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Effect of polyglycolic acid sheet plus esophageal stent placement in preventing esophageal stricture after endoscopic submucosal dissection in patients with earlystage esophageal cancer: A randomized, controlled trial 被引量:28
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作者 Ning-Li Chai Jia Feng +4 位作者 Long-Song Li Sheng-Zhen Liu Chen Du Qi Zhang En-Qiang Linghu 《World Journal of Gastroenterology》 SCIE CAS 2018年第9期1046-1055,共10页
AIM To assess the effect of polyglycolic acid(PGA) plus stent placement compared with stent placement alone in the prevention of post-endoscopic submucosal dissection(ESD) esophageal stricture in early-stage esophagea... AIM To assess the effect of polyglycolic acid(PGA) plus stent placement compared with stent placement alone in the prevention of post-endoscopic submucosal dissection(ESD) esophageal stricture in early-stage esophageal cancer(EC) patients. METHODS Seventy EC patients undergoing ESD were enrolled in this randomized, controlled study. Patients were allocated randomly at a 1:1 ratio into two groups as follows:(1) PGA plus stent group(PGA sheet-coated stent placement was performed); and(2) Stent group(only stent placement was performed). This study was registered on http://www.chictr.org.cn(No. chictrinr-16008709). RESULTS The occurrence rate of esophageal stricture in the PGA plus stent group was 20.5%(n = 7), which was lower than that in the stent group(46.9%, n = 15)(P = 0.024). The mean value of esophageal stricture time was 59.6 ± 16.1 d and 70.7 ± 28.6 d in the PGA plus stent group and stent group(P = 0.174), respectively. Times of balloon dilatation in the PGA plus stent group were less than those in the stent group [4(2-5) vs 6(1-14), P = 0.007]. The length(P = 0.080) and diameter(P = 0.061) of esophageal strictures were numerically decreased in the PGA plus stent group, whereas no difference in location(P = 0.232) between the two groups was found. Multivariate logistic analysis suggested that PGA plus stent placement(P = 0.026) was an independent predictive factor for a lower risk of esophageal stricture, while location in the middle third(P = 0.034) and circumferential range = 1/1(P = 0.028) could independently predict a higher risk of esophageal stricture in EC patients after ESD. CONCLUSION PGA plus stent placement is more effective in preventing post-ESD esophageal stricture compared with stent placement alone in EC patients with earlystage disease. 展开更多
关键词 ESOPHAGEAL cancer Endoscopic SUBMUCOSAL DISSECTION polyglycolic acid PLUS stent placement ESOPHAGEAL STRICTURE
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Prospects of polyglycolic acid sheets for the treatment of esophageal stricture after esophageal endoscopic submucosal dissection 被引量:1
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作者 Qing-Xia Wang Rui-Hua Shi 《World Journal of Gastrointestinal Endoscopy》 2024年第1期1-4,共4页
