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Cardiogenic differentiation of mesenchymal stem cells on elastomeric poly (glycerol sebacate)/collagen core/shell fibers 被引量:2
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作者 Rajeswari Ravichandran Jayarama Reddy Venugopal +2 位作者 Subramanian Sundarrajan Shayanti Mukherjee Seeram Ramakrishna 《World Journal of Cardiology》 CAS 2013年第3期28-41,共14页
AIM: To facilitate engineering of suitable biomaterials to meet the challenges associated with myocardial infarction. METHODS: Poly (glycerol sebacate)/collagen (PGS/ collagen) core/shell fibers were fabricated by cor... AIM: To facilitate engineering of suitable biomaterials to meet the challenges associated with myocardial infarction. METHODS: Poly (glycerol sebacate)/collagen (PGS/ collagen) core/shell fibers were fabricated by core/ shell electrospinning technique, with core as PGS and shell as collagen polymer; and the scaffolds were characterized by scanning electron microscope (SEM), fourier transform infrared spectroscopy (FTIR), contact angle and tensile testing for cardiac tissue engineering. Collagen nanofibers were also fabricated by electrospinning for comparison with core/shell fibers. Studies on cell-scaffold interaction were carriedout using cardiac cells and mesenchymal stem cells (MSCs) co-culture system with cardiac cells and MSCs separately serving as positive and negative controls respectively. The co-culture system was characterized for cell proliferation and differentiation of MSCs into cardiomyogenic lineage in the co-culture environment using dual immunocytochemistry. The co-culture cells were stained with cardiac specific marker proteins like actinin and troponin and MSC specific marker protein CD 105 for proving the cardiogenic differentiation of MSCs. Further the morphology of cells was analyzed using SEM.RESULTS: PGS/collagen core/shell fibers, core is PGS polymer having an elastic modulus related to that of cardiac fibers and shell as collagen, providing natural environment for cellular activities like cell adhesion, proliferation and differentiation. SEM micrographs of electrospun fibrous scaffolds revealed porous, beadless, uniform fibers with a fiber diameter in the range of 380 ± 77 nm and 1192 ± 277 nm for collagen fibers and PGS/collagen core/shell fibers respectively. The obtained PGS/collagen core/shell fibrous scaffolds were hydrophilic having a water contact angle of 17.9 ± 4.6° compared to collagen nanofibers which had a contact angle value of 30 ± 3.2°. The PGS/collagen core/shell fibers had mechanical properties comparable to that of native heart muscle with a young's modulus of 4.24 ± 0.7 MPa, while that of collagen nanofibers was comparatively higher around 30.11 ± 1.68 MPa. FTIR spectrum was performed to confirm the functional groups present in the electrospun scaffolds. Amide Ⅰ and amide Ⅱ of collagen were detected at 1638.95 cm -1 and 1551.64 cm -1 in the electrospun collagen fibers and at 1646.22 cm -1 and 1540.73 cm -1 for PGS/collagen core/shell fibers respectively. Cell culture studies performed using MSCs and cardiac cells co-culture environment, indicated that the cellproliferation significantly increased on PGS/collagen core/shell scaffolds compared to collagen fibers and the cardiac marker proteins actinin and troponin were expressed more on PGS/collagen core/shell scaffolds compared to collagen fibers alone. Dual immunofluorescent staining was performed to further confirm the cardiogenic differentiation of MSCs by employing MSC specific marker protein, CD 105 and cardiac specific marker protein, actinin. SEM observations of cardiac cells showed normal morphology on PGS/collagen fibers and providing adequate tensile strength for the regeneration of myocardial infarction. CONCLUSION: Combination of PGS/collagen fibers and cardiac cells/MSCs co-culture system providing natural microenvironments to improve cell survival and differentiation, could bring cardiac tissue engineering to clinical application. 展开更多
关键词 Mesenchymal stem CELLS CARDIAC CELLS COCULTURE CARDIAC patch POLY (glycerol sebacate) core/ shell fibers.
