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Your search keyword '"Veedu, Rakesh N."' showing total 23 results

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23 results on '"Veedu, Rakesh N."'

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1. Development of nucleic acid aptamer-based lateral flow assays: A robust platform for cost-effective point-of-care diagnosis.

2. A systematic investigation of key factors of nucleic acid precipitation toward optimized DNA/RNA isolation.

3. Nucleic Acid-Based Theranostics for Tackling Alzheimer's Disease.

4. Evaluation of anhydrohexitol nucleic acid, cyclohexenyl nucleic acid and d-altritol nucleic acid-modified 2'-O-methyl RNA mixmer antisense oligonucleotides for exon skipping in vitro.

5. Type 2 diabetes mellitus: limitations of conventional therapies and intervention with nucleic acid-based therapeutics.

6. Nucleic acid-based aptamers: applications, development and clinical trials.

7. Cleavage and protection of locked nucleic acid-modified DNA by restriction endonucleases.

8. Enzymatic incorporation of LNA nucleotides into DNA strands.

9. Consequences of Making the Inactive Active Through Changes in Antisense Oligonucleotide Chemistries.

10. Development of Cell-Specific Aptamers: Recent Advances and Insight into the Selection Procedures.

11. Computational Investigation of Locked Nucleic Acid (LNA) Nucleotides in the Active Sites of DNA Polymerases by Molecular Docking Simulations.

12. Selenomethylene Locked Nucleic Acid Enables Reversible Hybridization in Response to Redox Changes.

13. Nucleic Acid Aptamers Against Biotoxins: A New Paradigm Toward the Treatment and Diagnostic Approach.

14. Rapid One-Step Selection Method for Generating Nucleic Acid Aptamers: Development of a DNA Aptamer against α-Bungarotoxin.

15. Efficient Reverse Transcription Using Locked Nucleic Acid Nucleotides towards the Evolution of Nuclease Resistant RNA Aptamers.

16. Enzymatic synthesis of DNA strands containing α-L-LNA (α-L-configured locked nucleic acid) thymine nucleotides.

17. Development of Novel Chemically-Modified Nucleic Acid Molecules for Efficient Inhibition of Human MAPT Gene Expression.

18. Alpha-l-Locked Nucleic Acid-Modified Antisense Oligonucleotides Induce Efficient Splice Modulation In Vitro.

19. Efficient Epidermal Growth Factor Receptor Targeting Oligonucleotide as a Potential Molecule for Targeted Cancer Therapy.

20. Nucleic Acids.

21. Polymerase Chain Reaction and Transcription Using Locked Nucleic Acid Nucleotide Triphosphates.

22. Nanoparticles-assisted aptamer biosensing for the detection of environmental pathogens.

23. Three decades of nucleic acid aptamer technologies: Lessons learned, progress and opportunities on aptamer development.

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