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Organic Matrices of Calcium Carbonate Biominerals Improve Osteoblastic Mineralization.
Nahle, Sarah; Lutet-Toti, Camille; Namikawa, Yuto; Piet, Marie-Hélène; Brion, Alice; Peyroche, Sylvie; Suzuki, Michio; Marin, Frédéric; Rousseau, Marthe.
Afiliação
  • Nahle S; Jean Monnet University Saint-Étienne, INSERM, Mines Saint Etienne, SAINBIOSE U1059, Saint-Étienne, France.
  • Lutet-Toti C; Biogeosciences Laboratory, UMR CNRS-EPHE 6282, University of Burgundy, Dijon, France.
  • Namikawa Y; Dipartimento di Chimica "Giacomo Ciamician", Alma Mater Studiorum Università di Bologna, Bologna, Italy.
  • Piet MH; Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Brion A; UMR 7365 CNRS-University of Lorraine, Molecular Engineering & Articular Pathophysiology (IMoPA), Vandœuvre-lès-Nancy, France.
  • Peyroche S; Laboratory of Genome Structure and Instability, National Museum of Natural History (MNHN), INSERM, U1154, CNRS UMR7196, Paris, France.
  • Suzuki M; Jean Monnet University Saint-Étienne, INSERM, Mines Saint Etienne, SAINBIOSE U1059, Saint-Étienne, France.
  • Marin F; Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Rousseau M; Biogeosciences Laboratory, UMR CNRS-EPHE 6282, University of Burgundy, Dijon, France.
Mar Biotechnol (NY) ; 26(3): 539-549, 2024 Jun.
Article em En | MEDLINE | ID: mdl-38652191
ABSTRACT
Many organisms incorporate inorganic solids into their tissues to improve functional and mechanical properties. The resulting mineralized tissues are called biominerals. Several studies have shown that nacreous biominerals induce osteoblastic extracellular mineralization. Among them, Pinctada margaritifera is well known for the ability of its organic matrix to stimulate bone cells. In this context, we aimed to study the effects of shell extracts from three other Pinctada species (Pinctada radiata, Pinctada maxima, and Pinctada fucata) on osteoblastic extracellular matrix mineralization, by using an in vitro model of mouse osteoblastic precursor cells (MC3T3-E1). For a better understanding of the Pinctada-bone mineralization relationship, we evaluated the effects of 4 other nacreous mollusks that are phylogenetically distant and distinct from the Pinctada genus. In addition, we tested 12 non-nacreous mollusks and one extra-group. Biomineral shell powders were prepared, and their organic matrix was partially extracted using ethanol. Firstly, the effect of these powders and extracts was assessed on the viability of MC3T3-E1. Our results indicated that neither the powder nor the ethanol-soluble matrix (ESM) affected cell viability at low concentrations. Then, we evaluated osteoblastic mineralization using Alizarin Red staining and we found a prominent MC3T3-E1 mineralization mainly induced by nacreous biominerals, especially those belonging to the Pinctada genus. However, few non-nacreous biominerals were also able to stimulate the extracellular mineralization. Overall, our findings validate the remarkable ability of CaCO3 biomineral extracts to promote bone mineralization. Nevertheless, further in vitro and in vivo studies are needed to uncover the mechanisms of action of biominerals in bone.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteoblastos / Calcificação Fisiológica / Carbonato de Cálcio / Pinctada / Exoesqueleto Limite: Animals Idioma: En Revista: Mar Biotechnol (NY) Assunto da revista: BIOLOGIA / BIOTECNOLOGIA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: França

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteoblastos / Calcificação Fisiológica / Carbonato de Cálcio / Pinctada / Exoesqueleto Limite: Animals Idioma: En Revista: Mar Biotechnol (NY) Assunto da revista: BIOLOGIA / BIOTECNOLOGIA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: França