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Supercritical processing of starch aerogels and aerogel-loaded poly (ε-caprolactone) scaffolds for sustained release of ketoprofen for bone regeneration
被引:80
作者:
Goimil, Leticia
[1
,2
]
Braga, Mara E. M.
[3
]
Dias, Ana M. A.
[3
]
Gomez-Amoza, Jose L.
[1
,2
]
Concheiro, Angel
[1
,2
]
Alvarez-Lorenzo, Carmen
[1
,2
]
de Sousa, Herminio C.
[3
]
Garcia-Gonzalez, Carlos A.
[1
,2
]
机构:
[1] Univ Santiago de Compostela, Fac Farm, R D Pharma Grp GI 1645, Dept Farmacol Farm & Tecnol Farmaceut, E-15782 Santiago De Compostela, Spain
[2] Univ Santiago de Compostela, Hlth Res Inst Santiago de Compostela IDIS, E-15782 Santiago De Compostela, Spain
[3] Univ Coimbra, Dept Chem Engn, FCTUC, CIEPQPF, Rua Silvio Lima,Polo II, P-3030790 Coimbra, Portugal
关键词:
Polymeric scaffold;
Aerogels;
Ketoprofen;
Supercritical CO2;
Bone regeneration;
Regenerative medicine;
DRUG-RELEASE;
BIOMEDICAL APPLICATIONS;
DELIVERY;
CO2;
POLYCAPROLACTONE;
DEXAMETHASONE;
MICROSPHERES;
ADSORPTION;
BEADS;
SIZE;
D O I:
10.1016/j.jcou.2017.01.028
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Bone regeneration requires scaffolds with a suitable nanostructured 3D-network and decorated with bioactive functionalities to promote cell ingrowth and induce the intended biological responses. In this work, highly porous poly(epsilon-caprolactone) (PCL) scaffolds containing biodegradable mesoporous microparticles (starch aerogel microspheres) and a bioactive compound (ketoprofen, a NSAID) were designed and produced using supercritical technologies (scCO(2) impregnation/deposition and foaming) for bone regeneration purposes. One-micron-sized starch aerogel microspheres were processed for the first time. The effects of the incorporation of aerogel powders in the synthetic PCL-based scaffolds on the morphological, physico-chemical and mechanical properties of the construct were evaluated by N-2 adsorption-desorption analysis, scanning electron microscopy, mercury intrusion porosimetry, 3Dmodeling, dynamic mechanical analysis and differential scanning calorimetry methods. Scaffolds containing starch aerogels presented an increased porosity and pore interconnectivity to promote the bone tissue growth processes at the expense of a minor decrease in the mechanical properties. The scaffolds showed sustained release of ketoprofen (37 degrees C, pH 7.4) in the timeframe of days with faster release rate in the case of scaffolds containing starch aerogels. Therefore, scaffolds containing starch aerogel microspheres and obtained by supercritical foaming are an attractive solution to obtain drugloaded scaffolds with accurate pore structure (porosity, pore size distribution, interconnectivity) for cell in-growth and with sustained release profiles of bioactive compounds. (C) 2017 Elsevier Ltd. All rights reserved.
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页码:237 / 249
页数:13
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