Merck
CN
  • Cellulose and collagen derived micro-nano structured scaffolds for bone tissue engineering.

Cellulose and collagen derived micro-nano structured scaffolds for bone tissue engineering.

Journal of biomedical nanotechnology (2013-04-30)
Aja Aravamudhan, Daisy M Ramos, Jonathan Nip, Matthew D Harmon, Roshan James, Meng Deng, Cato T Laurencin, Xiaojun Yu, Sangamesh G Kumbar
ABSTRACT

Scaffold based bone tissue engineering (BTE) has made great progress in regenerating lost bone tissue. Materials of natural and synthetic origin have been used for scaffold fabrication. Scaffolds derived from natural polymers offer greater bioactivity and biocompatibility with mammalian tissues to favor tissue healing, due to their similarity to native extracellular matrix (ECM) components. Often it is a challenge to fabricate natural polymer based scaffolds for BTE applications without compromising their bioactivity, while maintaining adequate mechanical properties. In this work, we report the fabrication and characterization of cellulose and collagen based micro-nano structured scaffolds using human osteoblasts (HOB) for BTE applications. These porous micro-nano structured scaffolds (average pore diameter 190 +/- 10 microm) exhibited mechanical properties in the mid range of human trabecular bone (compressive modulus 266.75 +/- 33.22 MPa and strength 12.15 3 +/- 2.23 MPa). These scaffolds supported the greater adhesion and phenotype maintenance of cultured HOB as reflected by higher levels of osteogenic enzyme alkaline phosphatase and mineral deposition compared to control polyester micro-nano structured scaffolds of identical pore properties. These natural polymer based micro-nano structured scaffolds may serve as alternatives to polyester based scaffolds for BTE applications.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
α-Cellulose, powder
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α-Cellulose, BioReagent, suitable for insect cell culture
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Sigmacell Cellulose, Type 50, 50 μm
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Sigmacell Cellulose, Type 101, Highly purified, fibers
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Cellulose, fibers, (medium)
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Sigmacell Cellulose, Type 20, 20 μm
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Phosphatase, Alkaline bovine, recombinant, expressed in Pichia pastoris, ≥4000 units/mg protein
Supelco
Cellulose, DS-0, powder, suitable for thin layer chromatography (TLC)
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Cellulose, acid washed, from spruce, for column chromatography
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Cellulose, powder, for column chromatography
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Cellulose, DFS-0, microcrystalline, suitable for thin layer chromatography (TLC)
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Cellulose, microcrystalline, powder
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Avicel® PH-101, tested according to Ph. Eur.
Supelco
Avicel® PH-101, ~50 μm particle size
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Cellulose, microcrystalline, powder, 20 μm
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Cellulose, colloidal, microcrystalline
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Cellulose, acid washed, powder, for column chromatography
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Phosphatase, Alkaline shrimp, ≥900 DEA units/mL, buffered aqueous glycerol solution, recombinant, expressed in proprietary host
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Phosphatase, Alkaline from bovine intestinal mucosa, BioUltra, buffered aqueous glycerol solution, ≥5,700 DEA units/mg protein
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Phosphatase, Alkaline from Escherichia coli, lyophilized powder, 30-60 units/mg protein (in glycine buffer)
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Phosphatase, Alkaline from porcine kidney, lyophilized powder, ≥100 DEA units/mg protein
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Phosphatase, Alkaline from Escherichia coli, buffered aqueous glycerol solution, 20-50 units/mg protein (in glycine buffer)
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Phosphatase, Alkaline from Escherichia coli, ammonium sulfate suspension, 30-90 units/mg protein (modified Warburg-Christian, in glycine buffer)
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Phosphatase, Alkaline from bovine intestinal mucosa, buffered aqueous glycerol solution, ≥4,000 DEA units/mg protein
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Phosphatase, Alkaline from bovine intestinal mucosa, lyophilized powder, ≥10 DEA units/mg solid
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Ethyl cellulose, 48.0-49.5% (w/w) ethoxyl basis
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Ethyl cellulose, viscosity 46 cP, 5 % in toluene/ethanol 80:20(lit.), extent of labeling: 48% ethoxyl
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Ethyl cellulose, viscosity 4 cP, 5 % in toluene/ethanol 80:20(lit.), extent of labeling: 48% ethoxyl