Epithelial Growth Factor-Anchored on Polycaprolactone/6-deoxy-6-amino-β-cyclodextrin Nanofibers: In Vitro and In Vivo Evaluation

被引:12
作者
Moyers-Montoya, Edgar D. [1 ]
Escobedo-Gonzalez, Rene Gerardo [2 ]
Vargas-Requena, Claudia L. [3 ]
Garcia-Casillas, Perla Elvia [1 ]
Martinez-Perez, Carlos A. [1 ]
机构
[1] Autonomous Univ City Juarez, Inst Engn & Technol, UACJ Ve Charro 450 Norte, Ciudad Juarez 32310, Chihuahua, Mexico
[2] Technol Univ City Juarez, Dept Ind Maintenance, Av Univ Tecnol 3051,Col Lote Bravo II, Ciudad Juarez 32695, Chihuahua, Mexico
[3] Autonomous Univ City Juarez, Inst Biomed Sci, UACJ, Henry Dunant 4600, Ciudad Juarez 32310, Chihuahua, Mexico
关键词
nanofibers; wound healing; polycaprolactone; cyclodextrin; EGF;
D O I
10.3390/polym13081303
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Polycaprolactone (PCL) is a well-known FDA approved biomaterial for tissue engineering. However, its hydrophobic properties limit its use for skin wound healing which makes its functionalization necessary. In this work, we present the fabrication and evaluation of PCL nanofibers by the electrospinning technique, as well as PCL functionalized with 6-deoxy-6-amino-beta-cyclodextrin (aminated nanofibers). Afterwards, epithelial growth factor (EGF) was anchored onto hydrophilic PCL/deoxy-6-amino-beta-cyclodextrin. The characterization of the three electrospun fibers was made by means of field emission scanning electron microscopy (FESEM), Fourier transform infrared spectroscopy-attenuated total reflectance (FTIR-ATR); Confocal-Raman Spectroscopy were used for elucidated the chemical structure, the hydrophilicity was determined by Contact Angle (CA). In vitro cell proliferation test was made by seeding embryonic fibroblast cell line (3T3) onto the electrospun mats and in vivo studies in a murine model were conducted to prove its effectivity as skin wound healing material. The in vitro studies showed that aminated nanofibers without and with EGF had 100 and 150% more cell proliferation of 3T3 cells against the PCL alone, respectively. In vivo results showed that skin wound healing in a murine model was accelerated by the incorporation of the EGF. In addition, the EGF had favorable effects in epidermal cell proliferation. The study demonstrates that a protein of high biological interest like EGF can be attached covalently to the surface of a synthetic material enriched with amino groups. This kind of biomaterial has a great potential for applications in skin regeneration and wound healing.
引用
收藏
页数:15
相关论文
共 57 条
  • [1] Degradation and in vivo evaluation of polycaprolactone, poly(ε-caprolactone-co-L-lactide), and poly-L-lactic acid as scaffold sealant polymers for murine tissue-engineered vascular grafts
    Agarwal, Riddhima
    Blum, Kevin M.
    Musgrave, Andrew
    Onwuka, Ekene A.
    Yi, Tai
    Reinhardt, James W.
    Best, Cameron A.
    Breuer, Christopher K.
    [J]. REGENERATIVE MEDICINE, 2019, 14 (07) : 627 - 637
  • [2] CELL-CELL ADHESION MEDIATED BY BINDING OF MEMBRANE-ANCHORED TRANSFORMING GROWTH FACTOR-ALPHA TO EPIDERMAL GROWTH-FACTOR RECEPTORS PROMOTES CELL-PROLIFERATION
    ANKLESARIA, P
    TEIXIDO, J
    LAIHO, M
    PIERCE, JH
    GREENBERGER, JS
    MASSAGUE, J
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (09) : 3289 - 3293
  • [3] Effect of wettability and surface functional groups on protein adsorption and cell adhesion using well-defined mixed self-assembled monolayers
    Arima, Yusuke
    Iwata, Hiroo
    [J]. BIOMATERIALS, 2007, 28 (20) : 3074 - 3082
  • [4] In vivo wound healing of diabetic ulcers using electrospun nanofibers immobilized with human epidermal growth factor (EGF)
    Choi, Ji Suk
    Leong, Kam W.
    Yoo, Hyuk Sang
    [J]. BIOMATERIALS, 2008, 29 (05) : 587 - 596
  • [5] Electrospun nanofibers surface-modified with fluorescent proteins
    Choi, Ji Suk
    Yoo, Hyuk Sang
    [J]. JOURNAL OF BIOACTIVE AND COMPATIBLE POLYMERS, 2007, 22 (05) : 508 - 524
  • [6] Preparation and evaluation of molecularly-defined collagen-elastin-glycosaminoglycan scaffolds for tissue engineering
    Daamen, WF
    van Moerkerk, HTB
    Hafmans, T
    Buttafoco, L
    Poot, AA
    Veerkamp, JH
    van Kuppevelt, TH
    [J]. BIOMATERIALS, 2003, 24 (22) : 4001 - 4009
  • [7] Raman Microscopy: Progress in Research on Cancer Cell Sensing
    Elumalai, Satheeshkumar
    Manago, Stefano
    De Luca, Anna Chiara
    [J]. SENSORS, 2020, 20 (19) : 1 - 19
  • [8] Controlling cell adhesion and degradation of chitosan films by N-acetylation
    Freier, T
    Koh, HS
    Kazazian, K
    Shoichet, MS
    [J]. BIOMATERIALS, 2005, 26 (29) : 5872 - 5878
  • [9] Designer Self-Assembling Peptide Nanofiber Scaffolds for Adult Mouse Neural Stem Cell 3-Dimensional Cultures
    Gelain, Fabrizio
    Bottai, Daniele
    Vescovi, Angleo
    Zhang, Shuguang
    [J]. PLOS ONE, 2006, 1 (02):
  • [10] Green Production of Indolylquinones, Derivatives of Perezone, and Related Molecules, Promising Antineoplastic Compounds
    Gerardo Escobedo-Gonzalez, Rene
    Perez Martinez, Hector
    Ines Nicolas-Vazquez, Ma.
    Martinez, Joel
    Gomez, Gabriela
    Nava Serrano, Juan
    Carranza Tellez, Vladimir
    Vargas-Requena, C. L.
    Miranda Ruvalcaba, Rene
    [J]. JOURNAL OF CHEMISTRY, 2016, 2016