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4篇 您的检索式:作者名="Roger Olsson"
    题名 作者 年代 出处 被引量
1The Natural History of Small-Duct Primary Sclerosing Cholangitis显示文摘Einar Bj?rnsson Rolf Olsson Annika Bergquist Stefan Lindgren Barbara Braden Roger W. Chapman Kirsten M. Boberg Paul Angulo 2008Gastroenterology2008,,4:1
2Emulsification through Surfactant Hydration: The PIC Process Revisited 显示文摘ROGER K CABANE B OLSSON U 2010Langmuir2010,27,2:1
3Seamless integration of bioelectronic interface in an animal model via in vivo polymerization of conjugated oligomers显示文摘Leveraging the biocatalytic machinery of living organisms for fabricating functional bioelectronic interfaces,in vivo,defines a new class of micro-biohybrids enabling the seamless integration of technology with living biological systems.Previously,we have demonstrated the in vivo polymerization of conjugated oligomers forming conductors within the structures of plants.Here,we expand this concept by reporting that Hydra,an invertebrate animal,polymerizes the conjugated oligomer ETE-S both within cells that expresses peroxidase activity and within the adhesive material that is secreted to promote underwater surface adhesion.The resulting conjugated polymer forms electronically conducting and electrochemically activeμm-sized domains,which are inter-connected resulting in percolative conduction pathways extending beyond 100μm,that are fully integrated within the Hydra tissue and the secreted mucus.Furthermore,the introduction and in vivo polymerization of ETE-S can be used as a biochemical marker to follow the dynamics of Hydra budding(reproduction)and regeneration.This work paves the way for well-defined self-organized electronics in animal tissue to modulate biological functions and in vivo biofabrication of hybrid functional materials and devices.Giuseppina Tommasini Gwennael Dufil Federica Fardella Xenofon Strakosas Eugenio Fergola Tobias Abrahamsson David Bliman Roger Olsson Magnus Berggren Angela Tino Eleni Stavrinidou Claudia Tortiglione 2022Bioactive Materials2022,7,4:0
4A Dual-Promoter Gene Orchestrates the Sucrose-Coordinated Synthesis of Starch and Fructan in Barley显示文摘因为它在植物个体发生和复制期间为生长和开发保证精力供应,顺序的糖类合成为植物幸存是重要的。淀粉和 fructan 是在许多 flowering 植物并且在人的食谱的二个重要糖类。理解这协调淀粉和 fructan 合成并且解开植物怎么分配 photosynthates 并且为幸存优先考虑不同糖类合成,能为更大的食物的目的在农业导致改进到谷物 ? 安全和生产质量。这里,我们在大麦从单个基因报导一个系统 ? 雇用二个其他的倡导者,一 intronic/exonic,产生二个重叠顺序却机能上地反对的抄写因素在察觉到蔗糖,潜在地经由 sucrose/glucose/fructose/trehalose 6 磷酸盐发信号。系统在在一个倡导者上察觉一项控制蔗糖的 trans 活动并且安排采用自动调整的机制 ? 由另外的倡导者上的竞争抄写因素绑定的协调淀粉和 fructan 合成。作为在为系统的生理的角色的点的一个案例,我们证明了这个多任务系统能在与 fructan 的定制的数量引起大麦生产健康食物成分被利用。在招待基因的一个 intron/exon-spanning 倡导者的鉴定,与不同功能导致蛋白质,增加植物染色体的复杂性。Yunkai Jin Mingliang Fei Sara Rosenquist Lu Jin Suresh Gohil Corine Sandstrom Helena Olsson Cecilia Persson Anna-Stina Hoglund Gunnel Fransson Ying Ruan Per Aman Christer Jansson Chunlin Liu Roger Andersson Chuanxin Sun 2017Molecular Plant2017,10,12:0
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