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  • 1
    Online Resource
    Online Resource
    Berlin, Heidelberg : Springer-Verlag Berlin Heidelberg
    UID:
    gbv_635986671
    Format: Online-Ressource , v.: digital
    Edition: Online-Ausg. Springer eBook Collection. Biomedical and Life Sciences Electronic reproduction; Available via World Wide Web
    ISBN: 9783642121685
    Series Statement: RNA Technologies
    Content: Innovation in biotechnology that combine molecular biology, cell biology, microfabrication and bioinformatics are moving nucleic acid technologies from futuristic possibilities into common laboratory and clinical procedures. They have potential to revolutionize biomedical research and medicine. Three variants of RNA technologies are known, namely antisense oligonucleotides, RNA interference, and ribozymes. In spite of different mechanisms of action, all of them are united by the common principle: an antisense preparation works after binding with RNA-target by forming a duplex. Today all three approaches are intensively used in vivo. RNA mediated gene silencing is a powerful technology to downregulate the expression of targeted genes within the cell. Now RNA interference based therapeutics is to be released. This book provides a state-of-the-art review concerning the molecular basis as well as applications of RNA based technologies in molecular biology and medicine.
    Note: Includes bibliographical references and index , RNA Technologies and Their Applications; Preface; Contents; Contributors; The Key Features of RNA Silencing; 1 Introduction; 2 RNA Silencing Effector as a Two-Component System; 3 Small RNA Biogenesis; 3.1 miRNAs and siRNAs; 3.2 Dicer-Independent Pathways; 3.2.1 piRNAs; 3.2.2 Secondary siRNAs in Worm; 3.3 Endo-siRNAs; 4 RISC Loading, Sorting, and Target-Sensing of Small RNAs; 4.1 Sorting by Precursor Structures; 4.2 Sorting by the 5 Ends; 4.3 Sorting by Dicer Processing Polarity; 4.4 Target-Sensing; 5 Safeguards for RNA Silencing Pathways; 6 Effector Modes of RNA Silencing Pathways , 7 Regulations of RNA Silencing Pathways7.1 Processing; 7.2 Modification; 7.3 RISC Activity; 8 Perspective; References; Selected Strategies for the Delivery of siRNA In Vitro and In Vivo; 1 Introduction; 2 Mechanism of RNA Interference; 3 Naked Delivery of siRNA In Vitro; 3.1 Cellular Uptake of Naked Nucleic Acids; 3.2 The Phosphorothioate-Stimulated Cellular Delivery of siRNA; 3.3 The siRNA-Peptide Conjugate Approach; 3.4 Intracellular Release of siRNA: A Major Hurdle; 4 CPP-Mediated siRNA Delivery; 4.1 Cell-Penetrating Peptides; 4.2 Selected Examples of CPP-Mediated siRNA Delivery , 5 Selected Examples of siRNA Delivery In Vivo6 Conclusions and Future Prospects; References; RNAi Suppression and Its Application; 1 RNA Interference; 2 RNAi-Directed Viral Immunity; 3 Identification and Function Characterization of Viral RNAi Suppressors; 3.1 Agrobacterium-Mediated Transient Suppression Assay; 3.2 Reversal of Transgene-Induced Gene Silencing; 3.3 Grafting Assay; 3.4 Replication Rescue of Mutant Viruses Defective in RNAi Suppression; 4 Function Mechanism of Viral RNAi Suppressors; 4.1 Viral Suppressors that Bind Viral dsRNA to Interfere with viRNA Biogenesis , 4.2 Viral Suppressors that Target Virus-Derived siRNA for RNAi Suppression4.3 Viral Suppressors that Target RNAi Effectors for Suppression; 4.4 Viral Suppressors that Suppress Systemic RNAi; 5 RNAi Suppressors of Nonviral Origin; 5.1 Suppression of RNAi by Bacterial Pathogens; 5.2 Cellular RNAi Suppressors; 6 Biotechnological Application of RNAi Suppressors; 6.1 Enhance Gene Expression for Rapid Function Analysis and Mass Production of Valuable Protein; 6.2 Serve as Molecular Tools to Probe Various RNAi-Directed Functions; Appendix; References , Strategies to Prevent siRNA-Triggered Cellular Toxicity1 Introduction; 2 Cellular Sensors of siRNA-Triggered Innate Immune Response; 2.1 TLR-Mediated Innate Immunity; 2.2 Non-TLR-Mediated Innate Immunity; 3 Cellular Sequels After siRNA-Triggered Innate Immune System Activation; 4 Overcoming Synthetic siRNA-Triggered Innate Immune Response; 5 Overcoming shRNA-Triggered Innate Immune Response; 6 shRNA-Mediated Disruption of the Endogenous miRNA Machinery; 7 Conclusions; References; RNAi in Malignant Brain Tumors: Relevance to Molecular and Translational Research; 1 Introduction , 1.1 Diagnostic Characteristics of Diffuse Astrocytic Tumor , Electronic reproduction; Available via World Wide Web
