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Merck

Biomimetic hybrid nanofibrous substrates for mesenchymal stem cells differentiation into osteogenic cells.

Materials science & engineering. C, Materials for biological applications (2015-02-18)
Chinnasamy Gandhimathi, Jayarama Reddy Venugopal, Allister Yingwei Tham, Seeram Ramakrishna, Srinivasan Dinesh Kumar
ABSTRAKT

Mimicking native extracellular matrix with electrospun porous bio-composite nanofibrous scaffolds has huge potential in bone tissue regeneration. The aim of this study is to fabricate porous poly(l-lactic acid)-co-poly-(ε-caprolactone)/silk fibroin/ascorbic acid/tetracycline hydrochloride (PLACL/SF/AA/TC) and nanohydroxyapatite (n-HA) was deposited by calcium-phosphate dipping method for bone tissue engineering (BTE). Fabricated nanofibrous scaffolds were characterized for fiber morphology, hydrophilicity, porosity, mechanical test and chemical properties by FT-IR and EDX analysis. The results showed that the fiber diameter and pore size of scaffolds observed around 228±62-320±22nm and 1.5-6.9μm respectively. Resulting nanofibrous scaffolds are highly porous (87-94%) with ultimate tensile strength observed in the range of 1.51-4.86MPa and also showed better hydrophilic properties after addition of AA, TC and n-HA. Human mesenchymal stem cells (MSCs) cultured on these bio-composite nanofibrous scaffolds and stimulated to osteogenic differentiation in the presence of AA/TC/n-HA for BTE. The cell proliferation and biomaterial interactions were studied using MTS assay, SEM and CMFDA dye exclusion methods. Osteogenic differentiation of MSCs was proven by using alkaline phosphatase activity, mineralization and double immunofluorescence staining of both CD90 and osteocalcin. The observed results suggested that the fabricated PLACL/SF/AA/TC/n-HA biocomposite hybrid nanofibrous scaffolds have good potential for the differentiation of MSCs into osteogenesis for bone tissue engineering.

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Opis produktu

Supelco
N,O-Bis(trimethylsilyl)acetamide, derivatization grade (GC derivatization), LiChropur, ≥98.5% (GC)
Sigma-Aldrich
Methane-12C, 13C-depleted, 99.99 atom % 12C
Sigma-Aldrich
Alizarin, Dye content 97 %
Sigma-Aldrich
Hexamethyldisilazane, ReagentPlus®, 99.9%
Sigma-Aldrich
Hexamethyldisilazane, reagent grade, ≥99%
Supelco
Activated Charcoal Norit®, Norit® RBAA-3, rod
Sigma-Aldrich
DAPI, for nucleic acid staining
Supelco
Hexamethyldisilazane, derivatization grade (GC derivatization), LiChropur, ≥99.0% (GC)
Sigma-Aldrich
Hexamethyldisilazane, Wacker Chemie AG, ≥97.0% (GC)
Supelco
Streptomycin solution, ~1 mg/mL in 1 mM EDTA, analytical standard
Sigma-Aldrich
N,O-Bis(trimethylsilyl)acetamide, synthesis grade, ≥95%
Sigma-Aldrich
Streptomycin, Ready Made Solution, 100 mg/mL in water
Węgiel - Szklisty, rod, 200mm, diameter 5.0mm, glassy carbon
Węgiel - Szklisty, foil, 50x50mm, thickness 1.0mm, glassy carbon
Węgiel - Szklisty, rod, 100mm, diameter 7.0mm, glassy carbon
Węgiel - Szklisty, foil, 50x50mm, thickness 4.0mm, glassy carbon
Węgiel - Szklisty, foam, 300x300mm, thickness 30mm, bulk density 0.05g/cm3, porosity 96.5%
Węgiel - Szklisty, foil, 100x100mm, thickness 2.0mm, glassy carbon
Węgiel - Szklisty, rod, 200mm, diameter 1.0mm, glassy carbon
Węgiel - Szklisty, rod, 50mm, diameter 1.0mm, glassy carbon
Węgiel - Szklisty, foil, 100x100mm, thickness 6.0mm, glassy carbon
Węgiel - Szklisty, foil, 100x100mm, thickness 1.0mm, glassy carbon
Węgiel - Szklisty, foam, 150x150mm, thickness 2.5mm, bulk density 0.05g/cm3, porosity 96.5%
Węgiel - Szklisty, rod, 200mm, diameter 3.0mm, glassy carbon
Węgiel - Szklisty, foil, 10x10mm, thickness 1.0mm, glassy carbon
USP
Alkohol metylowy, United States Pharmacopeia (USP) Reference Standard
Węgiel - Szklisty, tube, 50mm, outside diameter 10mm, inside diameter 3mm, wall thickness 3.5mm, glassy carbon
Węgiel - Szklisty, foam, 150x150mm, 0.05g.cmué, porosity 96.5%, 24 pores/cm
Węgiel - Szklisty, foam, 150x150mm, thickness 3.2mm, bulk density 0.05g/cm3, porosity 96.5%
Węgiel - Szklisty, rod, 100mm, diameter 5.0mm, glassy carbon