Esophageal cancer is the seventh most common type of cancer and the sixth leading cause of cancer-related mortality worldwide.Endoscopic submucosal dissection(ESD)is widely used for the resection of early esophageal c... Esophageal cancer is the seventh most common type of cancer and the sixth leading cause of cancer-related mortality worldwide.Endoscopic submucosal dissection(ESD)is widely used for the resection of early esophageal cancer.However,post-ESD esophageal stricture is a common long-term complication,which requires attention.Patients with post-ESD esophageal stricture often experience dysphagia and require multiple dilatations,which greatly affects their quality of life and increases healthcare costs.Therefore,to manage post-ESD esophageal stricture,researchers are actively exploring various strategies,such as pharmaceutical interventions,endoscopic balloon dilation,and esophageal stenting.Although steroids-based therapy has achieved some success,steroids can lead to complications such as osteoporosis and infection.Meanwhile,endoscopic balloon dilatation is effective in the short term,but is prone to recurrence and perforation.Additionally,esophageal stenting can alleviate the stricture,but is associated with discomfort during stenting and the complication of easy displacement also present challenges.Tissue engineering has evolved rapidly in recent years,and hydrogel materials have good biodegradability and biocompatibility.A novel type of polyglycolic acid(PGA)sheets has been found to be effective in preventing esophageal stricture after ESD,with the advantages of a simple operation and low complication rate.PGA membranes act as a biophysical barrier to cover the wound as well as facilitate the delivery of medications to promote wound repair and healing.However,there is still a lack of multicenter,large-sample randomized controlled clinical studies focused on the treatment of post-ESD esophageal strictures with PGA membrane,which will be a promising direction for future advancements in this field. 展开更多
关键词 polyglycolic acid Endoscopic submucosal dissection Esophageal stenosis Esophageal cancer STEROIDS
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Novel concept of endoscopic device delivery station system for rapid and tight attachment of polyglycolic acid sheet
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作者 Hirohito Mori Hideki Kobara +1 位作者 Noriko Nishiyama Tsutomu Masaki 《World Journal of Gastroenterology》 SCIE CAS 2018年第2期211-215,共5页
AIM To evaluate appropriate and rapid polyglycolic acid sheet(PGAs) covering time using device delivery station system(DDSS).METHODS This pilot basic study was conducted to evaluate the potential of accurate and rapid... AIM To evaluate appropriate and rapid polyglycolic acid sheet(PGAs) covering time using device delivery station system(DDSS).METHODS This pilot basic study was conducted to evaluate the potential of accurate and rapid PGAs delivery using DDSS. Three 11-month-old female Beagle dogs were used in this study. Two endoscopic submucosal dissections(ESDs) 4 cm in diameter were performed in lesser curvature of middle gastric body and greater curvature of antrum(total 6 ESDs performed). DDSS(3 cm length, 12 mm in outer diameter) has 2 chambers which 16 cm^2 large 2 PGAs were stored, and DDSS was attached post ESD ulcers, respectively. Beriplast P?