5 Results for "

CRISPR/Cas gene editing

" in MedChemExpress (MCE) Product Catalog:
Products (5)

5 Results for "CRISPR/Cas gene editing" in MCE Product Catalog:

Cat. No.: HY-159078
CAS No.: 2607139-80-8
Purity:  98.42%
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

PolQi1 is a selective inhibitor targeting the Polθ domain of DNA polymerase. PolQi1 inhibits the Polθ-mediated microhomology end joining (TMEJ/alt-EJ) pathway, reducing insertion/deletion (Indels) and imprecise editing events during DNA repair. PolQi1 can enhance the efficiency and accuracy of homology-directed repair (HDR) or Prime editing, and reduce off-target effects; and in combination with DNA-PK inhibitor AZD-7648 (HY-111783), exert efficient genome editing capabilities with dual pathway regulation. PolQi1 can be mainly used in gene editing research (such as CRISPR-Cas9 or Prime editing system optimization) to improve the precision editing efficiency of difficult-to-edit cells (such as primary hepatocytes and mouse embryos) .
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Cat. No.: HY-159709
CAS No.: 2765519-47-7
Target:  

Liposome

Research Areas:  

Metabolic Disease

VL-422 is an ionizable cationic lipid. VL-422 delivers CRISPR complementary single-guide RNA (sgRNA) and Cas9 mRNA to enable in vitro and in vivo gene editing. LNPs containing VL-422 loaded with Cas9 mRNA and sgRNA targeting the ANGPTL3 gene induce the deletion of premature stop codons within the ANGPTL3 gene in the liver of cynomolgus monkeys. Loss-of-function of ANGPTL3 leads to decreased levels of LDL, HDL and cholesterol in plasma. The VL-422 delivery system can be used for the research of gene editing strategies targeting lipid metabolism diseases .
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Cat. No.: HY-171953
CAS No.: 3097638-13-3
Target:  

Liposome

Research Areas:  

Others

THP1 Lipid is an ionizable lipidoid. THP1 Lipid can be used to synthesize lipid nanoparticles (LNPs) for delivering mRNA to muscles with minimal toxicity and editing genes in specific liver tissues in tdTomato transgenic mice model. THP1 Lipid can be used for vaccine delivery and CRISPR/Cas9-mediated gene editing research .
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Cat. No.: HY-165604
CAS No.: 2639634-82-3
Target:  

Liposome

Research Areas:  

Others

C14-490 is an ionizable cationic lipid used for the formulation of lipid nanoparticles (LNPs) for mRNA delivery. C14-490 LNPs can be surface-functionalized with CD45 antibodies to enable targeted delivery to hematopoietic stem cells (HSCs), mediate efficient mRNA delivery and CRISPR-Cas9 gene editing in fetal HSCs in utero, with potent and durable genome modulation in HSCs and their progeny. C14-490 is a key component of the Systematically optimized Targeted Editing Machinery (STEM) LNPs for in vivo HSC gene editing applications .
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Cat. No.: HY-L244
761 compounds

In this era of rapid advancement in gene-editing technology, the CRISPR-Cas system, with its powerful programmability, is leading a transformation in life sciences research. It enables efficient and precise targeted modification of an organism's genome, providing a robust tool for studying gene function, treating genetic diseases, and improving crop varieties. However, bottlenecks such as insufficient editing efficiency, low homologous directed repair efficiency, and potential off-target risks remain major challenges in achieving precise genetic modifications and developing gene therapies.

To overcome these limitations, the MCE High-Efficiency Gene Editing Compound Library systematically includes 761 small molecules that are known or have the potential to enhance gene-editing efficiency. These compounds work by targeting and modulating the DNA damage repair network, mechanistically inhibiting non-homologous end joining, promoting homologous directed repair, or regulating chromatin states and cellular responses, thereby significantly optimizing editing outcomes. This library is suitable for developing "CRISPR-small molecule" combination therapy strategies, improving gene-editing efficiency, and providing a powerful tool for in-depth research into the mechanisms of DNA damage repair in gene editing.