Electrospun thermosensitive hydrogel scaffold for enhanced chondrogenesis of human mesenchymal stem cells

被引:57
作者
Brunelle, Alexander R. [1 ]
Horner, Christopher B. [1 ]
Low, Karen [1 ]
Ico, Gerardo [1 ]
Nam, Jin [1 ]
机构
[1] Univ Calif Riverside, Dept Bioengn, Riverside, CA 92521 USA
关键词
Electrospun scaffold; Thermosensitive hydrogel; Polycaprolactone; Poly(ethylene glycol)-poly(N-isopropylacry lamide); Stem cell differentiation; SPINAL-CORD; EXTRACELLULAR-MATRIX; CARTILAGE; DELIVERY; DIFFERENTIATION; REPAIR; POLYMERIZATION; MORPHOLOGY; EXPRESSION; SYSTEM;
D O I
10.1016/j.actbio.2017.11.020
中图分类号
R318 [生物医学工程];
学科分类号
100103 [病原生物学];
摘要
Hydrogels have shown great potential for cartilage tissue engineering applications due to their capability to encapsulate cells within biomimetic, 3-dimensional (3D) microenvironments. However, the multi-step fabrication process that is necessary to produce cell/scaffold constructs with defined dimensions, limits their off-the-shelf translational usage. In this study, we have developed a hybrid scaffolding system which combines a thermosensitive hydrogel, poly(ethylene glycol)-poly(N-isopropylacrylamide) (PEG-PNIPAAm), with a biodegradable polymer, poly(epsilon-caprolactone) (PCL), into a composite, electrospun microfibrous structure. A judicious optimization of material composition and electrospinning process produced a structurally self-supporting hybrid scaffold. The reverse thermosensitivity of PEG-PNIPAAm allowed its dissolution/hydration upon cell seeding within a network of PCL microfibers while maintaining the overall scaffold shape at room temperature. A subsequent temperature elevation to 37 degrees C induced the hydrogel's phase transition to a gel state, effectively encapsulating cells in a 3D hydrogel without the use of a mold. We demonstrated that the hybrid scaffold enhanced chondrogenic differentiation of human mesenchymal stem cells (hMSCs) based on chondrocytic gene and protein expression, which resulted in superior viscoelastic properties of the cell/scaffold constructs. The hybrid scaffold enables a facile, single-step cell seeding process to inoculate cells within a 3D hydrogel with the potential for cartilage tissue engineering. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:166 / 176
页数:11
相关论文
共 51 条
[1]
Polyethylene glycol (PEG)-Poly(N-isopropylacrylamide) (PNIPAAm) based thermosensitive injectable hydrogels for biomedical applications [J].
Alexander, Amit ;
Ajazuddin ;
Khan, Junaid ;
Saraf, Swarnlata ;
Saraf, Shailendra .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2014, 88 (03) :575-585
[2]
KINETIC EVIDENCE OF REACTION-DIFFUSION DURING THE POLYMERIZATION OF MULTI(METH)ACRYLATE MONOMERS [J].
ANSETH, KS ;
WANG, CM ;
BOWMAN, CN .
MACROMOLECULES, 1994, 27 (03) :650-655
[3]
Mechanically engineered hydrogel scaffolds for axonal growth and angiogenesis after transplantation in spinal cord injury [J].
Bakshi, A ;
Fisher, O ;
Dagci, T ;
Himes, BT ;
Fischer, I ;
Lowman, A .
JOURNAL OF NEUROSURGERY-SPINE, 2004, 1 (03) :322-329
[4]
Small functional groups for controlled differentiation of hydrogel-encapsulated human mesenchymal stem cells [J].
Benoit, Danielle S. W. ;
Schwartz, Michael P. ;
Durney, Andrew R. ;
Anseth, Kristi S. .
NATURE MATERIALS, 2008, 7 (10) :816-823
[5]
Cell-matrix adhesion [J].
Berrier, Allison L. ;
Yamada, Kenneth M. .
JOURNAL OF CELLULAR PHYSIOLOGY, 2007, 213 (03) :565-573
[6]
Stem cells in tissue engineering [J].
Bianco, P ;
Robey, PG .
NATURE, 2001, 414 (6859) :118-121
[7]
Chondrogenic differentiation of bovine bone marrow mesenchymal stem cells (MSCs) in different hydrogels: Influence of collagen type II extracellular matrix on MSC chondrogenesis [J].
Bosnakovski, D ;
Mizuno, M ;
Kim, G ;
Takagi, S ;
Okumura, M ;
Fujinaga, T .
BIOTECHNOLOGY AND BIOENGINEERING, 2006, 93 (06) :1152-1163
[8]
Tuning the dependency between stiffness and permeability of a cell encapsulating hydrogel with hydrophilic pendant chains [J].
Cha, Chaenyung ;
Jeong, Jae Hyun ;
Shim, Jongwon ;
Kong, Hyunjoon .
ACTA BIOMATERIALIA, 2011, 7 (10) :3719-3728
[9]
Rheological and fluorescent properties of riboflavin-poly(N-isopropylacrylamide) hybrid hydrogel with a potentiality of forming Ag nanoparticle [J].
Chakraborty, Priyadarshi ;
Bairi, Partha ;
Roy, Bappaditya ;
Nandi, Arun K. .
RSC ADVANCES, 2014, 4 (97) :54684-54693
[10]
In vitro analysis of PNIPAAm-PEG, a novel, injectable scaffold for spinal cord repair [J].
Comolli, Noelle ;
Neuhuber, Birgit ;
Fischer, Itzhak ;
Lowman, Anthony .
ACTA BIOMATERIALIA, 2009, 5 (04) :1046-1055