Electrospun PCL/phlorotannin nanofibres for tissue engineering: Physical properties and cellular activities

被引:26
作者
Kim, Minseong [1 ,2 ]
Kim, GeunHyung [1 ]
机构
[1] Chosun Univ, Dept Mech Engn, Bio Nanofluid Lab, Kwangju 501759, South Korea
[2] Chosun Univ, Sch Med, Kwangju 501759, South Korea
关键词
Phlorotannin; Polycaprolactone; Biocomposite; Bone; Tissue regeneration; BROWN ALGA; PHLOROTANNINS; ULTRATHIN; DESIGN; CELLS;
D O I
10.1016/j.carbpol.2012.05.082
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Micro/nanofibrous substrates have been widely used for tissue regeneration because of their similarities to extracellular matrix components and their high surface area, which facilitates attachment and proliferation of cells. Phlorotannin, the main component of the brown alga Ecklonia cava, contains various growth factors that promote the regeneration of various tissues, including bone, by stimulating alkaline phosphatase (ALP) activity and inducing calcium deposition. Despite the benefits of phlorotannin in tissue regeneration, the activity of phlorotannin as a component of micro/nanofibres of various compositions has not yet been investigated. Here, we fabricated electrospun polycaprolactone (PCL)/phlorotannin micro/nanofibres containing different phlorotannin concentrations (1, 3, and 5 wt%) and determined their physical properties, including water contact angle, water absorption, and mechanical properties. Owing to their hydrophilicity and water absorption ability, phlorotannin-containing fibrous mats exhibited outstanding wettability compared with pure PCL fibrous mats. The biocompatibility of the mats was examined in vitro using osteoblast-like cells (MG63). Cell viability, ALP activity, and calcium deposition were assessed. The cells distributed more widely and proliferated to a greater degree on PCL/phlorotannin mats compared with pure PCL mats. In addition, cell viability (at 5 wt% phlorotannin), total protein content, ALP activity, and calcium deposition were higher with PCL/phlorotannin mats than with pure PCL mats. These results suggest that electrospun PCL/phlorotannin is a promising bioactive material for enhancing bone tissue growth. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:592 / 601
页数:10
相关论文
共 50 条
[31]   Bone Tissue Engineering: 3D PCL-based nanocomposite scaffolds with tailored properties [J].
Ronca, Dante ;
Langella, Francesco ;
Chierchia, Marianna ;
D'Amora, Ugo ;
Russo, Teresa ;
Domingos, Marco ;
Gloria, Antonio ;
Bartolo, Paulo ;
Ambrosio, Luigi .
SECOND CIRP CONFERENCE ON BIOMANUFACTURING, 2016, 49 :51-54
[32]   Bead-free and tough electrospun PCL/gelatin/PGS ternary nanofibrous scaffolds for tissue engineering application [J].
Behtouei, Ebrahim ;
Zandi, Mojgan ;
Askari, Fahimeh ;
Daemi, Hamed ;
Zamanlui, Soheila ;
Arabsorkhi-Mishabi, Amirhesam ;
Pezeshki-Modaress, Mohamad .
JOURNAL OF APPLIED POLYMER SCIENCE, 2022, 139 (02)
[33]   Fabrication and characterization of gold nanoparticle-doped electrospun PCL/chitosan nanofibrous scaffolds for nerve tissue engineering [J].
Saderi, Narges ;
Rajabi, Mina ;
Akbari, Babak ;
Firouzi, Masoumeh ;
Hassannejad, Zahra .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2018, 29 (09)
[34]   Surface modification of PCL-gelatin-chitosan electrospun scaffold by nano-hydroxyapatite for bone tissue engineering [J].
Gautam, Sneh ;
Purohit, Shiv Dutt ;
Singh, Hemant ;
Dinda, Amit Kumar ;
Potdar, Pravin D. ;
Sharma, Chhavi ;
Chou, Chia -Fu ;
Mishra, Narayan Chandra .
MATERIALS TODAY COMMUNICATIONS, 2023, 34
[35]   Single-Step Approach to Tailor Surface Chemistry and Potential on Electrospun PCL Fibers for Tissue Engineering Application [J].
Metwally, Sara ;
Karbowniczek, Joanna E. ;
Szewczyk, Piotr K. ;
Marzec, Mateusz M. ;
Gruszczynski, Adam ;
Bernasik, Andrzej ;
Stachewicz, Urszula .
ADVANCED MATERIALS INTERFACES, 2019, 6 (02)
[36]   Electrospun Poly-ε-Caprolactone (PCL)/Dicalcium Phosphate Dihydrate (DCPD) Composite Scaffold for Tissue Engineering Application [J].
Taghavi, Milad Angooraj ;
Rabiee, Sayed Mahmood ;
Jahanshahi, Mohsen ;
Nasiri, Fatemeh .
MOLECULAR BIOTECHNOLOGY, 2019, 61 (05) :345-354
[37]   Effects of offset values of solid freeform fabricated PCL-β-TCP scaffolds on mechanical properties and cellular activities in bone tissue regeneration [J].
Yeo, MyungGu ;
Simon, Carl G., Jr. ;
Kim, GeunHyung .
JOURNAL OF MATERIALS CHEMISTRY, 2012, 22 (40) :21636-21646
[38]   Physical and bioactive properties of multi-layered PCL/silica composite scaffolds for bone tissue regeneration [J].
Lee, Hyeongjin ;
Hwang, Heon ;
Kim, YeSeul ;
Jeon, Hojun ;
Kim, GeunHyung .
CHEMICAL ENGINEERING JOURNAL, 2014, 250 :399-408
[39]   Effect of Gelatin Coating and GO Incorporation on the Properties and Degradability of Electrospun PCL Scaffolds for Bone Tissue Regeneration [J].
Loyo, Carlos ;
Cordoba, Alexander ;
Palza, Humberto ;
Canales, Daniel ;
Melo, Francisco ;
Vivanco, Juan F. ;
Baier, Raul Vallejos ;
Millan, Carola ;
Corrales, Teresa ;
Zapata, Paula A. .
POLYMERS, 2024, 16 (01)
[40]   Electrospun biphasic tubular scaffold with enhanced mechanical properties for vascular tissue engineering [J].
Abdal-hay, Abdalla ;
Bartnikowski, Michal ;
Hamlet, Stephen ;
Ivanovski, Saso .
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2018, 82 :10-18