As a natural organic polymer,xanthan gum(XG)can alleviate the plastic deformation of gel ink under strong stress and realize the reasonable regulation of the rheological properties of gel ink.However,as the double-hel...As a natural organic polymer,xanthan gum(XG)can alleviate the plastic deformation of gel ink under strong stress and realize the reasonable regulation of the rheological properties of gel ink.However,as the double-helix structure connected by hydrogen bonds cannot resist the mechanical environment of strong stress,XG shows poor shear resistance.In this study,a polymer gel with interpenetrating polymer network structure was prepared by esterifying XG,taking polystyrene maleic anhydride(SMA)as the modifier.In addition to retaining the excellent rheological properties of XG,the generated polymer gel also exhibited high shear resistance.The optimal addition amount of the esterification reaction modifier was determined as mXG:mSMA=5:3 according to the gel ink standard.With this amount,the viscosity of the modified xanthan gum(SXG)gel increased to 1578.8 mPa·s and 100.7 mPa·s at shear rates of 4 s1 and 383 s1,respectively,and the shear resistance increased more than 2 times compared to the unmodified one.It is because of the ester bond formed by esterification that the reaction strengthens the interaction between molecular segments,enabling the new gel to resist to strong mechanical stress.The new polymer gel studied in this paper and the proposed mechanism of action provide new insights for the development of high-end gel ink and also provide theoretical support for the study of rheological properties of non-Newtonian fluids.展开更多
Achieving flexible electronics with comfort and durability comparable to traditional textiles is one of the ultimate pursuits of smart wearables.Ink printing is desirable for e-textile development using a simple and i...Achieving flexible electronics with comfort and durability comparable to traditional textiles is one of the ultimate pursuits of smart wearables.Ink printing is desirable for e-textile development using a simple and inexpensive process.However,fabricating high-performance atop textiles with good dispersity,stability,biocompatibility,and wearability for high-resolution,large-scale manufacturing,and practical applications has remained challenging.Here,waterbased multi-walled carbon nanotubes(MWCNTs)-decorated liquid metal(LM)inks are proposed with carbonaceous gallium–indium micro-nanostructure.With the assistance of biopolymers,the sodium alginate-encapsulated LM droplets contain high carboxyl groups which non-covalently crosslink with silk sericin-mediated MWCNTs.E-textile can be prepared subsequently via printing technique and natural waterproof triboelectric coating,enabling good flexibility,hydrophilicity,breathability,wearability,biocompatibility,conductivity,stability,and excellent versatility,without any artificial chemicals.The obtained e-textile can be used in various applications with designable patterns and circuits.Multi-sensing applications of recognizing complex human motions,breathing,phonation,and pressure distribution are demonstrated with repeatable and reliable signals.Self-powered and energy-harvesting capabilities are also presented by driving electronic devices and lighting LEDs.As proof of concept,this work provides new opportunities in a scalable and sustainable way to develop novel wearable electronics and smart clothing for future commercial applications.展开更多
目的:通过检测慢性宫颈炎(chronic cervicitis)、宫颈上皮内瘤变(cervical intraepithelial neoplasia,CIN)及宫颈鳞癌(squamous carcinoma of the cervix,SCC)组织中p16INK4A蛋白表达与人乳头瘤病毒(human papillomavirus,HPV)感染的状...目的:通过检测慢性宫颈炎(chronic cervicitis)、宫颈上皮内瘤变(cervical intraepithelial neoplasia,CIN)及宫颈鳞癌(squamous carcinoma of the cervix,SCC)组织中p16INK4A蛋白表达与人乳头瘤病毒(human papillomavirus,HPV)感染的状况,探讨p16INK4A蛋白和HPV感染与宫颈鳞癌发生发展的关系。方法:采用免疫组化PV-9000方法检测114例宫颈组织标本的p16INK4A表达,用核酸分子快速导流杂交基因芯片技术(HybriMax)检测21种HPV DNA。结果:(1)慢性宫颈炎、CINⅠ、CINⅡ、CINⅢ、SCC组织中p16INK4A蛋白表达阳性率分别为0%、45.83%、72.73%、84.00%、91.30%,随着宫颈病变程度加重,p16INK4A蛋白表达阳性率逐渐增高,表达强度增加,差异有统计学意义(P<0.05)。(2)慢性宫颈炎、CINI、CINⅡ、CINⅢ、SCC中HPV感染阳性率分别为20.00%、37.50%、54.55%、56.00%、73.91%,HPV感染在不同宫颈病变组织中差异有统计学意义(P<0.05)。随宫颈病变程度加重,HPV阳性率呈递增趋势,不同病变组织中位于前3位的HPV感染型别分别为:CINⅠ组,HPV16、18、58;CINⅡ~Ⅲ组,HPV16、33、52;宫颈鳞癌组,HPV16、18,52。(3)相关分析结果显示,病变组织中p16INK4A蛋白表达与HPV感染呈正相关(r=0.268,P<0.05)。结论:p16INK4A蛋白表达与宫颈病变程度有关,p16INK4A可能参与了HPV相关的宫颈癌发生。二者联合检测对宫颈癌筛查和预防具有重要意义。展开更多
基金supported by Shanxi Provincial Science and Technology Achievement Transformation Guidance Special Program of China(202104021301052)Shanxi Provincial Patent Transformation Special Plan Project(202202054,202306013).
