ITR zeolite could be potentially used as catalysts in methanol to propylene(MTP),where their performance is strongly related to its Al distribution.However,the control of Al distribution in ITR zeolite poses a signifi...ITR zeolite could be potentially used as catalysts in methanol to propylene(MTP),where their performance is strongly related to its Al distribution.However,the control of Al distribution in ITR zeolite poses a significant synthetic challenge.Herein,we demonstrate the possibility to control the Al distribution in ITR zeolites using zeolite A as an aluminum source(A-ITR).The A-ITR exhibited similar crystallinity,nanosheet morphology,textual parameters,and acidic concentration with those of conventional ITR made zeolites using aluminum isopropoxide as an aluminum source(C-ITR).Characterizations of the zeolite product with^(27)Al MQ.MAS NMR spectra,^(27)Al MAS NMR spectra,and 1-hexene cracking reveal that the A-ITR zeolites have more Al species distributed in T6 and T8 sites located in relatively smaller micropores of the framework than C-ITR.As a result,the A-ITR gave enhanced catalyst lifetime and propylene selectivity due to the suppression of the aromatic cycle in the MTP reaction,compared with the C-ITR.This work provides an alternative approach to prepare efficient ITR zeolites for MTP reaction.展开更多
常用的基因治疗表达载体有病毒表达载体和质粒表达载体,这两类传统基因治疗载体含有大量病毒或细菌DNA序列,会引发人体较严重的免疫反应、细胞炎症、细胞毒性副作用、以及基因表达沉默化,是基因治疗应用于人类疾病治疗的一大障碍。项目...常用的基因治疗表达载体有病毒表达载体和质粒表达载体,这两类传统基因治疗载体含有大量病毒或细菌DNA序列,会引发人体较严重的免疫反应、细胞炎症、细胞毒性副作用、以及基因表达沉默化,是基因治疗应用于人类疾病治疗的一大障碍。项目构建了一种新型的、基于腺相关病毒(AAV)倒置末端重复序列(ITR)的基因表达单链微载体(AAV-ITR mini vector),并用GFP基因作为报告基因。通过热变性的方法制备单链DNA,然后将带有GFP的质粒、双链DNA载体、AAV-ITR基因表达微载体转入真核表达细胞,采用荧光显微镜观察和流式细胞仪检测等较为简单的方法来检测其表达效率。实验结果显示,AAV-ITR基因表达微载体在293T细胞中具有较高的转染、表达效率,并且具有类似AAV病毒载体的特性。该研究结果将有助于进一步研发类似于AAV病毒载体的安全、无免疫原性的人造基因治疗载体。展开更多
基金supported by the National Key Research and Development Program of China(2022YFA1503602)the National Natural Science Foundation of China(22288101,U21B20101 and 22172141)+1 种基金the BASF International Network of Centers of Excellence projectthe Zhejiang Provincial Natural Science Foundation of China(LR24B030001)。
文摘ITR zeolite could be potentially used as catalysts in methanol to propylene(MTP),where their performance is strongly related to its Al distribution.However,the control of Al distribution in ITR zeolite poses a significant synthetic challenge.Herein,we demonstrate the possibility to control the Al distribution in ITR zeolites using zeolite A as an aluminum source(A-ITR).The A-ITR exhibited similar crystallinity,nanosheet morphology,textual parameters,and acidic concentration with those of conventional ITR made zeolites using aluminum isopropoxide as an aluminum source(C-ITR).Characterizations of the zeolite product with^(27)Al MQ.MAS NMR spectra,^(27)Al MAS NMR spectra,and 1-hexene cracking reveal that the A-ITR zeolites have more Al species distributed in T6 and T8 sites located in relatively smaller micropores of the framework than C-ITR.As a result,the A-ITR gave enhanced catalyst lifetime and propylene selectivity due to the suppression of the aromatic cycle in the MTP reaction,compared with the C-ITR.This work provides an alternative approach to prepare efficient ITR zeolites for MTP reaction.
文摘常用的基因治疗表达载体有病毒表达载体和质粒表达载体,这两类传统基因治疗载体含有大量病毒或细菌DNA序列,会引发人体较严重的免疫反应、细胞炎症、细胞毒性副作用、以及基因表达沉默化,是基因治疗应用于人类疾病治疗的一大障碍。项目构建了一种新型的、基于腺相关病毒(AAV)倒置末端重复序列(ITR)的基因表达单链微载体(AAV-ITR mini vector),并用GFP基因作为报告基因。通过热变性的方法制备单链DNA,然后将带有GFP的质粒、双链DNA载体、AAV-ITR基因表达微载体转入真核表达细胞,采用荧光显微镜观察和流式细胞仪检测等较为简单的方法来检测其表达效率。实验结果显示,AAV-ITR基因表达微载体在293T细胞中具有较高的转染、表达效率,并且具有类似AAV病毒载体的特性。该研究结果将有助于进一步研发类似于AAV病毒载体的安全、无免疫原性的人造基因治疗载体。
文摘SoC是超越摩尔定律的未来瞩望。根据ITRS 2010介绍医学市场如何驱动SoC;解释新SoC设计者的设计V图。分析ISSCC 2008~2011中25例生物医学SoC,得到其发展趋势:以NMR-SoC为典型的整机SoC化、超低功耗的无限追求、植入式与贴片式的竞争、迎合BAN(body area networks)。摘取关键技术、分析技术亮点,得出其主要设计创新点包括ADC模块复用、阻抗法消除伪迹、功率调制以及光基因接口和电容阵列实现长时供电等。