Remove Gene Expression Remove In-Vivo Remove Protein
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Gene editing: beyond the hype

pharmaphorum

Cutting edge’ is, for once, a truly apt description when it comes to gene editing – both because the field is pushing medicine into areas we might never have dreamed possible, and because these technologies involve literally cutting DNA at a specific point in the genome. Zinc fingers. billion in funding.

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Combining the Powers of Single Cell Sequencing and AI in Understanding Disease Biology and Drug Development

XTalks

The detailed complexity of these processes can be captured by creating models that combine correlates of gene and protein expression, providing insight into the molecular composition of tissues. Single cell sequencing has revolutionized the study of biological tissues and systems at the cellular and molecular level.

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Gene Switch: A Novel Platform for Switching Genes On and Off

Roots Analysis

Overview of Gene Switch The notion that genes might be turned on and off was discovered several decades ago when studies revealed that E. Gene switches are sites on genes where regulatory molecules can bind to trigger transcription process, leading to expression of a particular gene.

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Biologics – The Next Step in Revolutionary Medication

Roots Analysis

Biologics activate certain proteins or cells in your immune system to create specific responses to targets, while many conventional systemic drugs activate the entire immune system in a more generalized manner. It is worth mentioning that in vitro gene expression requires a suitable host for the production of a specific gene product.

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Angelman Syndrome Market: Insights Into The Recent Late-Stage Drug Failures And Novel Approaches To Treating This Rare Neurogenetic Disorder

Delveinsight

Usually, only a single copy of the gene is required that too from the mother, however, in cases of AS, either the child does not get any copy, or the child receives two copies – each from mother and father. Angelman syndrome (AS) is a complex genetic rare disorder that affects the nervous system.

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What the Glycome Can Tell Us About Persistent HIV Infection

XTalks

Studies have identified the presence of two types of HIV-infected CD4+ T cells: ‘Transcriptionally inactive’ cells that do not typically produce viral RNA or viral proteins. This may help explain why HIV is adequately controlled, but not eradicated, with current treatments. The research study was published in Cell Reports.

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