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Small RNAs in Cancer Therapy
Yufei Pan
, Quanxin Wang
, Yuan Ma
*
*
Corresponding author for this work
Chinese Medicine - Teaching and Research Division
Institute for Advancing Translational Medicine in Bone and Joint Diseases
HKBU and IncreasePharm Joint Centre for Nucleic Acid Drug Discovery
Research output
:
Chapter in book/report/conference proceeding
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Chapter
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peer-review
Overview
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Dive into the research topics of 'Small RNAs in Cancer Therapy'. Together they form a unique fingerprint.
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Keyphrases
Small Interfering RNA (siRNA)
100%
Cancer Therapy
100%
In Cancer
100%
Tumorigenesis
40%
Molecular Mechanism
20%
Liver
20%
Precision Medicine
20%
Aptamer
20%
Metabolic Disease
20%
Therapeutic Agents
20%
Cancer Treatment
20%
MicroRNA
20%
Chemical Modification
20%
Gene Regulation
20%
Tumor Development
20%
Gene Therapy
20%
Plethora
20%
Treatment Strategy
20%
Remaining Challenges
20%
Antisense Oligonucleotides
20%
Modification Strategies
20%
Neuromuscular Disease
20%
Gene Inhibition
20%
Multi-omics Integration
20%
Oncologic
20%
Ocular Diseases
20%
Improved Patient Outcomes
20%
Medicine and Dentistry
Cancer Therapy
100%
Carcinogenesis
66%
Diseases
33%
Therapeutic Agent
33%
Gene Expression
33%
Neoplasm
33%
microRNA
33%
Small Interfering RNA
33%
Aptamer
33%
Personalized Medicine
33%
Neuromuscular Disease
33%
Antisense Oligonucleotide
33%
Metabolic Liver Disease
33%
Play Therapy
33%
Eye Disease
33%
Multi-Omics
33%
Pharmacology, Toxicology and Pharmaceutical Science
Malignant Neoplasm
100%
Diseases
66%
Carcinogenesis
66%
Small Interfering RNA
33%
Neoplasm
33%
Aptamer
33%
Tamsulosin
33%
Clinical Study
33%
microRNA
33%
Preclinical Study
33%
Antisense Oligonucleotide
33%
Neuromuscular Disease
33%
Eye Disease
33%
Biochemistry, Genetics and Molecular Biology
Small RNAs
100%
Carcinogenesis
50%
Gene Expression
25%
Aptamer
25%
Tamsulosin
25%
MicroRNA
25%
Oligonucleotide
25%
Antisense
25%
Preclinical Study
25%
Small Interfering RNA
25%
Immunology and Microbiology
Ribonucleic Acid
100%
Gene Expression
20%
Antisense
20%
Preclinical Study
20%
Multi-Omics
20%