The controllable transfer of droplets on the surface of objects has a wide application prospect in the fields of microfluidic devices,fog collection and so on.The Leidenfrost effect can be utilized to significantly re...The controllable transfer of droplets on the surface of objects has a wide application prospect in the fields of microfluidic devices,fog collection and so on.The Leidenfrost effect can be utilized to significantly reduce motion resistance.However,the use of 3D structures limits the widespread application of self-propulsion based on Leidenfrost droplets in microelectromechanical system.To manipulate Leidenfrost droplets,it is necessary to create 2D or quasi-2D geometries.In this study,femtosecond laser is applied to fabricate a surface with periodic hydrophobicity gradient(SPHG),enabling directional self-propulsion of Leidenfrost droplets.Flow field analysis within the Leidenfrost droplets reveals that the vapor layer between the droplets and the hot surface can be modulated by the SPHG,resulting in directional propulsion of the inner gas.The viscous force between the gas and liquid then drives the droplet to move.展开更多
This work focuses on numerically studying hydrodynamic interaction between a passive particle and a self-propelled particle,termed a squirmer,by using a two-dimensional lattice Boltzmann method(LBM).It is found that t...This work focuses on numerically studying hydrodynamic interaction between a passive particle and a self-propelled particle,termed a squirmer,by using a two-dimensional lattice Boltzmann method(LBM).It is found that the squirmer can capture a passive particle and propel it simultaneously,provided the passive particle is situated within the squirmer's wake.Our research shows that the critical capture distance,which determines whether the particle is captured,primarily depends on the intensity of the squirmer's dipolarity.The stronger dipolarity of squirmer results in an increased critical capture distance.Conversely,the Reynolds number is found to have minimal influence on this interaction.Interestingly,the passive particle,when driven by the squirmer's wake,contributes to a reduction in the squirmer's drag.This results in a mutual acceleration for both particles.Our findings can provide valuable perspectives for formulating the principles of reducing the drag of micro-swimmers and help to achieve the goal of using micro-swimmers to transport goods without physical tethers.展开更多
目的分离纯化碧根果致敏原Car i 1,并对其结构进行表征鉴定。方法以新鲜碧根果果仁为原料,通过粉碎、脱脂、浸提、粗分级、凝胶过滤层析,对碧根果致敏原蛋白Car i 1进行分离纯化。结合十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串...目的分离纯化碧根果致敏原Car i 1,并对其结构进行表征鉴定。方法以新鲜碧根果果仁为原料,通过粉碎、脱脂、浸提、粗分级、凝胶过滤层析,对碧根果致敏原蛋白Car i 1进行分离纯化。结合十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串联质谱法和免疫印迹法3种方法对Cari1进行鉴定,并通过圆二色谱仪与紫外分光光度计表征其二、三级结构。结果本方法纯化获得碧根果致敏原Cari1,单轮制备量可达5 mg以上,且纯度大于95%,蛋白质高级结构未被破坏,能够被全部3名碧根果过敏患者的血清准确识别。结论该纯化方法技术路线简单、设备要求低且单次制备量高,总得率可达65%,操作便捷,为碧根果致敏原Car i 1的相关研究奠定了物质基础。展开更多
2024年3月6日,浙江大学药学院顾臻教授、李洪军研究员联合浙江大学医学院附属第一医院赵鹏主任医师团队在《自然·材料》(Nature Materials)上发表了最新研究成果“Lyophilized lymph nodes for improved delivery of chimeric anti...2024年3月6日,浙江大学药学院顾臻教授、李洪军研究员联合浙江大学医学院附属第一医院赵鹏主任医师团队在《自然·材料》(Nature Materials)上发表了最新研究成果“Lyophilized lymph nodes for improved delivery of chimeric antigen receptor T cells”(DOI:10.1038/s41563-024-01825-z)。该研究提出一种肌体组织工程化递药策略,使用冷冻干燥技术保留患者来源淋巴结的基质结构和关键免疫调节因子存储和递送CAR-T细胞,增强CAR-T细胞的杀伤活性和持久性。展开更多
基金supported by the Beijing Municipal Natural Science Foundation(JQ20015)National Key Research and Development Program of China(No.2022YFB4601300)+3 种基金the National Science Fund for Distinguished Young Scholars(No.52325505)the National Natural Science Foundation of China(NSFC)(No.52075041)the Joint Funds of the National Natural Science Foundation of China(Grant No.U2037205)the Open Project Program of Wuhan National Laboratory for Optoelectronics(No2021WNLOKF016)。
文摘The controllable transfer of droplets on the surface of objects has a wide application prospect in the fields of microfluidic devices,fog collection and so on.The Leidenfrost effect can be utilized to significantly reduce motion resistance.However,the use of 3D structures limits the widespread application of self-propulsion based on Leidenfrost droplets in microelectromechanical system.To manipulate Leidenfrost droplets,it is necessary to create 2D or quasi-2D geometries.In this study,femtosecond laser is applied to fabricate a surface with periodic hydrophobicity gradient(SPHG),enabling directional self-propulsion of Leidenfrost droplets.Flow field analysis within the Leidenfrost droplets reveals that the vapor layer between the droplets and the hot surface can be modulated by the SPHG,resulting in directional propulsion of the inner gas.The viscous force between the gas and liquid then drives the droplet to move.
