Rolling Circle Amplification (RCA) : Toward New Clinical Diagnostics and Therapeutics /

Detalles Bibliográficos
Autor Corporativo: SpringerLink (Online service)
Otros Autores: Demidov, Vadim V. (Editor )
Formato: eBook
Lenguaje:English
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2016.
Edición:1st ed. 2016.
Materias:
Tabla de Contenidos:
  • Preface
  • Part 1. Improved DNA polymerases and new DNA and DNA/RNA ligases useful in RCA
  • 1. Improvement of φ29 DNA polymerase amplification performance by fusion of DNA binding motifs
  • 2. Preparation of circular templates by T4 RNA ligase 2 for rolling circle amplification of target microRNAs with high specificity and sensitivity
  • 3. Use of DNA CircLigase for direct isothermal detection of microbial mRNAs by RNA-primed rolling circle amplification and preparation of ø29 DNA polymerase not contaminated
  • Part 2. RCA-involving techniques with enhanced signal amplification
  • 4. Nicking enzyme-assisted branched-chain RCA reaction for cascade DNA amplification
  • 5. Combining isothermal amplification techniques: Coupled RCA-LAMP
  • Part 3. Emerging RCA diagnostics
  • 6. Detection of vascular disease-related single nucleotide polymorphisms in clinical samples using ramified rolling circle amplification
  • 7. Ultrasensitive isothermal detection of protein analytes using rolling circle amplification in micro-scale platforms
  • 8. Rolling circle amplification with padlock probes for in situ detection of RNA analytes
  • 9. PNA-assisted rolling circle amplification for detection of DNA marker sequences in human cells
  • 10. Sensor systems with magnetic and optomagnetic readout of rolling circle amplification products
  • Part 4. Prospective RCA-based therapeutics
  • 11. DNA nanoclews for stimuli-responsive anticancer drug delivery
  • 12. RCA-assisted self-assembled DNA origami nano-constructs as vehicles for cellular delivery of diagnostic probes and therapeutic drugs
  • 13. DeNAno: a novel multivalent affinity reagent produced by selection of RCA-generated DNA nanoparticle libraries
  • Index.