设为首页  |  加入收藏  | 联系我们
重要通知:
科研成果Enrollment
Hot News / 热点新闻
2024 - 01 - 26
点击次数:
华中科技大学刘长清团队、杨光教授团队联合博士后招聘启事一、团队负责人简介刘长清,华中科技大学机械...
2023 - 11 - 24
点击次数:
2023年10月13日至17日,由江明院士倡议并策划,杨光教授、陈红教授组织协调的“高分子学人书画邀请展”...
2023 - 08 - 20
点击次数:
由中国化学会主办,中国化学会纤维素专业委员会、贵州大学共同承办的“中国化学会第3届全国纤维素学术研...
2023 - 08 - 11
点击次数:
2023年8月9-11日,中国化学会第三届全国纤维素学术研讨会在贵阳市顺利召开,此次学术研讨会主题为“创新...
2023 - 08 - 01
点击次数:
织物型纳米摩擦发电机(Fabric-based TENGs)具有开发为织物型可穿戴器件的前景,其出色的输出性能、柔...
2023 - 04 - 19
点击次数:
2023年4月7日-4月9日,华东交通大学材料学院等单位主办的第一届生物材料与医疗器械赣江学术论坛在江西南...
2023 - 04 - 19
点击次数:
2023年4月11日晚上八点到十点半,华中科技大学与多伦多大学联合举办了“面向人类福祉的创新与未来技术”...
2023 - 03 - 28
点击次数:
2023 年 3 月 18 日, MDPI 作者培训会在华中科技大学生命科学与技术学院东十一楼 221 会议室召开。IJMS...
微博 / WeiBo
Enrollment 科研成果
Bacterial cellulose/hyaluronan nanocomposite biomaterials as wound
日期: 2017-05-05
浏览次数:

论文题目:Bacterial cellulose/hyaluronan nanocomposite biomaterials as wound dressings for severe skin injury repair

所属学科:其他

论文作者:Ying Li,   Hua Jiang,   Wenfu Zheng,   Niya Gong,   li li chen,   Xingyu Jiang and    Guang Yang*

关键字:Bacterial cellulose, hyaluronan, wound dressings, skin injury repair

论文来源:期刊

具体来源:Journal of Materials Chemistry B

发表时间:2015.3

摘要:

Bacterial cellulose (BC), a network of pure cellulose nanofibers with fine crystallinity, high mechanical strength and wet capability, and good biocompatibility, is a good material candidate for wound dressing. Hyaluronan (HA) has obvious curative properties, promoting the healing of wound skin tissue and reducing scar formation. This study explored an “orifice plate” culture method to obtain BC samples of different sizes but consistent thicknesses. Novel BC/HA nanocomposites with a 3-D network structure were obtained through a solution impregnation method. The total surface area and pore volume of the BC/HA composite films gradually decreased with the increase of HA content. The elongation of BC/HA composite films at break point gradually increased as the HA content increased while the tensile strength of the BC/HA composite films decreased during the same process. The BC/HA composite films had a better water uptake capability than pure BC, and water vapor transmission rate (WVTR) measurements showed that the BC/HA composite films can satisfy breathing requirements of injured skin. The BC/HA composite films facilitated the growth of primary human fibroblast cells, showing their low toxicity, and the BC/HA with 0.1% HA lead to higher levels of cell viability than the pure BC. In vivo experiments indicated that the BC/HA with 0.1% HA had the shortest wound healing time while BC/HA with 0.05% HA yielded best tissue repair results. The BC/HA composite films are expected to be useful as novel wound dressing materials for clinical skin repair.

Bacterial cellulose/hyaluronan nanocomposite biomaterials as wound dressings for severe skin injury



地址:武汉市洪山区珞瑜东路1037号华中科技大学东11楼生命科学与技术学院

版权所有  华中科技大学. 保留所有权利