Additional information
| Variety | RF-DTSC-10 |
|---|---|
| Size | 10 columns |
$450.00
mRNASpin™ Poly(A) Purification Kit
mRNASpin™ Poly(A) Purification Kit is a spin-column-based solution designed for the rapid and selective isolation of polyadenylated RNA from total RNA or in vitro transcription (IVT) reactions. Using a silica-based matrix optimized for poly(A) RNA capture, the kit enables efficient enrichment of full-length mRNA while depleting ribosomal RNA, tRNA, genomic DNA, and residual proteins. The kit is ideal for applications requiring high-purity mRNA, including expression studies, in vitro translation, sequencing library preparation, and formulation development.
| Variety | RF-DTSC-10 |
|---|---|
| Size | 10 columns |
Lbu Cas13 (Leptotrichia buccalis Cas13a) is an RNA-guided RNase from the CRISPR-Cas Type VI system, ideal for RNA targeting, detection, and knockdown applications.
Cas9 mRNA encodes the Streptococcus pyogenes CRISPR-associated protein 9 (SpCas9), a programmable endonuclease essential for precise genome editing via the CRISPR/Cas9 system.
RNAStore-X™ Solution
RNAStore-X™ Solution is a purpose-designed aqueous formulation developed to maintain the structural integrity of purified RNA during short- and long-term storage. Unlike conventional nucleic acid buffers that are optimized for DNA, RNAStore-X™ Solution provides a chemically controlled environment that reduces spontaneous hydrolysis and metal-mediated degradation, helping preserve RNA quality over time. This solution is intended for resuspension and storage of isolated RNA after purification and before downstream molecular applications.
ΨTP (Pseudouridine-5′-
mRNABind™ Magnetic Beads are designed for rapid, selective capture of polyadenylated mRNA using streptavidin-biotin chemistry. Pre-functionalized with biotinylated oligo(dT), these magnetic beads efficiently bind poly(A)+ RNA from total RNA extracts or in vitro transcription reactions. The magnetic format enables easy separation and washing using standard magnetic racks, providing a fast and reproducible method for mRNA enrichment suitable for downstream applications.
Beta-galactosidase mRNA: The enzyme beta-galactosidase (E.coli lacZ gene) typically converts lactose substrate into glucose and galactose. However, derivatives of lactose like X-gal, o-nitrophenyl b-D-galactopyranoside, Galacto-Light Plus™ and others lead to colorimetric or chemiluminescence products, which have numerous applications in cancer, biodistribution and imaging studies.
m1ΨTP (N1-Methyl-Pseudouridine-5′-
ATP (Adenosine-5′-Triphosphate), 100mM