Synonymer & Anagram | Engelska ordet SIRNA
SIRNA
Antal bokstäver
5
Är palindrom
Nej
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Exempel på hur man kan använda SIRNA i en mening
- RNA silencing is often a function of these molecules, with the most common and well-studied example being RNA interference (RNAi), in which endogenously expressed microRNA (miRNA) or exogenously derived small interfering RNA (siRNA) induces the degradation of complementary messenger RNA.
- Gene silencing is considered a gene knockdown mechanism since the methods used to silence genes, such as RNAi, CRISPR, or siRNA, generally reduce the expression of a gene by at least 70% but do not eliminate it.
- Small interfering RNA (siRNA), sometimes known as short interfering RNA or silencing RNA, is a class of double-stranded non-coding RNA molecules, typically 20–24 base pairs in length, similar to microRNA (miRNA), and operating within the RNA interference (RNAi) pathway.
- Using single-stranded RNA (ssRNA) fragments, such as microRNA (miRNA), or double-stranded small interfering RNA (siRNA), the complex functions as a key tool in gene regulation.
- Sigma Life Science provides products such as custom DNA/RNA oligos; custom DNA and LNA probes; siRNA; isotopically-labelled peptides and peptide libraries.
- dsRNA, such as viral RNA or siRNA, can trigger RNA interference in eukaryotes, as well as interferon response in vertebrates.
- GalNAc is also used as a targeting ligand in investigational antisense oligonucleotides and siRNA therapies targeted to the liver, where it binds to the asialoglycoprotein receptors on hepatocytes.
- Knocking down ARF with siRNA to exon 1β results in increased rRNA transcripts, rRNA processing, and ribosome nuclear export.
- It is used to increase the transfection efficiency of RNA (including mRNA and siRNA) or plasmid DNA into in vitro cell cultures by lipofection.
- RNA-induced transcriptional silencing (RITS) is a form of RNA interference by which short RNA molecules – such as small interfering RNA (siRNA) – trigger the downregulation of transcription of a particular gene or genomic region.
- At least three primary classes of small RNA have currently been identified, namely: small interfering RNA (siRNA), microRNA (miRNA), and piwi-interacting RNA (piRNA).
- Cystamine dihydrochloride is a useful reagent to derivatize various polymer monoliths for hydrophilic interaction liquid chromatography, as a crosslinking agent in the development of polymer hydrogels, and as a functional group in nanoparticles developed for siRNA and DNA delivery.
- esiRNA or Endoribonuclease-prepared siRNAs are a mixture of siRNA oligos resulting from cleavage of long double-stranded RNA (dsRNA) with an endoribonuclease such as Escherichia coli RNase III or Dicer.
- Several optimized and efficient magnetic nanoparticle formulations have been specifically developed for several types of applications such as DNA, siRNA, and primary neuron transfection as well as viral applications.
- Targeting of centrin, pericentrin and ninein was also dramatically reduced after PCM1 depletion using siRNA, overexpression of PCM1 deletion mutants and PCM1 antibody microinjection.
- Research is showing that SMURF1 plays a role in neuronal necroptosis whereby the up-regulation of Smurf1 was observed in the brain cortex of adult rats who experienced neuroinflammation, and Smurf1 knockdown with siRNA inhibited neuronal necroptosis.
- Many drug delivery systems carrying large molecule drugs, such as antisense oligonucleotides, siRNA, peptides, and therapeutic proteins, are engineered to be pH-responsive, and disrupt the endosomal membrane because of the lower pH found within progressively acidifying endosomes.
- Infected with adeno-associated vectors carrying the siRNA to silence the mutant Mhy6 gene, inhibited expression of R403Q myosin postponed development of HCM for 6 months.
- Dharmacon has become an important resource for those investigating the mechanisms of siRNA (small interfering RNA)-induced gene knockdown and applying the specificity and potency of RNAi to human biotherapeutics.
- An animal model of thyroid hormone (T3)-induced cardiac hypertrophy showed that T3 rapidly reduced levels of M-protein; and siRNA reduction of M-protein in neonatal cardiomyocytes showed that the absence of M-protein causes significant contractile dysfunction (77% reduction in contraction velocity), thus illuminating the importance of M-protein for normal sarcomere function.
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