文摘As a natural organic polymer,xanthan gum(XG)can alleviate the plastic deformation of gel ink under strong stress and realize the reasonable regulation of the rheological properties of gel ink.However,as the double-helix structure connected by hydrogen bonds cannot resist the mechanical environment of strong stress,XG shows poor shear resistance.In this study,a polymer gel with interpenetrating polymer network structure was prepared by esterifying XG,taking polystyrene maleic anhydride(SMA)as the modifier.In addition to retaining the excellent rheological properties of XG,the generated polymer gel also exhibited high shear resistance.The optimal addition amount of the esterification reaction modifier was determined as mXG:mSMA=5:3 according to the gel ink standard.With this amount,the viscosity of the modified xanthan gum(SXG)gel increased to 1578.8 mPa·s and 100.7 mPa·s at shear rates of 4 s1 and 383 s1,respectively,and the shear resistance increased more than 2 times compared to the unmodified one.It is because of the ester bond formed by esterification that the reaction strengthens the interaction between molecular segments,enabling the new gel to resist to strong mechanical stress.The new polymer gel studied in this paper and the proposed mechanism of action provide new insights for the development of high-end gel ink and also provide theoretical support for the study of rheological properties of non-Newtonian fluids.
基金funded by The Hong Kong Polytechnic University(Project No.1-WZ1Y,1-YXAK,1-W21C).
文摘Achieving flexible electronics with comfort and durability comparable to traditional textiles is one of the ultimate pursuits of smart wearables.Ink printing is desirable for e-textile development using a simple and inexpensive process.However,fabricating high-performance atop textiles with good dispersity,stability,biocompatibility,and wearability for high-resolution,large-scale manufacturing,and practical applications has remained challenging.Here,waterbased multi-walled carbon nanotubes(MWCNTs)-decorated liquid metal(LM)inks are proposed with carbonaceous gallium–indium micro-nanostructure.With the assistance of biopolymers,the sodium alginate-encapsulated LM droplets contain high carboxyl groups which non-covalently crosslink with silk sericin-mediated MWCNTs.E-textile can be prepared subsequently via printing technique and natural waterproof triboelectric coating,enabling good flexibility,hydrophilicity,breathability,wearability,biocompatibility,conductivity,stability,and excellent versatility,without any artificial chemicals.The obtained e-textile can be used in various applications with designable patterns and circuits.Multi-sensing applications of recognizing complex human motions,breathing,phonation,and pressure distribution are demonstrated with repeatable and reliable signals.Self-powered and energy-harvesting capabilities are also presented by driving electronic devices and lighting LEDs.As proof of concept,this work provides new opportunities in a scalable and sustainable way to develop novel wearable electronics and smart clothing for future commercial applications.
文摘目的:通过检测慢性宫颈炎(chronic cervicitis)、宫颈上皮内瘤变(cervical intraepithelial neoplasia,CIN)及宫颈鳞癌(squamous carcinoma of the cervix,SCC)组织中p16INK4A蛋白表达与人乳头瘤病毒(human papillomavirus,HPV)感染的状况,探讨p16INK4A蛋白和HPV感染与宫颈鳞癌发生发展的关系。方法:采用免疫组化PV-9000方法检测114例宫颈组织标本的p16INK4A表达,用核酸分子快速导流杂交基因芯片技术(HybriMax)检测21种HPV DNA。结果:(1)慢性宫颈炎、CINⅠ、CINⅡ、CINⅢ、SCC组织中p16INK4A蛋白表达阳性率分别为0%、45.83%、72.73%、84.00%、91.30%,随着宫颈病变程度加重,p16INK4A蛋白表达阳性率逐渐增高,表达强度增加,差异有统计学意义(P<0.05)。(2)慢性宫颈炎、CINI、CINⅡ、CINⅢ、SCC中HPV感染阳性率分别为20.00%、37.50%、54.55%、56.00%、73.91%,HPV感染在不同宫颈病变组织中差异有统计学意义(P<0.05)。随宫颈病变程度加重,HPV阳性率呈递增趋势,不同病变组织中位于前3位的HPV感染型别分别为:CINⅠ组,HPV16、18、58;CINⅡ~Ⅲ组,HPV16、33、52;宫颈鳞癌组,HPV16、18,52。(3)相关分析结果显示,病变组织中p16INK4A蛋白表达与HPV感染呈正相关(r=0.268,P<0.05)。结论:p16INK4A蛋白表达与宫颈病变程度有关,p16INK4A可能参与了HPV相关的宫颈癌发生。二者联合检测对宫颈癌筛查和预防具有重要意义。