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Development of artificial osteochondral composite with gradient apatite deposition for transplantation onto chondral defects

Research Project

Project/Area Number 13470315
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field Orthopaedic surgery
Research InstitutionKeio University

Principal Investigator

MATSUMOTO Hideo  Keio University, Department of Medicine, Assistant Professor, 医学部, 助教授 (50138038)

Co-Investigator(Kenkyū-buntansha) OTANI Toshiro  Keio University, Department of Medicine, Lecturer, 医学部, 講師 (00160531)
SUDA Yasunori  Keio University, Department of Medicine, Lecturer, 医学部, 講師 (20196900)
TAGUCHI Tetsushi  National Institute for Material Science, Biomaterials Center, Fellow, 生体材料研究センター・研究員 (70354264)
船山 敦  慶應義塾大学, 医学部, 助手 (10317167)
田中 順三  物質・材料研究機構, 生体材料グループ, センター長(研究職)
豊田 敬  慶應義塾大学, 医学部, 助手 (80227660)
谷田部 拓  慶應義塾大学, 医学部, 助手 (70306752)
Project Period (FY) 2001 – 2004
Project Status Completed (Fiscal Year 2004)
Budget Amount *help
¥13,000,000 (Direct Cost: ¥13,000,000)
Fiscal Year 2004: ¥3,200,000 (Direct Cost: ¥3,200,000)
Fiscal Year 2003: ¥3,200,000 (Direct Cost: ¥3,200,000)
Fiscal Year 2002: ¥3,200,000 (Direct Cost: ¥3,200,000)
Fiscal Year 2001: ¥3,400,000 (Direct Cost: ¥3,400,000)
Keywordsosteochondral complex / osteoblast / chondrocyte / type II collagen gel / alternate soaking / transplantation / optimal calcium concentration / tissue engineering / 石灰化 / 軟骨再生 / Type II collagen gel / 骨髄未分化間葉系幹細胞 / tyoe II collagen gel / 傾斜型複合マトリックス / 人工骨軟骨複合体 / II型コラーゲン
Research Abstract

Our research group aims to develop an osteochondral composite using type II collagen gel with hydroxyapatite (HAp) deposited on one side. Soaking gels in Ca^<2+> and phosphate solution is indispensable to HAp deposition, so relationships between cell behavior and Ca^<2+> concentration were examined in 2- and 3-dimensional cultures. The present results indicate that 2-4 mM Ca^<2+> is suitable for proliferation and survival of osteoblasts, whereas slightly higher concentrations (6-8 mM) favor osteoblast differentiation and matrix mineralization in both 2- and 3-dimensional cultures. Higher concentrations (>10 mM) are cytotoxic.
Culturing cells in phosphate-containing gel in media with Ca^<2+> also leads to time-dependent formation of HAp in the gel. Considering the viability of embedded cells, culturing scaffolds in media with Ca^<2+> concentrations around 5 mM is useful for both HAp deposition and osteoblast behavior.
Then, behavior of chondrocytes encapsulated in the gel was examined. An … More in situ gel system was developed and chondrocytes were encapsulated and dispersed homogeneously in alkali-treated collagen (AlCol) gels. Results of MTT staining showed that cells survived after encapsulation in AlCol gels. Biochemical analysis demonstrated that DNA content in AlCol gels was constant after 3 weeks. Glycosaminoglycan content and mRNA expression of type II collagen and aggrecan increased with culture time. These results suggest that this in situ gel system is useful for regenerating cartilage in vitro and for minimally invasive therapy for cartilage defects.
In vivo experiment, chondrocytes embedded in the type II collagen gel were directly injected into rabbit full-thickness cartilage defects, gelled and bonded to the adjacent cartilage and bone in several minutes. According to O'Driscoll histological scores, significant differences between transplanted and control groups were apparent at 12 and 24 weeks. Immunohistochemical staining showed sufficient type II collagen synthesis in regenerated cartilage 8 weeks after transplantation. Intense staining of type II collagen was still observed at 24 weeks. These results indicated that the type II collagen gel can achieve sufficient cartilage regeneration, both grossly and histologically, and this scaffold is extremely useful for cartilage repair. Less

Report

(5 results)
  • 2004 Annual Research Report   Final Research Report Summary
  • 2003 Annual Research Report
  • 2002 Annual Research Report
  • 2001 Annual Research Report
  • Research Products

    (6 results)

All 2005

All Journal Article (6 results)

  • [Journal Article] The effect of calcium ion concentration on osteoblast viability, proliferation and differentiation in monolayer and 3D culture.2005

    • Author(s)
      S.Maeno, Y.Niki, H.Matsumoto, et al.
    • Journal Title

      Biomaterials Vol 26/23

      Pages: 4847-4855

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2004 Final Research Report Summary
  • [Journal Article] Encapsulation of chondrocytes in injectable alkali-treated collagen gels prepared using poly (ethylene glycol)-based 4-armed star polymer.2005

    • Author(s)
      Taguchi T, et al.
    • Journal Title

      Biomaterials Vol 26/11

      Pages: 1247-52

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2004 Final Research Report Summary
  • [Journal Article] The effect of calcium ion concentration on osteoblast viability, proliferation and differentiation in monolayer and 3D culture.2005

    • Author(s)
      S.Maeno, Y.Niki, H.Matsumoto, et al.
    • Journal Title

      Biomaterials. Vol 26/23

      Pages: 4847-4855

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2004 Final Research Report Summary
  • [Journal Article] Encapsulation of chondrocytes in injectable alkali-treated collagen gels prepared using poly (ethylene glycol)-based 4-armed star polymer.2005

    • Author(s)
      Taguchi T. et al.
    • Journal Title

      Biomaterials. Vol 26/11

      Pages: 1247-1252

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2004 Final Research Report Summary
  • [Journal Article] The effect of calcium ion concentration on osteoblast viability, proliferation and differentiation in monolayer and 3D culture.2005

    • Author(s)
      Maeno S, Niki Y, Matsumoto H, et al.
    • Journal Title

      Biomaterials Vol 26/23

      Pages: 4847-4855

    • Related Report
      2004 Annual Research Report
  • [Journal Article] Encapsulation of chondrocytes in injectable alkali-treated collagen gels prepared using poly(ethylene glycol)-based 4-armed star polymer.2005

    • Author(s)
      Taguchi T, et al.
    • Journal Title

      Biomaterials Vol 26/11

      Pages: 1247-1252

    • Related Report
      2004 Annual Research Report

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Published: 2001-04-01   Modified: 2016-04-21  

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