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Gelatin-Based Metamaterial Hydrogel Films with High Conformality for Ultra-Soft Tissue Monitoring 被引量:1
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作者 yuewei chen Yanyan Zhou +10 位作者 Zihe Hu Weiying Lu Zhuang Li Ning Gao Nian Liu Yuanrong Li Jing He Qing Gao Zhijian Xie Jiachun Li Yong He 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第2期347-364,共18页
Implantable hydrogel-based bioelectronics(IHB)can precisely monitor human health and diagnose diseases.However,achieving biodegradability,biocompatibility,and high conformality with soft tissues poses significant chal... Implantable hydrogel-based bioelectronics(IHB)can precisely monitor human health and diagnose diseases.However,achieving biodegradability,biocompatibility,and high conformality with soft tissues poses significant challenges for IHB.Gelatin is the most suitable candidate for IHB since it is a collagen hydrolysate and a substantial part of the extracellular matrix found naturally in most tissues.This study used 3D printing ultrafine fiber networks with metamaterial design to embed into ultra-low elastic modulus hydrogel to create a novel gelatin-based conductive film(GCF)with mechanical programmability.The regulation of GCF nearly covers soft tissue mechanics,an elastic modulus from 20 to 420 kPa,and a Poisson’s ratio from-0.25 to 0.52.The negative Poisson’s ratio promotes conformality with soft tissues to improve the efficiency of biological interfaces.The GCF can monitor heartbeat signals and respiratory rate by determining cardiac deformation due to its high conformability.Notably,the gelatin characteristics of the biodegradable GCF enable the sensor to monitor and support tissue restoration.The GCF metamaterial design offers a unique idea for bioelectronics to develop implantable sensors that integrate monitoring and tissue repair and a customized method for endowing implanted sensors to be highly conformal with soft tissues. 展开更多
关键词 Implantable hydrogel-based bioelectronics Conformality 3D printing Metamaterial design
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3D printed grafts with gradient structures for organized vascular regeneration
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作者 yuewei chen Zhongfei Zou +8 位作者 Tao Fu Zhuang Li Zhaojie Zhang Meng Zhu Qing Gao Shaofei Wu Guosheng Fu Yong He Jiayin Fu 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2024年第3期505-520,共16页
Synthetic vascular grafts suitable for small-diameter arteries(<6 mm) are in great need.However,there are still no commercially available small-diameter vascular grafts(SDVGs) in clinical practice due to thrombosis... Synthetic vascular grafts suitable for small-diameter arteries(<6 mm) are in great need.However,there are still no commercially available small-diameter vascular grafts(SDVGs) in clinical practice due to thrombosis and stenosis after in vivo implantation.When designing SDVGs,many studies emphasized reendothelization but ignored the importance of reconstruction of the smooth muscle layer(SML).To facilitate rapid SML regeneration,a high-resolution 3D printing method was used to create a novel bilayer SDVG with structures and mechanical properties mimicking natural arteries.Bioinspired by the collagen alignment of SML,the inner layer of the grafts had larger pore sizes and high porosity to accelerate the infiltration of cells and their circumferential alignment,which could facilitate SML reconstruction for compliance restoration and spontaneous endothelialization.The outer layer was designed to induce fibroblast recruitment by low porosity and minor pore size and provide SDVG with sufficient mechanical strength.One month after implantation,the arteries regenerated by 3D-printed grafts exhibited better pulsatility than electrospun grafts,with a compliance(8.9%) approaching that of natural arteries(11.36%) and significantly higher than that of electrospun ones(1.9%).The 3D-printed vascular demonstrated a three-layer structure more closely resembling natural arteries while electrospun grafts showed incomplete endothelium and immature SML.Our study shows the importance of SML reconstruction during vascular graft regeneration and provides an effective strategy to reconstruct blood vessels through 3D-printed structures rapidly. 展开更多
