Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Minoru Kakeda is active.

Publication


Featured researches published by Minoru Kakeda.


Gene Therapy | 2005

Human artificial chromosome (HAC) vector provides long-term therapeutic transgene expression in normal human primary fibroblasts.

Minoru Kakeda; Masaharu Hiratsuka; Keiko Nagata; Yoshimi Kuroiwa; Makoto Kakitani; Motonobu Katoh; Mitsuo Oshimura; Kazuma Tomizuka

Human artificial chromosomes (HACs) segregating freely from host chromosomes are potentially useful to ensure both safety and duration of gene expression in therapeutic gene delivery. However, low transfer efficiency of intact HACs to the cells has hampered the studies using normal human primary cells, the major targets for ex vivo gene therapy. To elucidate the potential of HACs to be vectors for gene therapy, we studied the introduction of the HAC vector, which is reduced in size and devoid of most expressed genes, into normal primary human fibroblasts (hPFs) with microcell-mediated chromosome transfer (MMCT). We demonstrated the generation of cytogenetically normal hPFs harboring the structurally defined and extra HAC vector. This introduced HAC vector was retained stably in hPFs without translocation of the HAC on host chromosomes. We also achieved the long-term production of human erythropoietin for at least 12 weeks in them. These results revealed the ability of HACs as novel options to circumvent issues of conventional vectors for gene therapy.


Biochemical and Biophysical Research Communications | 2008

Telomerase-mediated life-span extension of human primary fibroblasts by human artificial chromosome (HAC) vector

Shingo Shitara; Minoru Kakeda; Keiko Nagata; Masaharu Hiratsuka; Akiko Sano; Kanako Osawa; Akiyo Okazaki; Motonobu Katoh; Yasuhiro Kazuki; Mitsuo Oshimura; Kazuma Tomizuka

Telomerase-mediated life-span extension enables the expansion of normal cells without malignant transformation, and thus has been thought to be useful in cell therapies. Currently, integrating vectors including the retrovirus are used for human telomerase reverse transcriptase (hTERT)-mediated expansion of normal cells; however, the use of these vectors potentially causes unexpected insertional mutagenesis and/or activation of oncogenes. Here, we established normal human fibroblast (hPF) clones retaining non-integrating human artificial chromosome (HAC) vectors harboring the hTERT expression cassette. In hTERT-HAC/hPF clones, we observed the telomerase activity and the suppression of senescent-associated SA-beta-galactosidase activity. Furthermore, the hTERT-HAC/hPF clones continued growing beyond 120days after cloning, whereas the hPF clones retaining the silent hTERT-HAC senesced within 70days. Thus, hTERT-HAC-mediated episomal expression of hTERT allows the extension of the life-span of human primary cells, implying that gene delivery by non-integrating HAC vectors can be used to control cellular proliferative capacity of primary cultured cells.


Nucleic Acids Research | 2005

A novel transgenic chimaeric mouse system for the rapid functional evaluation of genes encoding secreted proteins

Makoto Kakitani; Takeshi Oshima; Kaori Horikoshi; Tetsuo Yoshitome; Akiko Ueda; Miwa Kajikawa; Yumi Iba; Yoshinao Ozone; Yuki Ijima; Tohko Yoshino; Mikiko Itoh; Sachiko Seki; Ayako Aoki; Toshie Ishihara; Michiyo Shionoya; Utako Makino; Rina Kitada; Atsuko Ohguma; Takami Ohta; Yoshimasa Yoshida; Hiroe Kudoh; Kazunori Hanaoka; Kazunori Sibuya; Isao Ishida; Minoru Kakeda; Mikio Yagi; Takashi Yoneya; Kazuma Tomizuka

A major challenge of the post-genomic era is the functional characterization of anonymous open reading frames (ORFs) identified by the Human Genome Project. In this context, there is a strong requirement for the development of technologies that enhance our ability to analyze gene functions at the level of the whole organism. Here, we describe a rapid and efficient procedure to generate transgenic chimaeric mice that continuously secrete a foreign protein into the systemic circulation. The transgene units were inserted into the genomic site adjacent to the endogenous immunoglobulin (Ig) κ locus by homologous recombination, using a modified mouse embryonic stem (ES) cell line that exhibits a high frequency of homologous recombination at the Igκ region. The resultant ES clones were injected into embryos derived from a B-cell-deficient host strain, thus producing chimaerism-independent, B-cell-specific transgene expression. This feature of the system eliminates the time-consuming breeding typically implemented in standard transgenic strategies and allows for evaluating the effect of ectopic transgene expression directly in the resulting chimaeric mice. To demonstrate the utility of this system we showed high-level protein expression in the sera and severe phenotypes in human EPO (hEPO) and murine thrombopoietin (mTPO) transgenic chimaeras.


Archive | 2003

Human artificial chromosome (HAC) vector

Mitsuo Oshimura; Motonobu Katoh; Kazuma Tomizuka; Yoshimi Kuroiwa; Minoru Kakeda


Biochemical and Biophysical Research Communications | 2011

A new chromosome 14-based human artificial chromosome (HAC) vector system for efficient transgene expression in human primary cells

Minoru Kakeda; Keiko Nagata; Kanako Osawa; Hiroki Matsuno; Masaharu Hiratsuka; Akiko Sano; Akiyo Okazaki; Shingo Shitara; Satoshi Nishikawa; Anri Masuya; Toshihiro Hata; Shun Wako; Mitsuhiko Osaki; Yasuhiro Kazuki; Mitsuo Oshimura; Kazuma Tomizuka


Archive | 2007

Human artificial chromosome (hac) vector, and human cell pharmaceutical comprising human artificial chromosome (hac) vector

Minoru Kakeda; Kazuma Tomizuka; Mitsuo Oshimura; Yasuhiro Kazuki


Archive | 2007

HUMAN ARTIFICIAL CHROMOSOME (HAC) VECTOR AND HUMAN CELL MEDICINE COMPRISING SAME

Minoru Kakeda; Kazuma Tomizuka; Mitsuo Oshimura; Yasuhiro Kazuki


Archive | 2009

System for regulating expression of multiple genes for use in reprogramming of cell

Minoru Kakeda; 実 掛田; Kazuma Tomizuka; 一麿 富塚; Satoshi Nishikawa; 慧 西川; Atsushi Kunisato; 篤志 國里


Archive | 2007

Vecteur de chromosome artificiel humain (cah), et substance pharmaceutique à base de cellules humaines contenant un vecteur de chromosome artificiel humain (cah)

Minoru Kakeda; Kazuma Tomizuka; Mitsuo Oshimura; Yasuhiro Kazuki


Archive | 2007

Hac-(human artificial chromosome-)vektor und diesen enthaltendes humanzellen-pharmazeutikum

Minoru Kakeda; Kazuma Tomizuka; Mitsuo Oshimura; Yasuhiro Kazuki

Collaboration


Dive into the Minoru Kakeda's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Yoshimi Kuroiwa

Science Applications International Corporation

View shared research outputs
Researchain Logo
Decentralizing Knowledge