The aim of this study was to develop and to evaluate the biological properties of bacterial cellulose-hydroxyapatite (BC-HA) nanocomposite membranes for bone regeneration. Nanocomposites were prepared from bacterial cellulose membranes sequentially incubated in solutions of CaCl2 followed by Na2HPO4. BC-HA membranes were evaluated in noncritical bone defects in rat tibiae at 1, 4, and 16 weeks. Thermogravimetric analyses showed that the amount of the mineral phase was 40-50 of the total weight. Spectroscopy, electronic microscopy/energy dispersive X-ray analyses, and X-ray diffraction showed formation of HA crystals on BC nanofibres. Low crystallinity HA crystals presented Ca/P a molar ratio of 1.5 (calcium-deficient HA), similar to physiol...
Nanoporous cellulose biosynthesized by bacteria is an attractive biomaterial scaffold for tissue eng...
Bacterial cellulose (BC) has become established as a remarkably versatile biomaterial and can be use...
Incorporation of bone-like hydroxyapatite into bacterial cellulose (BC) is an attractive approach fo...
Bacterial cellulose (BC) is a unique microbial biopolymer with a huge number of significant applicat...
Bacterial cellulose (BC) is a nanofibrous biomaterial biosynthetized by a series of acetic bacteria ...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
AbstractHydroxyapatite (HAp)/bacterial cellulose (BC) nanocomposites were prepared by an optimal bio...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
Bacterial cellulose (BC) has become established as a remarkably versatile biomaterial and can be use...
Bone tissue engineering seeks to adequately restore functions related to physical and biological pro...
Nanoporous cellulose biosynthesized by bacteria is an attractive biomaterial scaffold for tissue eng...
This study introduces the effect of the thickness of a bacterial cellulose membrane by comparing the...
AbstractHydroxyapatite (HAp)/bacterial cellulose (BC) nanocomposites were prepared by an optimal bio...
This study introduces the effect of the thickness of a bacterial cellulose membrane by comparing the...
Nanoporous cellulose biosynthesized by bacteria is an attractive biomaterial scaffold for tissue eng...
Bacterial cellulose (BC) has become established as a remarkably versatile biomaterial and can be use...
Incorporation of bone-like hydroxyapatite into bacterial cellulose (BC) is an attractive approach fo...
Bacterial cellulose (BC) is a unique microbial biopolymer with a huge number of significant applicat...
Bacterial cellulose (BC) is a nanofibrous biomaterial biosynthetized by a series of acetic bacteria ...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
AbstractHydroxyapatite (HAp)/bacterial cellulose (BC) nanocomposites were prepared by an optimal bio...
A nanocomposite based on bacterial cellulose (BC) and type I collagen (COL) was evaluated for in vit...
Bacterial cellulose (BC) has become established as a remarkably versatile biomaterial and can be use...
Bone tissue engineering seeks to adequately restore functions related to physical and biological pro...
Nanoporous cellulose biosynthesized by bacteria is an attractive biomaterial scaffold for tissue eng...
This study introduces the effect of the thickness of a bacterial cellulose membrane by comparing the...
AbstractHydroxyapatite (HAp)/bacterial cellulose (BC) nanocomposites were prepared by an optimal bio...
This study introduces the effect of the thickness of a bacterial cellulose membrane by comparing the...
Nanoporous cellulose biosynthesized by bacteria is an attractive biomaterial scaffold for tissue eng...
Bacterial cellulose (BC) has become established as a remarkably versatile biomaterial and can be use...
Incorporation of bone-like hydroxyapatite into bacterial cellulose (BC) is an attractive approach fo...