Remove Gene Expression Remove Genetics Remove In-Vivo Remove RNA
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Advances in Genetic Medicine May Be Outpacing Some Clinicians’ Understanding, But Pharmaceutical Marketers Can Do Much to Address the Problem

Pharma Marketing Network

Almost two decades after the human genome was sequenced, a trickle of new genetic medicines (i.e., those that modify the expression of an individual’s genes or repair abnormal genes) has entered clinical practice, including 11 RNA therapeutics, 2 in vivo gene therapies, and 2 gene-modified cell therapies.

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

XTalks

In recent webinars by Genuity Science, formerly known as WuXi NextCODE, experts from the biotech and pharma industries spoke about leveraging the power of single cell RNA sequencing platforms and solutions in conjunction with machine learning technologies such as AI in cell biology and disease research. The Power of Single Cell Technology.

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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

Angelman syndrome (AS) is a complex genetic rare disorder that affects the nervous system. 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.

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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.

Gene 40
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Delivering on the promise of gene editing

Drug Discovery World

Gene editing tools such as zinc finger nucleases, transcription activator-like effector nucleases (TALEN) and clustered regularly interspaced short palindromic repeat (CRISPR) nucleases have been heralded for their enormous potential to treat diseases and genetic disorders. In one example, Choi et al.

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CRISPR breakthroughs: New solutions for common diseases

Drug Discovery World

Since its discovery in 2012, CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats) technology has revolutionised the biomedicine and cell and gene therapy fields, providing a versatile tool for precise and efficient genome editing.

DNA 98
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The use of base editing in stem-cell based therapies

Drug Discovery World

Increasing interest in CRISPR-Cas gene editing systems over recent years has delivered innovative developments in precision genome engineering technologies, holding enormous potential for applications across the healthcare sector.