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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of a thrombin-RNA (ribonucleic acid) aptamer complex Aptamers are a special class of nucleic acids that can bind proteins or other cellu
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Gene therapy research Researcher in a protective suit handling DNA vectors inside a level 3 biosafety laboratory DNA vectors are entities such as v
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Viral gene therapy illustration
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Viral gene therapy illustration
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Viral gene therapy illustration
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Adenovirus illustration
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Illustration of a liposome containing an adenovirus particle for use as gene therapy by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of an adenovirus particle by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of an adenovirus particle by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of adenovirus particles for gene therapy by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of adenovirus particles for gene therapy by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of adenovirus particles for gene therapy by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of adenovirus particles for gene therapy by THOM LEACH SCIENCE PHOTO LIBRARY
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Illustration of a complete (left) and cross-sectional (right) view of a liposome (pink) containing DNA (deoxyribonucleic acid turquoise) used for gen
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Illustration of a complete (left) and cross-sectional (right) view of a liposome (orange and white) containing DNA (deoxyribonucleic acid cyan) used
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Cut-away illustration of a liposome (blue and white sphere) containing DNA (deoxyribonucleic acid orange) used for gene therapy or as a vaccine by
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Illustration of a complete (left) and cross-sectional (right) view of a liposome containing DNA (deoxyribonucleic acid) used for gene therapy or as a
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Conceptual illustration of liposomes containing DNA (deoxyribonucleic acid) used in gene therapy or as a vaccine by THOM LEACH SCIENCE PHOTO LIBR
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Conceptual illustration of liposomes containing DNA (deoxyribonucleic acid) used in gene therapy or as a vaccine by THOM LEACH SCIENCE PHOTO LIBR
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Liposome containing DNA illustration
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Cut-away illustration of a liposome (blue and white sphere) containing DNA (deoxyribonucleic acid orange) used for gene therapy or as a vaccine by
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Cut-away illustration of a liposome (blue and white sphere) containing DNA (deoxyribonucleic acid orange) used for gene therapy or as a vaccine by
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Cut-away illustration of a liposome (blue and white sphere) containing DNA (deoxyribonucleic acid orange) used for gene therapy or as a vaccine by
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Aptamer bound to anticancer drug illustration
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Conceptual illustration showing a researcher carrying a gene into a cancer cell This could represent cancer gene therapy in which the DNA (deoxyribon
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Conceptual illustration showing a researcher and a cancer cell with a target This could represent targeted therapies made to destroy cancer cells or
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Viral Apoptosis SEM
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HIV SEM
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HIV SEM
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HIV SEM
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HIV SEM
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Viral Apoptosis SEM
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HIV SEM
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HIV SEM
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Viral Apoptosis SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Influenza B SEM
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Flu SEM
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Flu SEM
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Flu SEM
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Illustration of a copper-containing synthetic DNA (deoxyribonucleic acid) complex Such complexes could be used to deliver therapeutic genes or drugs
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STING complexed with agonist SHR171032 illustration
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STING complexed with agonist SHR171032 illustration
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Influenza B virus SEM
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Influenza B virus SEM
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Influenza B virus SEM
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Influenza B virus SEM
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Influenza B virus SEM
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HIV SEM
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HIV SEM
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HIV SEM
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HIV SEM
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Illustration of the CRISPRCas system The CRISPRCas (pink) system has reinvented the field of genome editing as it offers a simple and versatile way
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SIV infected cell SEM
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100 biology icons set outline style
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Cell therapy conceptual composite SEM
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Illustration of a nanorobot Nanotechnology is concerned with producing mechanical entities on the same scale as atoms and molecules where size is me
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Human retinal organoid fluorescent light micrograph This organoid was made in a laboratory using a patients cells Organoids are miniature simplifi
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UK Buckinghamshire High Wycombe Scientist holding multiwell plate and pipette
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UK Buckinghamshire High Wycombe Scientist holding vial
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Stem Cell Research Nuclear transfer being carried out on several embryonic stem cells used in cloning and genetic modification
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Illustration of an adenovirus particle in a clathrin-coated vesicle the means by which it enters a human cell Adenoviruses are the largest viruses n
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Illustration of an adenovirus particle entering a cell Adenoviruses are the largest viruses not to have a protein coat covering their capsid The cap
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Adenovirus illustration
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Adenovirus illustration
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Stem Cell Research Nuclear transfer being carried out on several embryonic stem cells used in cloning and genetic modification
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Cell Research Pipetting sample into a petri dish of cells in the lab
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Cell Research Pipetting sample into a petri dish of cells in the lab
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Genetic Research Pipetting sample into a petri dish of cells
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Cell Research Pipetting sample into a petri dish of cells in the lab
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Cell Biology Pipetting sample into a petri dish containing cells
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Nuclear transfer being carried out on several embryonic stem cells
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Nuclear transfer being carried out on several embryonic stem cells
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Nuclear transfer being carried out on several embryonic stem cells
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
RF
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
RF
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Illustration of a thrombin-RNA (ribonucleic acid) aptamer complex Aptamers are a special class of nucleic acids that can bind proteins or other cellu
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
RF
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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Illustration of an aptamer drug Aptamers are a special class of nucleic acids that can bind proteins or other cellular targets and are potential drug
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