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By taking advantage of current knowledge in cancer biology and virology, specific OVs have been genetically engineered to target specific molecules or signal transduction pathways in cancer cells in order to achieve efficient and selective replication.
Viruses can be engineered to target specific bacteria.
Plants were also engineered to target the sensor proteins specifically to the cell nucleus.
For example, a custom meganuclease was engineered to target an endogenous sequence in maize [ 34].
The porous silicon is treated with a liquid that contains probe molecules engineered to bind to fat molecules found on the surface of specific bacteria.
Since the first protein therapeutics were approved two decades ago, the field has seen a transition from the development of naturally occurring proteins to design of molecules engineered for optimal target recognition, pharmacokinetics, biodistribution, and therapeutic function.
Could cytokine delivery be engineered to be targeted and more effective?
Ribozymes are enzymatic RNA molecules that can be engineered to cleave specifically a target RNA sequence and are thus applicable to target viral RNA to inhibit viral replication.
Antibody fragments are being engineered to achieve rapid targeting and rapid blood clearance [ 16].
RNA and DNA molecules can be engineered to function as molecular switches that trigger catalytic events when a specific target molecule becomes bound.
The phages were genetically engineered to display a target-cell specificity-conferring molecule, up to 5 targeting molecules/phage if displayed on all copies of the phage g3p coat protein.
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CEO of Professional Science Editing for Scientists @ prosciediting.com