(CSL Behring K.K., Tokyo, Japan)(combination of fibringlue and thrombin) was applied equally to the artificial ulcer, and tight attachment of 2 PGAs with DDSS were completed. The evaluation items were covering times, post ESD bleeding and perforation during ESD.RESULTS The covering time of PGAs(defined as the duration from the beginning of endoscope insertion into the mouth to the end of the fibrin glue coating process) was 6.07(4.86-8.29) min. There was no postESD bleeding(1-7 d after ESD), and there was no perforation during ESD.CONCLUSION DDSS was very useful for rapid delivering and tight attachment of PGAs, and has potentials of multipurpose delivery station system. 展开更多
关键词 Post-endoscopic SUBMUCOSAL DISSECTION ULCERS Bleeding polyglycolic acid SHEET Rapidly delivery Tightly ATTACHMENT
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Potassium Dichromate Surface Modification of Polyglycolic Acid (PGA) Multifilament
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作者 王碧峤 张佩华 房美函 《Journal of Donghua University(English Edition)》 EI CAS 2013年第5期394-396,共3页
For improving its hydrophilicity and biocompatibility,and preserving filament mechanical properties at the same time,polyglycolic acid( PGA) filament was modified by potassium dichromate solution with different proces... For improving its hydrophilicity and biocompatibility,and preserving filament mechanical properties at the same time,polyglycolic acid( PGA) filament was modified by potassium dichromate solution with different processing time. Breaking force and water contact angle were tested. Surface changes before and after surface modifications were tested with scanning electron microscopy(SEM). Furthermore,differential scanning calorimeter(DSC) and Fourier transform infrared spectrometry(FTIR) were used to analyze the changes of molecular structure and functional group. Experimental results showed that 6 min was the most suitable time for improving hydrophilicity of PGA filament and preserving its mechanical properties. 展开更多
关键词 POTASSIUM dichromate(K2Cr2O7) surface modification HYDROPHILICITY polyglycolic acid(PG A)
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Surface Modification of Polyglycolic Acid Fibers by Hydrogen Peroxide for Enhancing Hydrophilicity and Cytocompatibility
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作者 王碧峤 张佩华 +1 位作者 赵莉 何晨光 《Journal of Donghua University(English Edition)》 EI CAS 2017年第6期768-773,共6页
Hydrogen peroxide( H_2O_2) is applied for surface modification of polyglycolic acid( PGA) fibers in order to enhance the hydrophilicity and cytocompatibility of PGA fibers effectively,and maintain the breaking strengt... Hydrogen peroxide( H_2O_2) is applied for surface modification of polyglycolic acid( PGA) fibers in order to enhance the hydrophilicity and cytocompatibility of PGA fibers effectively,and maintain the breaking strength as the same time. PGA fibers are dipped in H_2O_2 solution a certain time for modification. Scanning electron microscopy( SEM) was used to observe the