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Botulinum toxin type A  In Vitro Transcribed mRNA-LNP
SG-MRNA-LNP-1915
Botulinum toxin type A In Vitro Transcribed mRNA-LNP
Source:The ORF of Botulinum toxin type A was cloned in our IVT vector and mRNA was prepared through in vitro transcription and purification. The purified mRNA was further encapsulated with LNP(DSPC:Cholesterol:DMG-PEG:SM102).
Alternative Names:Botulinum toxin type A
SKU:SG-MRNA-LNP-1915-DCPS
Product Name:Botulinum toxin type A In Vitro Transcribed mRNA-LNP(DSPC:Cholesterol:DMG-PEG:SM102)
Product Description:Botulinum toxin type A In Vitro Transcribed mRNA encapsulated with LNP(DSPC:Cholesterol:DMG-PEG:SM102)
SKU:SG-MRNA-LNP-1915-DCPS
Product Name:Botulinum toxin type A In Vitro Transcribed mRNA-LNP(DSPC:Cholesterol:DMG-PEG:SM102)
Product Description:Botulinum toxin type A In Vitro Transcribed mRNA encapsulated with LNP(DSPC:Cholesterol:DMG-PEG:SM102)
PROPERTIES
Cap:
m7GpppN
5'-UTR:
5' -untranslated region derived from human alpha-globin RNA with an optimized Kozak sequence
ORF:
Botulinum toxin type A
3'-UTR:
3' UTR comprising two sequence elements derived from the aminoterminal enhancer of split (AES) mRNA and the mitochondrial encoded 12S ribosomal RNA
Poly(A) Tail:
A 110-nucleotide poly(A)-tail consisting of a stretch of 30 adenosine residues, followed by a 10-nucleotide linker sequence and another 70 adenosine residues.
Modifications:
N1-methyl-pseudouridine
Neutral Lipid:
1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC)
Cholesterol:
Cholesterol
Lonizable Lipid:
1,2-dimyristoyl-rac-glycero-3-methoxypolyethylene glycol-2000 (PEG2000-DMG)
PEG-lipid:
Heptadecan-9-yl 8-((2-hydroxyethyl)(8-(nonyloxy)− 8-oxooctyl)amino)octanoate)(SM-102)
Storage:
-20 °C
Buffer:
PBS, pH7.4
Cryoprotectant:
Trehalose
Background

Gene Alias

Botulinum toxin type A

Background

Botulinum toxin type A is a purified form of botulinum toxin type A used to block acetylcholine release in the treatment of chronic sialorrhea, muscle spasticity, and dystonia, as well as in cosmetic applications. Botulinum toxin type A blocks neuromuscular transmission on motor or sympathetic nerve terminals, inhibiting the release of acetylcholine. Botulinum toxins have actions on various regions: the neuromuscular junction, autonomic ganglia, and both postganglionic sympathetic and parasympathetic nerve endings. The heavy chain of the toxin binds selectively at the presynaptic surface of cholinergic neurons in an irreversible fashion. After binding, the toxin-receptor complex is transported into the cell by endocytosis. The disulfide bond between the two chains is cleaved and the botulism toxin enters the cytoplasm. The light chain specifically interacts with SNAP-25 in the nerve terminals to block binding of acetylcholine vesicles with the cell membrane. SNAP-25 is required for successful binding and release of acetylcholine from vesicles in nerve endings.

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