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加核型超支化聚氨酯丙烯酸树脂的合成及涂膜性能研究 被引量:2
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作者 徐朝华 陈婵 +2 位作者 孙宁 李珩 李亦彪 《化工新型材料》 CAS CSCD 北大核心 2017年第2期101-103,共3页
选用甘油为核,二乙醇胺(DEOA)和异佛尔酮二异氰酸酯(IPDI)为原料,引入扩链剂新戊二醇(NPG),制得含扩链剂的端羟基加核型超支化聚氨酯(HBPU-OH);进一步与半加成产物IPDI-HEA反应,引入端丙烯酸双键,制得三端羟基的加核型超支化聚氨酯丙烯... 选用甘油为核,二乙醇胺(DEOA)和异佛尔酮二异氰酸酯(IPDI)为原料,引入扩链剂新戊二醇(NPG),制得含扩链剂的端羟基加核型超支化聚氨酯(HBPU-OH);进一步与半加成产物IPDI-HEA反应,引入端丙烯酸双键,制得三端羟基的加核型超支化聚氨酯丙烯酸酯(HBPUA),并对其进行表征。FT-IR及NMR测试表明成功合成了HBPUA;DSC测试表明HBPUA的玻璃化转变温度(Tg)比HBPU-OH的低。含三端羟基的超支化聚氨酯丙烯酸酯(HBPUA-N-3)与目标树脂的相容能力更好。涂膜性能测试表明当HBPUA-N-3加入量为10%时,复合涂膜柔韧性和附着力没有明显变化,柔韧性≤2,附着力为2级;铅笔硬度和抗冲击强度都有明显提高,铅笔硬度为3H,抗冲击强度是50MJ/cm^2。 展开更多
关键词 加核型 UV光固化 超支化聚氨酯丙烯酸酯 性能
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煎炸食品的品质和风险因子研究最新进展 被引量:1
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作者 王兴国 张晖 吴港城 《粮油食品科技》 2022年第1期1-9,共9页
如何让煎炸食品更美味、更健康是食品科学不断追求的目标。主要对影响煎炸食品风味、口感(质构)、吸油等品质和新风险因子等方面2019-2022的最新研究进展进行综述;系统阐述其"宽钟罩"型的风味曲线的来源、演变及物质关系;介... 如何让煎炸食品更美味、更健康是食品科学不断追求的目标。主要对影响煎炸食品风味、口感(质构)、吸油等品质和新风险因子等方面2019-2022的最新研究进展进行综述;系统阐述其"宽钟罩"型的风味曲线的来源、演变及物质关系;介绍口感(质构)的物理表征和影响机制,以及煎炸食品的吸油机理和降低含油率的新技术;并进一步对煎炸过程的甘油核心醛和单环氧脂肪酸两个风险因子的形成机制、检测分布、潜在毒性和影响因素的研究成果进行综述。为煎炸食品品质的改善和风险因子的控制提供参考。 展开更多
关键词 煎炸 质构 风味 吸油 甘油核心醛 单环氧脂肪酸
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气相色谱法同时检测加热不燃烧卷烟芯材中的1,2-丙二醇、烟碱与甘油含量 被引量:16
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作者 赵光飞 刘静 +8 位作者 屠彦刚 陈华 任俞澄 吴建霖 陈绍全 陈宇超 李锐 张一扬 周桂园 《中国测试》 CAS 北大核心 2019年第3期69-74,共6页
为准确测量加热不燃烧卷烟芯材中的1,2-丙二醇、烟碱与甘油含量,将加热不燃烧卷烟芯材样品切丝,以1,4丁二醇、正十七碳烷为内标,异丙醇内标溶液振荡萃取2 h,建立气相色谱法同时测定1,2-丙二醇、烟碱和甘油含量,并利用卡尔费休水分电位... 为准确测量加热不燃烧卷烟芯材中的1,2-丙二醇、烟碱与甘油含量,将加热不燃烧卷烟芯材样品切丝,以1,4丁二醇、正十七碳烷为内标,异丙醇内标溶液振荡萃取2 h,建立气相色谱法同时测定1,2-丙二醇、烟碱和甘油含量,并利用卡尔费休水分电位滴定仪检测样品中水分,计算得到样品中1,2-丙二醇、烟碱和甘油的绝干含量。结果表明1,2-丙二醇、烟碱、甘油分别在1.0~10.0 mg/mL、0.1~1.0 mg/mL、1.0~10.0 mg/mL范围内,工作曲线线性良好,相关系数均高于0.999,相对标准偏差分别为1.50%、2.62%、0.70%,加标回收率在97.11%~102.62%之间,检出限分别为0.019 mg/mL、0.009 mg/mL、0.011 mg/mL,定量限分别为0.064 mg/mL、0.030 mg/mL、0.039 mg/mL。该方法前处理简单、安全,定量结果准确可靠、重现性好,适用于加热不燃烧卷烟芯材中1,2-丙二醇、烟碱、甘油定量分析。 展开更多
关键词 气相色谱法 加热不燃烧卷烟芯材 1 2-丙二醇 烟碱 甘油
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