surface morphology of PGA fibers before and after modification. The varying of PGA macromolecule was examined with Fourier transform infrared spectroscopy( FTIR) analyses. X-ray diffraction( XRD) and differential scanning calorimetry( DSC) analysis showed that crystallinity slightly decreases. Mechanical performance test showed tensile force of modified PGA fiber was increased. The water contact angle test indicated the improving of hydrophilic. A cell proliferation assay showed that fibroblast cells attach and proliferate well on the fibers, which meant the modified fibers possess good cytocompatibility. These results suggest that H_2O_2 surface modification is easy to operate and a advantageous modification method for PGA fibers. 展开更多
关键词 polyglycolic acid(PGA) hydrogen peroxide(H2O2) surface modification HYDROPHILICITY CYTOCOMPATIBILITY
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Preparation and Drug-Release Property of Polycaprolactone (PCL)/Polyglycolic Acid (PGA) Composite Masterbatch with Drug of Tea Polyphenols (TPs)
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作者 吴改红 刘淑强 +6 位作者 杨雅茹 莫易涵 李杰特 李静静 张菂 杨智超 陆东东 《Journal of Donghua University(English Edition)》 CAS 2023年第3期277-283,共7页
In order to effectively control the drug-release rate of medical textiles,biodegradable polycaprolactone(PCL) and polyglycolic acid(PGA) were blended at various mass ratios to prepare composite masterbatches for medic... In order to effectively control the drug-release rate of medical textiles,biodegradable polycaprolactone(PCL) and polyglycolic acid(PGA) were blended at various mass ratios to prepare composite masterbatches for medical textiles.The surface morphology and the chemical structure of the masterbatches were analyzed.The crystallization,mass losses,strengths and drug-release rates of the composite masterbatches at different PCL/PGA mass ratios were explored.The results show that the degradation rate of the PGA carrier is obvious higher than that of the PCL carrier,and PCL,PGA and the tea polyphenol(TP) drug just physically mix without chemical reaction.During the degradation,the strength of the composite masterbatches gradually decreases.In addition,the drug-release rates of composite masterbatches at different mass ratios are different,and the more the PGA in the composite masterbatches,the faster the drug release of the composite masterbatches.The drug-release rate of the composite masterbatches can be controlled by adjusting the contents of PCL and PGA. 展开更多
关键词 polycaprolactone(PCL) polyglycolic acid(PGA) tea polyphenol(TP) composite masterbatch drug release
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Polyglycolic Acid Fibrous Scaffold Improving Endothelial Cell Coating and Vascularization of Islet 被引量:2
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作者 Yang Li Ping Fan +8 位作者 Xiao-Ming Ding Xiao-Hui Tian Xin-Shun Feng Hang Yan Xiao-Ming Pan Pu-Xun Tian Jin Zheng Chen-Guang Ding Wu-Jun Xue 《Chinese Medical Journal》 SCIE CAS CSCD 2017年第7期832-839,共8页
