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      Regeneration of critical bone defects with anionic collagen matrix as scaffolds.

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          Abstract

          The aim of this study was to make a histomorphometric evaluation of the osteogenic potential of anionic collagen matrix as scaffolds; either crosslinked in glutaraldehyde or not cross-linked and, implanted in critical bone defects in rat calvaria. Seventy-two rats were randomly distributed in three groups: anionic collagen scaffolds treated for 24 h of selective hydrolysis (ACSH); anionic collagen scaffolds treated for 24 h of selective hydrolysis and 5 min of crosslinking in glutaraldehyde 0.05% (ACSHGA); empty bone defect (Control), evaluated at the biological points of 15, 45, 90 and 120 days. The results showed that the biomaterials implanted were biocompatible and showed a high osteogenic potential. These biomaterials presented a speed of biodegradation compatible with bone neoformation, which was shown to be associated with angiogenesis inside the scaffolds at all biological points. The percentage of mineralization of ACSH (87%) differed statistically from that found in ACSHGA (66%). It was concluded that the regeneration of critical bone defect was more evident in anionic collagen without crosslinking (ACSH).

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          Author and article information

          Journal
          J Mater Sci Mater Med
          Journal of materials science. Materials in medicine
          Springer Nature America, Inc
          1573-4838
          0957-4530
          Nov 2013
          : 24
          : 11
          Affiliations
          [1 ] Gonçalo Moniz Research Center, Oswaldo Cruz Foundation, Salvador, Bahia, Brazil, fulviomiguel@yahoo.com.br.
          Article
          10.1007/s10856-013-4980-8
          23784007
          72124a40-c3a1-4512-9ef9-b90b6b3cc968
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