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An epidermal growth factor motif of developmental endothelial locus 1 protein inhibits efficient angiogenesis in explanted squamous cell carcinoma in vivo
Kitano, Hisataka; Mamiya, Atsushi; Ishikawa, Tomomi; Fujiwara, Yusuke; Masaoka, Yoh; Miki, Toshio; Hidai, Chiaki.
  • Kitano, Hisataka; Nihon University School of Medicine. Division of Oral Surgery. Tokyo. JP
  • Mamiya, Atsushi; Nihon University School of Medicine. Division of Oral Surgery. Tokyo. JP
  • Ishikawa, Tomomi; Nihon University School of Medicine. Division of Oral Surgery. Tokyo. JP
  • Fujiwara, Yusuke; Nihon University School of Medicine. Division of Oral Surgery. Tokyo. JP
  • Masaoka, Yoh; Nihon University School of Medicine. Division of Physiology. Tokyo. JP
  • Miki, Toshio; Nihon University School of Medicine. Division of Physiology. Tokyo. JP
  • Hidai, Chiaki; Nihon University School of Medicine. Medical Education Center. Tokyo. JP
Rev. invest. clín ; 73(1): 39-51, Jan.-Feb. 2021. graf
Article in English | LILACS | ID: biblio-1289743
ABSTRACT
ABSTRACT

Background:

Cancer gene therapy using a nonviral vector is expected to be repeatable, safe, and inexpensive, and to have long-term effectiveness. Gene therapy using the E3 and C1 (E3C1) domain of developmental endothelial locus-1 (Del1) has been shown to improve prognosis in a mouse transplanted tumor model.

Objective:

In this study, we examined how this treatment affects angiogenesis in mouse transplanted tumors. Materials and

methods:

Mouse transplanted tumors (SCCKN human squamous carcinoma cell line) were injected locally with a nonviral plasmid vector encoding E3C1 weekly. Histochemical analysis of the transplanted tumors was then performed to assess the effects of E3C1 on prognosis.

Results:

All mice in the control group had died or reached an endpoint within 39 days. In contrast, one of ten mice in the E3C1 group had died by day 39, and eight of ten had died or reached an endpoint by day 120 (p < 0.01). Enhanced apoptosis in tumor stroma was seen on histochemical analyses, as was inhibited tumor angiogenesis in E3C1-treated mice. In addition, western blot analysis showed decreases in active Notch and HEY1 proteins.

Conclusion:

These findings indicate that cancer gene therapy using a nonviral vector encoding E3C1 significantly improved life-span by inhibiting tumor angiogenesis. (REV INVEST CLIN. 2021;73(1)39-51)
Subject(s)


Full text: Available Index: LILACS (Americas) Main subject: Calcium-Binding Proteins / Carcinoma, Squamous Cell / Cell Adhesion Molecules / Epidermal Growth Factor / Discoidin Domain Type of study: Prognostic study Limits: Animals Language: English Journal: Rev. invest. clín Journal subject: Medicine Year: 2021 Type: Article Affiliation country: Japan Institution/Affiliation country: Nihon University School of Medicine/JP

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Full text: Available Index: LILACS (Americas) Main subject: Calcium-Binding Proteins / Carcinoma, Squamous Cell / Cell Adhesion Molecules / Epidermal Growth Factor / Discoidin Domain Type of study: Prognostic study Limits: Animals Language: English Journal: Rev. invest. clín Journal subject: Medicine Year: 2021 Type: Article Affiliation country: Japan Institution/Affiliation country: Nihon University School of Medicine/JP