Background:Improving islet graft revascularization has become a crucial task for prolonging islet graft survival.Endothelial cells (ECs) are the basis of new microvessels in an isolated islet,and EC coating has bee... Background:Improving islet graft revascularization has become a crucial task for prolonging islet graft survival.Endothelial cells (ECs) are the basis of new microvessels in an isolated islet,and EC coating has been demonstrated to improve the vascularization and survival of an islet.However,the traditional method of EC coating of islets has low efficiency in vitro.This study was conducted to evaluate the effect of a polyglycolic acid (PGA) scaffold on the efficiency of islet coating by ECs and the angiogenesis in the coated islet graft.Methods:A PGA fibrous scaffold was used for EC coating of islet culture and was evaluated for its efficiency of EC coating on islets and islet graft angiogenesis.Results:In in vitro experiments,we found that apoptosis index of ECs-coating islet in PGA group (27% ± 8%) was significantly lower than that in control group (83% ± 20%,P 〈 0.05) after 7 days culture.Stimulation index was significantly greater in the PGA group than in the control group at day 7 after ECs-coating (2.07 ± 0.31 vs.1.80 ± 0.23,P 〈 0.05).vascular endothelial growth factor (VEGF) level in the PGA group was significantly higher than the coating in the control group after 7 days culture (52.10 ± 13.50 ng/ml vs.16.30 ± 8.10 ng/ml,P 〈 0.05).Because of a tight,circumvallated,adhesive and three-dimensional growth microenvironment,islet cultured in a PGA scaffold had higher coating efficiency showing stronger staining intensity of enzyme than those in the control group after 14 days of culture following ECs-coating.For in vivo study,PGA scaffold significantly prolonged the average survival time of EC-coated islet graft after transplantation compared with control group (15.30 ± 5.60 days vs.8.30 ± 2.45 days,P 〈 0.05).The angiogenesis and area of survived grafts were more in the PGA group compared with the control group by measuring the mean microvessel density (8.60 ± 1.21/mm2 vs.5.20 ± 0.87/mm2,P 〈 0.05).In addition,expression of VEGF and tyrosin-protein kinase receptor (Tie-2) gene increased in PGA scaffold group than that in control group by real-time reverse transcription-polymerase chain reaction analysis.Conclusions:These results demonstrate that the efficiency of EC coating of islets was successfully increased by culturing ECs on a PGA scaffold.This method enhances the function,survival,and vascularization of isolated islets in vitro and in vivo. 展开更多
关键词 Endothelial Cells ISLET polyglycolic Acid Fibrous REVASCULARIZATION
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聚乳酸纤维复合手术线抗菌改性工艺及在脊柱微创中的应用
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作者 王琦琳 张映波 +1 位作者 贾雨豪 王越然 《粘接》 2026年第1期117-121,共5页
为提高脊柱内镜下纤维环缝合效果,增强缝合用手术线的抗菌性,试验将聚乙醇酸和聚己内酯作为药物载体材料,以盐酸左氧氟沙星为抗菌药物,制备一种含涂层的聚乳酸可吸收线材料,并优化工艺条件,研究该材料临床应用效果。结果表明,抗菌药物... 为提高脊柱内镜下纤维环缝合效果,增强缝合用手术线的抗菌性,试验将聚乙醇酸和聚己内酯作为药物载体材料,以盐酸左氧氟沙星为抗菌药物,制备一种含涂层的聚乳酸可吸收线材料,并优化工艺条件,研究该材料临床应用效果。结果表明,抗菌药物的添加会导致这种可吸收线材料力学性能下降,同时材料累计释药率随药物添加量增多而增大;当载体中聚乙醇酸含量为50%时,可吸收线材料释药性能最佳,336 h时的累计释药率达到53.8%;本试验优选以1.6 g盐酸左氧氟沙星药物添加量、50%聚乙醇酸含量制备含涂层的可吸收线材料,此材料有一定抗菌性能,且在临床应用中有减少患者腰痛、增加患者腰椎JOA评分、降低并发症发生率效果。 展开更多