关键词 small-diameter vascular graft smooth muscle layer 3D printing ENDOTHELIALIZATION
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四川三台钙蒙脱石的矿物学与有机化处理研究 被引量:8
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作者 彭同江 Nelson Belzile +3 位作者 孙红娟 yuewei chen John Huang 刘福生 《矿物学报》 CAS CSCD 北大核心 2004年第1期48-54,共7页
对四川三台钙蒙脱石进行了矿物学和有机化处理研究。化学成分分析、晶体化学式与层间可交换阳离子数计算、X射线衍射分析和热分析都表明三台膨润土属钙基膨润土,属型为切托 Otay型。用十八烷基三甲基氯化铵、十八烷基二甲基苄基氯化铵... 对四川三台钙蒙脱石进行了矿物学和有机化处理研究。化学成分分析、晶体化学式与层间可交换阳离子数计算、X射线衍射分析和热分析都表明三台膨润土属钙基膨润土,属型为切托 Otay型。用十八烷基三甲基氯化铵、十八烷基二甲基苄基氯化铵、十二烷基二甲基苄基氯化铵三种季铵盐阳离子表面活性剂对四川三台钙蒙脱石进行了有机化处理。结果表明,用十八烷基三甲基氯化铵处理的效果最好。 展开更多
关键词 矿物学 有机化处理 钙蒙脱石 十八烷基三甲基氯化铵
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3D Printing of Tough Hydrogel Scaffolds with Functional Surface Structures for Tissue Regeneration
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作者 Ke Yao Gaoying Hong +11 位作者 Ximin Yuan Weicheng Kong Pengcheng Xia Yuanrong Li yuewei chen Nian Liu Jing He Jue Shi Zihe Hu Yanyan Zhou Zhijian Xie Yong He 《Nano-Micro Letters》 SCIE EI CAS 2025年第2期18-45,共28页
Hydrogel scaffolds have numerous potential applications in the tissue engineering field.However,tough hydrogel scaffolds implanted in vivo are seldom reported because it is difficult to balance biocompatibility and hi... Hydrogel scaffolds have numerous potential applications in the tissue engineering field.However,tough hydrogel scaffolds implanted in vivo are seldom reported because it is difficult to balance biocompatibility and high mechanical properties.Inspired by Chinese ramen,we propose a universal fabricating method(printing-P,training-T,cross-linking-C,PTC&PCT)for tough hydrogel scaffolds to fill this gap.First,3D printing fabricates a hydrogel scaffold with desired structures(P).Then,the scaffold could have extraordinarily high mechanical properties and functional surface structure by cycle mechanical training with salting-out assistance(T).Finally,the training results are fixed by photo-cross-linking processing(C).The tough gelatin hydrogel scaffolds exhibit excellent tensile strength of 6.66 MPa(622-fold untreated)and have excellent biocompatibility.Furthermore,this scaffold possesses functional surface structures from nanometer to micron to millimeter,which can efficiently induce directional cell growth.Interestingly,this strategy can produce bionic human tissue with mechanical properties of 10 kPa-10 MPa by changing the type of salt,and many hydrogels,such as gelatin and silk,could be improved with PTC or PCT strategies.Animal experiments show that this scaffold can effectively promote the new generation of muscle fibers,blood vessels,and nerves within 4 weeks,prompting the rapid regeneration of large-volume muscle loss injuries. 展开更多
关键词 3D printing Tough hydrogel scaffold Functional surface structure Tissue regeneration Biomaterials
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Effects of Varicella Vaccine Time of First Dose and Coverage of Second Dose--Beijing and Ningbo,China,2012-2018 被引量:4
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作者 yuewei chen Rui Ma +2 位作者 Yunyan Zhang Xudong Li Dapeng Yin 《China CDC weekly》 2020年第36期696-699,共4页
What is already known about this topic?The effectiveness of the two-dose vaccination schedule of varicella is better than that of one dose,but the vaccination schedule and coverage of varicella varies based on provinc... What is already known about this topic?The effectiveness of the two-dose vaccination schedule of varicella is better than that of one dose,but the vaccination schedule and coverage of varicella varies based on provinces in the mainland of China and has differing effects.What is added by this report?Earlier vaccination of the first dose may reduce the varicella incidence,and improving the vaccination coverage rates of the second dose will further reduce the varicella incidence.What are the implications for public health practice?Taking the first dose of vaccination promptly at 12 months old and improving the coverage of second dose of vaccination may play an important role in varicella prevention and control in China. 展开更多
关键词 VACCINATION PREVENTION Ningbo
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