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Clinoptilolite/Pcl-peg-pcl Composite Scaffolds for Bone Tissue Engineering Applications

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Date

2017

Journal Title

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Volume Title

Publisher

Sage Publications Ltd

Open Access Color

Green Open Access

No

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No
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Abstract

The aim of this study was to prepare and characterize highly porous clinoptilolite/poly(epsilon-caprolactone)-poly(ethylene glycol)-poly(epsilon-caprolactone) composite scaffolds. Scaffolds with different clinoptilolite contents (10% and 20%) were fabricated with reproducible solvent-free powder compression/particulate leaching technique. The scaffolds had interconnective porosity in the range of 55-76%. Clinoptilolite/poly(epsilon-caprolactone)-poly(ethylene glycol)poly(epsilon-caprolactone) scaffolds showed negligible degradation within eight weeks and displayed less water uptake and higher bioactivity than poly(epsilon-caprolactone)-poly(ethylene glycol)-poly(epsilon-caprolactone) scaffolds. The presence of clinoptilolite improved the mechanical properties. Highest compressive strength (5.6 MPa) and modulus (114.84 MPa) were reached with scaffold group containing 20% clinoptilolite. In vitro protein adsorption capacity of the scaffolds was also higher for clinoptilolite/poly(epsilon-caprolactone)-poly(ethylene glycol)-poly(epsilon-caprolactone) scaffolds. These scaffolds had 0.95 mg protein/g scaffold adsorption capacity and also higher osteoinductivity in terms of enhanced ALP, OSP activities and intracellular calcium deposition. Stoichiometric apatite deposition (Ca/P = 1.686) was observed during cellular proliferation analysis with human fetal osteoblasts cells. Thus, it can be suggested that clinoptilolite/poly(epsilon-caprolactone)poly(ethylene glycol)-poly(epsilon-caprolactone) composite scaffolds could be promising carriers for enhancement of bone regeneration in bone tissue engineering applications.

Description

Tezcaner, Aysen/0000-0003-4292-5856; Erdemli, Ozge/0000-0001-8606-8863; Pazarceviren, Ahmet Engin/0000-0001-5233-860X

Keywords

Clinoptilolite, Pcl-Peg-Pcl, Particulate Leaching, Solvent-Free, Powder Compression, Bone Tissue Engineering, Osteoblasts, Compressive Strength, Tissue Engineering, Tissue Scaffolds, Polyesters, Equipment Design, Cell Line, Nanocomposites, Polyethylene Glycols, Equipment Failure Analysis, Nanopores, Elastic Modulus, Bone Substitutes, Materials Testing, Zeolites, Humans, Stress, Mechanical, Porosity, Cell Proliferation

Fields of Science

0301 basic medicine, 02 engineering and technology, 03 medical and health sciences, 0210 nano-technology

Citation

Pazarceviren, Engin...et al. (2017)."Clinoptilolite/PCL-PEG-PCL composite scaffolds for bone tissue engineering applications", Journal Of Biomaterials Applications, Vol.31, No.8, pp.1148-1168.

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
36

Source

Journal of Biomaterials Applications

Volume

31

Issue

8

Start Page

1148

End Page

1168
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CrossRef : 32

Scopus : 43

PubMed : 13

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Mendeley Readers : 44

SCOPUS™ Citations

43

checked on Feb 23, 2026

Web of Science™ Citations

34

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Page Views

3

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2.38660797

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3

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