关键词 脊柱内镜 聚乙醇酸 力学性能 释药性能 抗菌性能
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可连续吹膜加工PGA/PBC共混物的制备和性能研究
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作者 尹甜 王勇 +4 位作者 刘田园 韩昌豪 刘佳健 李春成 温亮 《塑料科技》 北大核心 2025年第4期52-57,共6页
采用熔融共混法和反应挤出技术制备聚乙醇酸/聚碳酸丁二酯(PGA/PBC)共混物,研究聚乙醇酸(PGA)及滑石粉质量比对PGA/PBC共混物的热性能、微观形貌、吹膜加工性能、薄膜力学性能的影响。结果表明:随着PGA和滑石粉的引入,共混物的热稳定性... 采用熔融共混法和反应挤出技术制备聚乙醇酸/聚碳酸丁二酯(PGA/PBC)共混物,研究聚乙醇酸(PGA)及滑石粉质量比对PGA/PBC共混物的热性能、微观形貌、吹膜加工性能、薄膜力学性能的影响。结果表明:随着PGA和滑石粉的引入,共混物的热稳定性得到提高。共混物整体分散均匀,PGA粒径也较为均匀,平均粒径为1~2μm。利用PBC对PGA进行共混改性,解决了PGA的吹膜加工问题,使原本无法单独进行吹膜加工的PGA实现连续吹膜加工。有机开口剂以及滑石粉的共同使用解决了PBC结晶缓慢造成薄膜开口困难的问题,薄膜样品的力学性能优异,完全满足后续使用的需求。 展开更多
关键词 聚乙醇酸 聚碳酸丁二酯 滑石粉 吹膜加工
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聚羟基乙酸/羟丙基甲基纤维素复合材料用于犬胃管状切除术后缝合的效果研究
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作者 张风华 吴雪烁 +3 位作者 王宝枝 夏宇晓 松谷哲行 冯巨滨 《西安交通大学学报(医学版)》 北大核心 2025年第6期953-959,共7页
目的探究聚羟基乙酸(polyglycolic acid,PGA)与羟丙基甲基纤维素(hydroxypropyl methylcellulose,HPMC)复合材料用于犬胃管状切除术后缝合的有效性和安全性。方法选取36只疫检合格的比格犬,按雌雄1∶1随机分为实验组和对照组。实验组在... 目的探究聚羟基乙酸(polyglycolic acid,PGA)与羟丙基甲基纤维素(hydroxypropyl methylcellulose,HPMC)复合材料用于犬胃管状切除术后缝合的有效性和安全性。方法选取36只疫检合格的比格犬,按雌雄1∶1随机分为实验组和对照组。实验组在胃管状切除术后采用PGA+HPMC复合材料进行切口缝合加固,对照组采用NV-ET-M60E-2缝合线。术后监测比格犬生存情况、进食情况及体温变化,并在术前、术后3 d及解剖前采集静脉血进行血常规检测。术后2、4、8周解剖比格犬,每个时间点解剖6只比格犬,取心、肝、脾、肺、肾进行组织学检查、组织病理切片病理诊断及安全性评估。结果对照组和实验组的血常规检测结果无统计学差异(P>0.05)。解剖前,对照组嗜碱性粒细胞百分数显著高于实验组(P=0.015)。术后2周时,对照组比格犬肝细胞水肿严重程度高于实验组(P=0.036),但其他各项心、肝、脾、肺、肾组织学检测结果在两组之间无统计学差异(P>0.05)。术后2、4、8周的硬组织病理切片结果显示,两组材料在第8周均无残留,炎症与坏死评分和纤维化/脂肪浸润总分均无统计学差异(P>0.05)。炎症评分和纤维化/脂肪浸润总分在术后8周显著低于术后2周(P<0.05)。实验过程中,两组比格犬均无濒死现象,术后3 d内无拒绝禁食和发热现象,解剖时比格犬外观正常,毛发有光泽,无异常分泌物。结论PGA+HPMC复合材料可作为一种可有效降解且无毒副作用的缝合固定材料运用于胃管状切除后切口缝合。 展开更多
关键词 聚羟基乙酸(PGA) 羟丙基甲基纤维素(HPMC) 生物降解材料 术后缝合固定 组织修复 术后恢复
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三种应用场景中聚乙醇酸低聚物的迁移和形成机理研究 被引量:1
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作者 刘胜峰 梁进欣 +5 位作者 尹甜 陈胜 段逸品 董犇 李丹 钟怀宁 《质谱学报》 北大核心 2025年第2期224-232,I0005,共10页
聚乙醇酸(poly glycolic acid,PGA)是一种生物可降解聚合物,具有良好的性能。但是,用作食品接触材料时,需关注PGA中乙醇酸低聚物迁移至食品中的风险。本文建立了超高效液相色谱-串联四极杆飞行时间质谱(UHPLC-QTOF MS)法筛查分析食品模... 聚乙醇酸(poly glycolic acid,PGA)是一种生物可降解聚合物,具有良好的性能。但是,用作食品接触材料时,需关注PGA中乙醇酸低聚物迁移至食品中的风险。本文建立了超高效液相色谱-串联四极杆飞行时间质谱(UHPLC-QTOF MS)法筛查分析食品模拟液中PGA低聚物,并研究PGA样品在低温食品的包装容器或器具、短期储存的热罐装一次性容器以及热饮餐具及容器3种应用场景中在酸性食品、非酸性食品和含酒精饮料中的迁移情况。结果表明,当PGA样品用作低温食品包装容器时,在食品模拟物4%乙酸、10%乙醇和50%乙醇中均未检出PGA低聚物;而用作短期热罐装和热饮餐具及容器时,在3种食品模拟物中均检出多种线性低聚物及环状低聚物,且线性GA5-GA8和cyclic GA6-cyclic GA8的迁移量较高。上述低聚物可能的形成机理是:PGA的非结晶区是无定形状态,水分子逐渐扩散后酯键开始断裂,将链段断裂为长链低聚物,长链低聚物经过多次断裂降解为短链低聚物。由于短链低聚物的分子质量较小,更容易在非结晶区域迁移到模拟液中,同时短链低聚物能够自我重组,从无序状态到有序状态,容易形成链状和环状的低聚物。本研究表明,温度对PGA样品中低聚物的形成影响较大,应用场景温度越高,检出的低聚物种类越多且迁移量越高。因此,用PGA材料及其制品在高温场景下储存酸性食品、非酸性食品及含酒精饮料时,需要关注低聚物的迁移情况。 展开更多
关键词 超高效液相色谱-串联四极杆飞行时间质谱(UHPLC-QTOF MS) 聚乙醇酸 低聚物 迁移量 食品接触材料
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新型碳源聚乙醇酸对活性污泥性能及微生物群落的影响
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作者 李晨曦 王志超 +3 位作者 李卫平 托梓硕 李志军 李国文 《化工进展》 北大核心 2025年第11期6705-6715,共11页
