نتایج جستجو برای: caprolactone scaffold

تعداد نتایج: 26001  

2016
Shao-Jie Wang Zheng-Zheng Zhang Dong Jiang Yan-Song Qi Hai-Jun Wang Ji-Ying Zhang Jian-Xun Ding Russell E. Gorga

A three-dimensional (3D) composite scaffold was prepared for enhanced cartilage tissue engineering, which was composed of a poly(ε-caprolactone) (PCL) backbone network and a poly(lactide-co-glycolide)-block-poly(ethylene glycol)-block-poly(lactide-co-glycolide) (PLGA–PEG– PLGA) thermogel surface. The composite scaffold not only possessed adequate mechanical strength similar to native osteochond...

Journal: :The Indonesian Biomedical Journal 2022

BACKGROUND: Biosilica derived from Indonesian marine sponge Melophlus sarasinorum and Xestospongia testudinaria is one of the biomaterials that can be developed together with synthetic polymer as a composite. Poly E-caprolactone (PCL) used composite role an osteoconductive material biosilica also tailored slow rate degradation in body. This study aimed to create biocompatible biosilica-based sc...

2015
JinFeng Liao Ying Qu BingYang Chu XiaoNing Zhang ZhiYong Qian

Owing to the limited repair capacity of articular cartilage, it is essential to develop tissue-engineered cartilage for patients suffering from joint disease and trauma. Herein, we prepared a novel hybrid scaffold composed of methacrylated chondroitin sulfate (CSMA), poly(ethylene glycol) methyl ether-ε-caprolactone-acryloyl chloride (MPEG-PCL-AC, PECA was used as abbreviation for MPEG-PCL-AC) ...

2012
Rashi Khanna-Jain Bettina Mannerström Annukka Vuorinen George KB Sándor Riitta Suuronen Susanna Miettinen

Functional tissue engineering for bone augmentation requires the appropriate combination of biomaterials, mesenchymal stem cells, and specific differentiation factors. Therefore, we investigated the morphology, attachment, viability, and proliferation of human dental pulp stem cells cultured in xeno-free conditions in human serum medium seeded on β-tricalcium phosphate/poly(l-lactic acid/caprol...

Journal: :Tissue engineering. Part A 2010
Christoffer K Abrahamsson Fan Yang Hyoungshin Park Jonathan M Brunger Piia K Valonen Robert Langer Jean F Welter Arnold I Caplan Farshid Guilak Lisa E Freed

Human mesenchymal stem cells (hMSCs) and three-dimensional (3D) woven poly(ɛ-caprolactone) (PCL) scaffolds are promising tools for skeletal tissue engineering. We hypothesized that in vitro culture duration and medium additives can individually and interactively influence the structure, composition, mechanical, and molecular properties of engineered tissues based on hMSCs and 3D poly(ɛ-caprolac...

2014
Alfred Gugerell Johanna Kober Thorsten Laube Torsten Walter Sylvia Nürnberger Elke Grönniger Simone Brönneke Ralf Wyrwa Matthias Schnabelrauch Maike Keck

An irreversible loss of subcutaneous adipose tissue in patients after tumor removal or deep dermal burns makes soft tissue engineering one of the most important challenges in biomedical research. The ideal scaffold for adipose tissue engineering has yet not been identified though biodegradable polymers gained an increasing interest during the last years. In the present study we synthesized two ...

2016
Mostafa Mabrouk Yahya Essop Choonara Pradeep Kumar Lisa Claire du Toit Viness Pillay Takashi Tsujimoto

A new composite poly(caprolactone) (PCL) and poly(acrylic acid) (PAA) (PCL:PAA 1:5) scaffold was synthesized via dispersion of PCL particles into a PAA network. Silica microspheres (Si) (2–12 μm) were then prepared by a lyophilized micro-emulsion/sol-gel (Emugel) system using varying weight ratios. The model drug ciprofloxacin (CFX) was used for in situ incorporation into the scaffold. The phys...

2014
Jian-feng Pan Ning-hua Liu Hui Sun Feng Xu

In this study, two different biomaterials were fabricated and their potential use as a bilayer scaffold for skin tissue engineering applications was assessed. The upper layer biomaterial was a Poly(ε-caprolactone-co-lactide)/Poloxamer (PLCL/Poloxamer) nanofiber membrane fabricated using electrospinning technology. The PLCL/Poloxamer nanofibers (PLCL/Poloxamer, 9/1) exhibited strong mechanical p...

Journal: :Bioengineering 2023

Osteoarthritis scaffold-based grafts fail because of poor integration with the surrounding soft tissue and inadequate tribological properties. To circumvent this, we propose electrospun poly(ε-caprolactone)/zein-based scaffolds owing to their biomimetic capabilities. The scaffold surfaces were characterized using Fourier-transform infrared spectroscopy, X-ray photoelectron static water contact ...

Journal: :Journal of functional biomaterials 2015
Alexander Röder Elena García-Gareta Christina Theodoropoulos Nikola Ristovski Keith A Blackwood Maria A Woodruff

The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading tissue engineering approach in regenerative medicine. Achieving consistent cell seeding and uniform cell distribution throughout 3D scaffold culture in vitro is an ongoing challenge. Traditionally, 3D scaffolds are cultured within tissue culture plates to enable reproducible cell seeding and ease o...

نمودار تعداد نتایج جستجو در هر سال

با کلیک روی نمودار نتایج را به سال انتشار فیلتر کنید