-tweezers structure as a signal-transducing molecule for the homogeneous detection of specific nucleic acids.

Keisuke Nakatsuka; Hajime Shigeto; Akio Kuroda; Hisakage Funabashi


Chemical Communications | 2017

Improved photodynamic activities of liposome-incorporated [60]fullerene derivatives bearing a polar group

Atsushi Ikeda; Tomoya Mae; Masafumi Ueda; Kouta Sugikawa; Hajime Shigeto; Hisakage Funabashi; Akio Kuroda; Motofusa Akiyama


Analyst | 2015

A FRET-based DNA nano-tweezer technique for the imaging analysis of specific mRNA

Hisakage Funabashi; Hajime Shigeto; Keisuke Nakatsuka; Akio Kuroda


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Development of a dissociation method for cultured adherent cells without using trypsin

Kouhei Ichikawa; Takeshi Ikeda; Hajime Shigeto; Ryuichi Hirota; Hisakage Funabashi; Akio Kuroda


Biosensors and Bioelectronics | 2017

Corrigendum to “A split G-quadruplex-based DNA nano-tweezers structure as a signal-transducing molecule for the homogeneous detection of specific nucleic acids” [Biosens. Bioelectron. 74 (2015) 222–226]

Keisuke Nakatsuka; Hajime Shigeto; Akio Kuroda; Hisakage Funabashi


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Detection of Specific Nucleic Acids Utilizing DNA Nano-Tweezers Structures

Hisakage Funabashi; Keisuke Yoshinaga; Hajime Shigeto; Keisuke Nakatsuka; Akio Kuroda

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