为探究新型碳源聚乙醇酸(PGA)对污水处理中活性污泥性能的影响,本文基于序批式活性污泥工艺(SBR),设置了无碳源(A1)、新型碳源(PGA、A2)与常规碳源(甲醇、A3)的处理系统,探明了PGA碳源对活性污泥系统中污泥浓度、污泥沉降性能及污泥代... 为探究新型碳源聚乙醇酸(PGA)对污水处理中活性污泥性能的影响,本文基于序批式活性污泥工艺(SBR),设置了无碳源(A1)、新型碳源(PGA、A2)与常规碳源(甲醇、A3)的处理系统,探明了PGA碳源对活性污泥系统中污泥浓度、污泥沉降性能及污泥代谢活性的影响,并分析了其对微生物群落特征的影响。结果表明,以PGA为碳源的A2系统中活性污泥具有更好的长势及沉降性能,活性污泥的反硝化活性最高可达7.20mg NO_(3)^(-)-N/(g VSS·h)(VSS为挥发性悬浮固体),比A1对照系统[4.68mg NO_(3)^(-)-N/(g VSS·h)]提高了53.85%,而硝化活性未受到明显抑制;同时PGA碳源的样本(A2)具有较高的微生物群落多样性,Paracoccus(30.09%)、Dechloromonas(11.40%)和Bdellovibrio(7.74%)等功能性菌属的丰度较A1和A3系统显著提高。此外,PGA碳源提高了微生物群落中KEGG(Kyoto encyclopedia of genes and genomes)代谢功能通路的相对丰度,从而强化了系统整体的脱氮性能。本文可为污水处理过程中外加碳源的选择及实际应用提供参考依据。 展开更多
关键词 聚乙醇酸 污泥性能 代谢活性 微生物群落 功能预测
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生物基乙交酯及聚乙醇酸的制备与性能
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作者 李秀峥 白富栋 +4 位作者 张雷 孙启梅 白毓黎 刘来伍 王鹏翔 《工程塑料应用》 北大核心 2025年第3期16-23,共8页
聚乙醇酸(PGA)是一种可降解高分子材料,具有优良的生物相容性、力学性能、气体阻隔性及降解性能。为了实现由生物基原料出发制备PGA,首先以生物基原料微晶纤维素制备乙醇酸甲酯,并水解合成乙醇酸,进而制备乙交酯及PGA。介绍了纤维素制... 聚乙醇酸(PGA)是一种可降解高分子材料,具有优良的生物相容性、力学性能、气体阻隔性及降解性能。为了实现由生物基原料出发制备PGA,首先以生物基原料微晶纤维素制备乙醇酸甲酯,并水解合成乙醇酸,进而制备乙交酯及PGA。介绍了纤维素制备乙醇酸甲酯的工艺流程,并对催化剂种类、纤维素用量、催化剂用量、反应温度、反应时间、初始反应压力进行了考察,得到了工艺条件对乙醇酸甲酯收率的影响规律。当纤维素用量为0.5 g、偏钨酸铵催化剂用量为0.15 g、甲醇用量为50 mL、反应温度为250℃、反应时间为2 h、初始反应压力为2 MPa时,乙醇酸甲酯收率最大,为33.0%。以乙醇酸甲酯为原料水解反应精馏制备乙醇酸,考察了水解催化剂、反应水酯比(水与乙醇酸甲酯物质的量比)、反应温度对乙醇酸甲酯转化率的影响。结果表明,当乙醇酸甲酯水解催化剂为D005-Ⅱ,水酯比为7∶1,反应温度为80~85℃时,乙醇酸甲酯转化率最高,达到98.2%。以乙醇酸为原料合成了乙交酯并进行精制,制备得到的乙交酯符合Q/PJIM 004-2021标准性能指标要求,可作为聚合级乙交酯使用。最后进行了乙交酯开环聚合实验得到了PGA,其熔点为221.4℃,玻璃化转变温度为37.2℃,特性黏度为0.45 dL/g。由生物基原料纤维素出发制备PGA,具有绿色低碳的优点。 展开更多
关键词 聚乙醇酸 乙交酯 乙醇酸甲酯 乙醇酸 纤维素 生物基 可降解
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基于体外降解的输尿管支架管的多目标优化
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作者 侯颖慧 刘肖燕 +2 位作者 柳东辰 郝矿荣 邹婷 《纺织学报》 北大核心 2025年第9期154-162,共9页
输尿管支架管在病体内提供必要的支撑和引流作用,因此支架管的力学性能对于确保治疗的有效性和安全性至关重要,尤其是对于生物可降解输尿管支架管来说,在降解周期内其力学性能逐渐降低。为探究可降解输尿管支架管能否在降解周期内保证... 输尿管支架管在病体内提供必要的支撑和引流作用,因此支架管的力学性能对于确保治疗的有效性和安全性至关重要,尤其是对于生物可降解输尿管支架管来说,在降解周期内其力学性能逐渐降低。为探究可降解输尿管支架管能否在降解周期内保证足够的力学性能,使用本构模型来预测由聚乙醇酸(PGA)和聚乳酸-羟基乙酸共聚物(PGLA)制成的“纤-膜”可降解输尿管支架管的力学性能演变。利用有限元软件(ABAQUS)结合用户材料子程序(VUMAT)根据降解时间自动更新材料参数同时应用基于强度的失效准则,实现了降解周期内“纤-膜”可降解输尿管支架管力学性能的模拟,并通过对降解前(降解0周)和降解3周支架管力学性能的多目标优化,得到了在降解过程中力学性能最优的支架管结构参数。研究发现,优化后的支架管在降解初期的径向压缩性能提高了17.89%,轴向拉伸性能提高了27.89%;降解3周的径向压缩性能提高了25.14%,轴向拉伸性能提高了33.62%。经过优化后的支架管提高了降解前的力学性能,并在一定降解时间内可以保持较高水平,有效延长了在体内的支撑时间。 展开更多
关键词 可降解输尿管支架管 聚合物降解 力学性能 聚乙醇酸 聚乳酸-羟基乙酸共聚物 医用纺织品
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聚乙醇酸的制备及其高温水解生酸性能研究
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作者 黄利平 周际永 +2 位作者 孙林 孟向丽 张建华 《热固性树脂》 2025年第3期21-26,共6页
聚乙醇酸(Polyglycolic Acid,PGA)具有优异的生物相容性和温控水解释酸性能,水解后生成的乙醇酸具有很强的碳酸钙溶蚀能力,在碳酸盐储层深部酸化上具有很好的应用潜力。本文制备了不同分子质量的PGA并对其组成结构和分子质量等进行了表... 聚乙醇酸(Polyglycolic Acid,PGA)具有优异的生物相容性和温控水解释酸性能,水解后生成的乙醇酸具有很强的碳酸钙溶蚀能力,在碳酸盐储层深部酸化上具有很好的应用潜力。本文制备了不同分子质量的PGA并对其组成结构和分子质量等进行了表征,随后研究了PGA在不同温度下的水解行为、水解生酸和溶蚀性能。结果表明PGA具有优异的温控水解原位生酸性能,而且其水解和释酸行为主要取决于温度,在中低温度下(≤90℃)PGA的水解速度很慢,几乎不显酸性和腐蚀性,而在高温环境下(≥120℃)PGA能够快速水解并释放乙醇酸,实现高效的碳酸盐溶蚀。质量分数30%的PGA分散液在140℃下水解2 h后的等效盐酸质量分数约为8%,而且初始酸岩反应速率很低。显然,基于PGA的固体自生酸体系具有生酸浓度高、低腐蚀、初始酸岩反应速率低的优点,在碳酸盐储层的深部酸化领域具有较好的应用前景。 展开更多
关键词 聚乙醇酸 碳酸盐储层 酸化 固体酸 原位自生酸
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低分子量聚乙醇酸的合成与表征
