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Bone Matrix Non-Collagenous Proteins in Tissue Engineering: Creating New Bone by Mimicking the Extracellular Matrix

期刊

POLYMERS
卷 13, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/polym13071095

关键词

non-collagenous proteins; extracellular matrix; bone tissue engineering; biomimetic scaffolds

资金

  1. Fundacao para a Ciencia e Tecnologia (FCT), Portugal [SFRH/BD/52478/2014]
  2. FCT project DentalBioMatrix [PTDC/BTM-BTM/3538/2020]
  3. iBB-Institute for Bioengineering and Biosciences from FCT [UIDB/04065/2020]
  4. NIH grant NIAMS [49635]
  5. Sand Family for Orthopaedic Research
  6. Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute

向作者/读者索取更多资源

Engineering biomaterials that mimic the extracellular matrix of bone is crucial for bone tissue engineering applications. While collagen is known to be critical for bone tissue regeneration, the potential effects of non-collagenous proteins remain understudied. Incorporating non-collagenous proteins into scaffolds can enhance their performance and lead to the development of improved biomimetic bone materials.
Engineering biomaterials that mimic the extracellular matrix (ECM) of bone is of significant importance since most of the outstanding properties of the bone are due to matrix constitution. Bone ECM is composed of a mineral part comprising hydroxyapatite and of an organic part of primarily collagen with the rest consisting on non-collagenous proteins. Collagen has already been described as critical for bone tissue regeneration; however, little is known about the potential effect of non-collagenous proteins on osteogenic differentiation, even though these proteins were identified some decades ago. Aiming to engineer new bone tissue, peptide-incorporated biomimetic materials have been developed, presenting improved biomaterial performance. These promising results led to ongoing research focused on incorporating non-collagenous proteins from bone matrix to enhance the properties of the scaffolds namely in what concerns cell migration, proliferation, and differentiation, with the ultimate goal of designing novel strategies that mimic the native bone ECM for bone tissue engineering applications. Overall, this review will provide an overview of the several non-collagenous proteins present in bone ECM, their functionality and their recent applications in the bone tissue (including dental) engineering field.

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