基金Project supported by the National Natural Science Foundation of China (Grant Nos.12132015 and 11972336)。
文摘This work focuses on numerically studying hydrodynamic interaction between a passive particle and a self-propelled particle,termed a squirmer,by using a two-dimensional lattice Boltzmann method(LBM).It is found that the squirmer can capture a passive particle and propel it simultaneously,provided the passive particle is situated within the squirmer's wake.Our research shows that the critical capture distance,which determines whether the particle is captured,primarily depends on the intensity of the squirmer's dipolarity.The stronger dipolarity of squirmer results in an increased critical capture distance.Conversely,the Reynolds number is found to have minimal influence on this interaction.Interestingly,the passive particle,when driven by the squirmer's wake,contributes to a reduction in the squirmer's drag.This results in a mutual acceleration for both particles.Our findings can provide valuable perspectives for formulating the principles of reducing the drag of micro-swimmers and help to achieve the goal of using micro-swimmers to transport goods without physical tethers.
文摘目的分离纯化碧根果致敏原Car i 1,并对其结构进行表征鉴定。方法以新鲜碧根果果仁为原料,通过粉碎、脱脂、浸提、粗分级、凝胶过滤层析,对碧根果致敏原蛋白Car i 1进行分离纯化。结合十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串联质谱法和免疫印迹法3种方法对Cari1进行鉴定,并通过圆二色谱仪与紫外分光光度计表征其二、三级结构。结果本方法纯化获得碧根果致敏原Cari1,单轮制备量可达5 mg以上,且纯度大于95%,蛋白质高级结构未被破坏,能够被全部3名碧根果过敏患者的血清准确识别。结论该纯化方法技术路线简单、设备要求低且单次制备量高,总得率可达65%,操作便捷,为碧根果致敏原Car i 1的相关研究奠定了物质基础。
文摘目的 探讨CAR-T细胞疗法治疗老年急性B淋巴细胞白血病(B-ALL)患者的安全性和有效性。方法 回顾性分析2020年5月—2022年12月苏州大学附属第一医院收治的接受CAR-T治疗的21例老年急性B淋巴细胞白血病患者的临床及随访资料,探讨CAR-T的有效性及安全性。结果 21例老年B-ALL患者CAR-T治疗后细胞因子释放综合征(cytokine release syndrome,CRS),中性粒细胞减少症和中性粒细胞缺乏症发生率分别为:38.1%(8/21),42.9%(9/21)和28.6%(6/21);与CAR-T回输前相比,CAR-T后一周白细胞绝对计数无显著差异,一个月后显著升高(P<0.001),中性粒细胞计数在CAR-T后一周和一个月均无显著差异(P>0.05),C反应蛋白在CAR-T后7天显著升高,30天后显著降低(-3 d vs 7 d,P=0.007;30 d vs 7 d,P=0.000 6);首次输注CAR-T后完全缓解率(complete remission,CR)为85.7%(18/21),中位随访时间为17个月;CAR-T后无进展生存率(progression-free survival,PFS)为81.0%,与性别、CAR-T细胞类型、费城染色体、高肿瘤负荷、桥接造血干细胞移植(HSCT)、治疗次数、LDH值以及血小板计数均无相关性(P>0.05),中位PFS为13个月;R/R B-ALL患者CAR-T治疗后CR率为75%(6/8),PFS率为67.5%,中位PFS时间为12个月;回输CAR-T后复发时间平均为10.2个月。结论 CAR-T细胞疗法用于治疗老年B-ALL患者具有较好的缓解率,为预后差的老年B-ALL患者提供有潜能的治疗手段。
文摘2024年3月6日,浙江大学药学院顾臻教授、李洪军研究员联合浙江大学医学院附属第一医院赵鹏主任医师团队在《自然·材料》(Nature Materials)上发表了最新研究成果“Lyophilized lymph nodes for improved delivery of chimeric antigen receptor T cells”(DOI:10.1038/s41563-024-01825-z)。该研究提出一种肌体组织工程化递药策略,使用冷冻干燥技术保留患者来源淋巴结的基质结构和关键免疫调节因子存储和递送CAR-T细胞,增强CAR-T细胞的杀伤活性和持久性。