    Additional Edition: ISBN 9783642121678
    Additional Edition: Buchausg. u.d.T. RNA technologies and their applications Berlin : Springer, 2010 ISBN 9783642121678
    Language: English
    Subjects: Biology
    RVK:
    Keywords: RNS ; Molekulare Medizin ; Aufsatzsammlung
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    Berlin, Heidelberg :Springer Berlin Heidelberg :
    UID:
    almahu_9949419398502882
    Format: XVI, 452 p. 69 illus., 30 illus. in color. , online resource.
    Edition: 1st ed. 2010.
    ISBN: 9783642121685
    Series Statement: RNA Technologies,
    Content: RNA technologies are the driving forces of modern medicine and biotechnology. They combine the fields of biochemistry, chemistry, molecular biology, cell biology, physics, nanotechnology and bioinformatics. The combination of these topics is set to revolutionize the medicine of tomorrow. After more than 15 years of extensive research in the field of RNA technologies, the first therapeutics are ready to reach the first patients. Thus we are witnessing the birth of a very exciting time in the development of molecular medicine, which will be based on the methods of RNA technologies. This volume is the first of a series. It covers various aspects of RNA interference and microRNAs, although antisense RNA applications, hammerhead ribozyme structure and function as well as non-coding RNAs are also discussed. The authors are internationally highly respected experts in the field of RNA technologies.
    Note: The Key Features of RNA Silencing -- Selected Strategies for the Delivery of siRNA In Vitro and In Vivo -- RNAi Suppression and Its Application -- Strategies to Prevent siRNA-Triggered Cellular Toxicity -- RNAi in Malignant Brain Tumors: Relevance to Molecular and Translational Research -- Silencing Huntington's Disease Gene with RNAi -- Application of Dicer-Substrate siRNA in Pain Research -- RNAi Treatment of HIV-1 Infection -- Application of RNA Interference to Treat Conditions Associated with Dysregulation of Transient Receptor Potential Vanilloid 1 Channel -- Harnessing RNAi-Based Functional Genomics to Unravel the Molecular Complexity Underlying Skin Pigment Variation -- mRNA Structure and its Effects on Posttranscriptional Gene Silencing -- Antisense RNA-Mediated Regulation of the p53 Tumor Suppressor -- Antisense Oligonucleotides: Insights from Preclinical Studies and Clinical Trials -- What can the New Hammerhead Ribozyme Structures Teach us About Design? -- microRNA Biogenesis and its Impact on RNA Interference -- MicroRNAs in Epithelial Antimicrobial Immunity -- Emerging Roles of Long Noncoding RNAs in Gene Expression and Intracellular Organization -- Noncoding RNAs as Therapeutic Targets -- Noncoding RNAs at H19/IGF2 Locus: Role in Imprinting, Gene Expression, and Associated Pathologies.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9783642264900
    Additional Edition: Printed edition: ISBN 9783642121678
    Additional Edition: Printed edition: ISBN 9783642121692
    Language: English
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  • 3
    Book
    Book
    Berlin [u.a.] : Springer
    UID:
    kobvindex_ZLB15665795
    Format: XVI, 451 Seiten , Ill., graph. Darst.
    ISBN: 9783642121678
    Series Statement: RNA Technologies
    Note: Literaturangaben
    Language: English
    Keywords: RNS ; Molekulare Medizin ; Aufsatzsammlung ; Aufsatzsammlung ; Aufsatzsammlung
    Author information: Erdmann, Volker A.
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