Flavonoid-Modified Surfaces: Multifunctional Bioactive Biomaterials with Osteopromotive, Anti-Inflammatory, and Anti-Fibrotic Potential

被引:77
作者
Cordoba, Alba [1 ]
Satue, Maria [1 ]
Gomez-Florit, Manuel [1 ]
Hierro-Oliva, Margarita [2 ,3 ]
Petzold, Christiane [4 ]
Lyngstadaas, Staale P. [4 ]
Luisa Gonzalez-Martin, Maria [2 ,3 ]
Monjo, Marta [1 ]
Ramis, Joana M. [1 ]
机构
[1] Univ Balearic Isl, Res Inst Hlth Sci IUNICS, Grp Cell Therapy & Tissue Engn, Palma De Mallorca 07122, Spain
[2] Univ Extremadura, Fac Ciencias, Dept Fis Aplicada, Badajoz, Spain
[3] Biomed Res Networking Ctr Bioengn Biomat & Nanome, Vitoria, Spain
[4] Univ Oslo, Dept Biomat, N-0317 Oslo, Norway
关键词
bioactivity; biomaterials; flavonoids; surface functionalization; titanium; SELF-ASSEMBLED MONOLAYERS; MESENCHYMAL STEM-CELLS; OSTEOBLAST DIFFERENTIATION; OSTEOGENIC DIFFERENTIATION; TITANIUM; ADHESION; GROWTH; 3-AMINOPROPYLTRIETHOXYSILANE; CHEMISTRY;
D O I
10.1002/adhm.201400587
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
Flavonoids are small polyphenolic molecules of natural origin with antioxidant, anti-inflammatory, and antibacterial properties. Here, a bioactive surface based on the covalent immobilization of flavonoids taxifolin and quercitrin on titanium substrates is presented, using (3-aminopropyl)triethoxysilane (APTES) as coupling agent. FTIR and XPS measurements confirm the grafting of the flavonoids to the surfaces. Using 2-aminoethyl diphenylborinate (DPBA, a flavonoid-specific dye), the modified surfaces are imaged by fluorescence microscopy. The bioactivity of the flavonoid-modified surfaces is evaluated in vitro with human umbilical cord derived mesenchymal stem cells (hUC-MSCs) and human gingival fibroblasts (HGFs) and compared to that of simple flavonoid coatings prepared by drop casting. Flavonoid-modified surfaces show anti-inflammatory and anti-fibrotic potential on HGF. In addition, Ti surfaces covalently functionalized with flavonoids promote the differentiation of hUC-MSCs to osteoblastsenhancing the expression of osteogenic markers, increasing alkaline phosphatase activity and calcium deposition; while drop-casted surfaces do not. These findings could have a high impact in the development of advanced implantable medical devices like bone implants. Given the broad range of bioactivities of flavonoid compounds, these surfaces are ready to be explored for other biomedical applications, e.g., as stent surface or tumor-targeted functionalized nanoparticles for cardiovascular or cancer therapies.
引用
收藏
页码:540 / 549
页数:10
相关论文
共 51 条
[31]
XPS study on the use of 3-aminopropyltriethoxysilane to bond chitosan to a titanium surface [J].
Martin, Holly J. ;
Schulz, Kirk H. ;
Bumgardner, Joel D. ;
Walters, Keisha B. .
LANGMUIR, 2007, 23 (12) :6645-6651
[32]
Regulation of auxin transport by aminopeptidases and endogenous flavonoids [J].
Murphy, A ;
Peer, WA ;
Taiz, L .
PLANTA, 2000, 211 (03) :315-324
[33]
Osteocalcin: Skeletal and extra-skeletal effects [J].
Neve, Anna ;
Corrado, Addolorata ;
Cantatore, Francesco Paolo .
JOURNAL OF CELLULAR PHYSIOLOGY, 2013, 228 (06) :1149-1153
[34]
TiO2 Nanotube Surfaces: 15 nm - An Optimal Length Scale of Surface Topography for Cell Adhesion and Differentiation [J].
Park, Jung ;
Bauer, Sebastian ;
Schlegel, Karl Andreas ;
Neukam, Friedrich W. ;
von der Mark, Klaus ;
Schmuki, Patrik .
SMALL, 2009, 5 (06) :666-671
[35]
A new mathematical model for relative quantification in real-time RT-PCR [J].
Pfaffl, MW .
NUCLEIC ACIDS RESEARCH, 2001, 29 (09) :E45
[36]
Bone marrow stromal cells on a three-dimensional bioactive fiber mesh undergo osteogenic differentiation in the absence of osteogenic media supplements: The effect of silanol groups [J].
Rodrigues, Marcia T. ;
Leonor, Isabel B. ;
Groeen, Nathalie ;
Viegas, Carlos A. ;
Dias, Isabel R. ;
Caridade, Sofia G. ;
Mano, Joao F. ;
Gomes, Manuela E. ;
Reis, Rui L. .
ACTA BIOMATERIALIA, 2014, 10 (10) :4175-4185
[37]
UV photoactivation of 7-dehydrocholesterol on titanium implants enhances osteoblast differentiation and decreases Rankl gene expression [J].
Satue, M. ;
Petzold, C. ;
Cordoba, A. ;
Ramis, J. M. ;
Monjo, M. .
ACTA BIOMATERIALIA, 2013, 9 (03) :5759-5770
[38]
Quercitrin and Taxifolin stimulate osteoblast differentiation in MC3T3-E1 cells and inhibit osteoclastogenesis in RAW 264.7 cells [J].
Satue, Maria ;
del Mar Arriero, Maria ;
Monjo, Malta ;
Maria Ramis, Joana .
BIOCHEMICAL PHARMACOLOGY, 2013, 86 (10) :1476-1486
[39]
Catechol-Based Biomimetic Functional Materials [J].
Sedo, Josep ;
Saiz-Poseu, Javier ;
Busque, Felix ;
Ruiz-Molina, Daniel .
ADVANCED MATERIALS, 2013, 25 (05) :653-701
[40]
Myofibroblast differentiation is induced in keratinocyte-fibroblast co-cultures and is antagonistically regulated by endogenous transforming growth factor-β and interleukin-1 [J].
Shephard, P ;
Martin, G ;
Smola-Hess, S ;
Brunner, G ;
Krieg, T ;
Smola, H .
AMERICAN JOURNAL OF PATHOLOGY, 2004, 164 (06) :2055-2066