Remove Gene Remove Gene Expression Remove In-Vivo Remove RNA
article thumbnail

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.

article thumbnail

Advances in Genetic Medicine May Be Outpacing Some Clinicians’ Understanding, But Pharmaceutical Marketers Can Do Much to Address the Problem

Pharma Marketing Network

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.

Insiders

Sign Up for our Newsletter

This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.

article thumbnail

Cell-penetrating peptides as a delivery system for oligonucleotides

Drug Discovery World

Oligonucleotides act on the RNA level through different molecular pathways, but there is a major drawback when using them as drugs: their poor bioavailability and cellular uptake. This method is generally used to deliver small interfering RNA (siRNA), but it can also be used for larger oligonucleotides too. Oligonucleotide. Anti-miRNA.

article thumbnail

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
article thumbnail

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. Transcriptionally active’ cells in which HIV RNA is actively transcribed to make copies of the virus (despite long-term ART).

RNA 52
article thumbnail

Delivering on the promise of gene editing

Drug Discovery World

As gene editing technologies like CRISPR progress toward clinical study, researchers must continue to advance new approaches and address inherent challenges, explains Jon Chesnut, PhD, Senior Director, Cell Biology R&D, Thermo Fisher Scientific. Early phase clinical trials for gene editing therapies.

article thumbnail

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