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作者 许云翔 陈洁 王选伦 《橡塑技术与装备》 2025年第8期45-48,共4页
在不同聚合温度下合成聚乙醇酸(PGA),研究不同聚合温度下合成PGA的特性黏度、熔融温度、热稳定性的变化。结果表明:在聚合温度为175 ℃的条件下合成的PGA的综合性能最佳。聚合温度太低可能导致样品含有较多分子量较低的产物,聚合温度太... 在不同聚合温度下合成聚乙醇酸(PGA),研究不同聚合温度下合成PGA的特性黏度、熔融温度、热稳定性的变化。结果表明:在聚合温度为175 ℃的条件下合成的PGA的综合性能最佳。聚合温度太低可能导致样品含有较多分子量较低的产物,聚合温度太高聚合物又可能融化导致分子量降低,聚合温度为175 ℃就比较合适,合成的PGA分子量最高。 展开更多
关键词 聚乙醇酸 特性黏度 聚合温度 低分子量
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CT引导下穿刺注射聚桂醇硬化治疗单纯性肝/肾囊肿的有效性及安全性分析
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作者 吉廷举 陈小卫 +2 位作者 许磊 周胜利 王礼同 《医学影像学杂志》 2025年第6期87-90,共4页
目的探讨CT引导下穿刺注射聚桂醇硬化治疗单纯性肝/肾囊肿的有效性及安全性。方法选取单纯性肝/肾囊肿患者120例,其中60例在CT引导下穿刺注射无水乙醇硬化治疗(乙醇治疗组)、60例在CT引导下穿刺注射聚桂醇硬化治疗(聚桂醇治疗组)。比较... 目的探讨CT引导下穿刺注射聚桂醇硬化治疗单纯性肝/肾囊肿的有效性及安全性。方法选取单纯性肝/肾囊肿患者120例,其中60例在CT引导下穿刺注射无水乙醇硬化治疗(乙醇治疗组)、60例在CT引导下穿刺注射聚桂醇硬化治疗(聚桂醇治疗组)。比较两组临床疗效、囊肿体积缩小程度以及术后不良反应。结果术后一年复查CT,聚桂醇治疗组总体有效率为95%,而乙醇治疗组为90%,两组比较差异无统计学意义(P>0.05);硬化治疗前和术后3、6个月及1年,聚桂醇治疗组囊肿体积减小比高于乙醇治疗组,差异有统计学意义(P<0.05)。另外,聚桂醇治疗组术后不良反应发生率为5%,低于乙醇治疗组的25%(P<0.05)。结论CT引导下穿刺注射聚桂醇硬化治疗单纯性肝/肾囊肿的临床效果较好,囊肿体积减小更明显,术后不良反应更低,安全性更高。 展开更多
关键词 单纯性肝/肾囊肿 聚桂醇 无水乙醇 介入性 放射学
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聚乙醇酸改性研究进展
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作者 王勇 孙小杰 +1 位作者 王荣 孙苗苗 《中国塑料》 北大核心 2025年第11期142-152,共11页
全面系统地总结了聚乙醇酸(PGA)共聚改性方面的最新研究进展,涵盖嵌段共聚和无规共聚的设计策略,以及共聚体系对材料结晶性、力学性能和降解行为的影响。此外,还探讨了PGA与其他高分子材料的共混改性研究,包括如何通过物理共混改善PGA... 全面系统地总结了聚乙醇酸(PGA)共聚改性方面的最新研究进展,涵盖嵌段共聚和无规共聚的设计策略,以及共聚体系对材料结晶性、力学性能和降解行为的影响。此外,还探讨了PGA与其他高分子材料的共混改性研究,包括如何通过物理共混改善PGA的韧性和加工性能。 展开更多
关键词 生物可降解 聚酯 聚乙醇酸 共聚改性 共混改性
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包装材料及储存条件对PGA性能的影响研究
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作者 谢瑛鸾 周炳 王洪学 《中国塑料》 北大核心 2025年第4期20-24,共5页
聚乙醇酸(PGA)降解速度过快导致其储存稳定性差、货架期短,通常需要高阻隔包装材料和低温储存以减小PGA的降解程度。本文主要系统地研究了不同包装材料、包装气氛和储存温度对PGA粒子性能的影响,研究的包装材料包括铝塑袋外层和低密度... 聚乙醇酸(PGA)降解速度过快导致其储存稳定性差、货架期短,通常需要高阻隔包装材料和低温储存以减小PGA的降解程度。本文主要系统地研究了不同包装材料、包装气氛和储存温度对PGA粒子性能的影响,研究的包装材料包括铝塑袋外层和低密度聚乙烯(PE-LD)及PE-LD/聚酰胺(PA)内层材料,包装气氛包括空气、氮气和真空,储存温度包括-16℃、5℃和25℃。包装储存一定时间后取样并检测了PGA的熔体流动速率、分子量及分子量分布和热学性能,研究了包装条件对PGA降解的影响。结果表明,随着储存温度的升高,PGA材料的熔体流动速率随时间变化明显升高,分子量也随之降低,包装气氛中的水份或包装材料的阻水性能都会影响PGA的降解及性能。 展开更多
关键词 生物可降解高分子 聚乙醇酸 降解 包装材料 包装条件
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CaCO_(3)杂化扩链剂改性聚乳酸/聚乙醇酸复合材料的结构与性能研究
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作者 齐曼婷 王立梅 《塑料科技》 北大核心 2025年第6期83-87,共5页
以苯乙烯(St)、甲基丙烯酸甲酯(MMA)和甲基丙烯酸缩水甘油酯(GMA)为单体,采用表面引发自由基共聚法,合成碳酸钙杂化扩链剂(CaCO_(3)-g-ADR)。红外光谱、热重分析和透射电镜结果表明,ADR共聚物成功接枝在CaCO_(3)表面。基于熔融共混法,以... 以苯乙烯(St)、甲基丙烯酸甲酯(MMA)和甲基丙烯酸缩水甘油酯(GMA)为单体,采用表面引发自由基共聚法,合成碳酸钙杂化扩链剂(CaCO_(3)-g-ADR)。红外光谱、热重分析和透射电镜结果表明,ADR共聚物成功接枝在CaCO_(3)表面。基于熔融共混法,以CaCO_(3)-g-ADR对质量比为8∶2的聚乳酸/聚乙醇酸(PLA/PGA)共混物进行改性。利用拉伸冲击测试、差示扫描量热、旋转流变和维卡软化温度测试等方法,考察CaCO_(3)-g-ADR用量对复合材料力学性能、热性能、流变行为和耐热性的影响。结果表明:CaCO_(3)-g-ADR对PLA/PGA共混物具有较好的增容作用,随着CaCO_(3)-g-ADR用量的增大,复合材料的拉伸强度先增大后减小,冲击强度和断裂伸长率均高于PLA/PGA共混物,同时耐热性提升。当CaCO_(3)-g-ADR质量分数为4%时,复合材料的拉伸强度为65.8 MPa,冲击强度为5.9 kJ/m^(2),维卡软化温度(VST)达到71.8℃。CaCO_(3)-g-ADR和PGA促进了PLA冷结晶,使复合材料熔体表现出更高的复数黏度和更强的非牛顿行为。 展开更多
关键词 聚乳酸 聚乙醇酸 碳酸钙 复合材料 结构与性能
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