- Saccharides
- Nucleosides & Nucleotides
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Nucleosides & Nucleotides (2195)
- Formula: C15H23N5O14P2
- Molecular Weight: 559.32
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- Formula: C10H13N5O3S
- Molecular Weight: 283.31
6-Thio-2'-Deoxyguanosine is a nucleoside analogue that can be incorporated into de novo-synthesized telomeres by telomerase.
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- Formula: C10H20N5Na2O16P3
- Molecular Weight: 605.19
ATP (Adenosine 5'-triphosphate) disodium trihydrate is a central component of energy storage and metabolism in vivo. ATP disodium trihydrate provides the metabolic energy to drive metabolic pumps and serves as a coenzyme in cells. ATP disodium trihydrate is an important endogenous signaling molecule in immunity and inflammation. ATP disodium trihydrate can activate the NLRP3 inflammasome and induce IL-1β and chemokines secretion. ATP disodium trihydrate has anti-bacterial infection effects and can protect mice against bacterial infection in mice.
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- Formula: C10H12N4O6
- Molecular Weight: 284.23
Xanthosine is a nucleoside derived from xanthine and ribose. Xanthosine activates the AMPK/FoxO1/AKT/GSK3β signaling cascade. Xanthosine promotes cell proliferation and regulates blood glucose metabolism. Xanthosine increases milk production in cows and goats. Xanthosine is used in mammary stem cell and type 2 diabetes research.
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- Formula: C9H12N2O6
- Molecular Weight: 244.20
Pseudouridine is an isomer of uridine and the most abundant modified nucleoside in non-coding RNA. It fine-tunes and stabilizes regional structures in rRNA and tRNA, maintaining their functions in mRNA decoding, ribosome assembly, processing, and translation. Pseudouridine-modified tRNA fragments can inhibit aberrant protein synthesis and hold promise for research on myelodysplastic syndrome (MDS)-related leukemia..
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- Formula: C21H27N7NaO17P3
- Molecular Weight: 765.39
NADP sodium salt is the sodium salt form of NADP (HY-113325). NADP is a coenzyme involved in cellular electron transfer reactions in biological metabolism, which is alternately oxidized (NADP+) and reduced (NADPH), and can maintain cellular redox homeostasis and regulate many biological events, including cellular metabolism. NADPH is a universal electron donor that provides reducing ability for synthetic metabolic reactions and redox balance. NADPH plays a multifunctional role in regulating inflammation, redox homeostasis, and synthetic metabolism processes.
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- Formula: C9H14N3O8P
- Molecular Weight: 323.20
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- Formula: C10H11N5O4
- Molecular Weight: 265.23
Adenosine dialdehyde, a purine nucleoside analogue, is a potent inhibitor of S-Adenosylhomocysteine hydrolase (SAHH) (Ki=3.3 nM). Adenosine Dialdehyde exhibits potent anti-tumor activity in vivo and can be used for the cancer research.
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- Formula: C21H28N7O17P3.2Na
- Molecular Weight: 789.39
NADP disodium salt is the disodium salt form of NADP (HY-113325). NADP is a coenzyme involved in cellular electron transfer reactions in biological metabolism, which is alternately oxidized (NADP+) and reduced (NADPH), and can maintain cellular redox homeostasis and regulate many biological events, including cellular metabolism. NADPH is a universal electron donor that provides reducing ability for synthetic metabolic reactions and redox balance. NADPH plays a multifunctional role in regulating inflammation, redox homeostasis, and synthetic metabolism processes.
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- Formula: C9H16N2O6
- Molecular Weight: 248.23
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- Formula: C10H12Mg2N5O13P3
- Molecular Weight: 551.76
ATP (Adenosine 5'-triphosphate) dimagnesium is a central component of energy storage and metabolism in vivo. ATP dimagnesium provides the metabolic energy to drive metabolic pumps and serves as a coenzyme in cells. ATP dimagnesium is an important endogenous signaling molecule in immunity and inflammation. ATP dimagnesium can activate the NLRP3 inflammasome and induce IL-1β and chemokines secretion. ATP dimagnesium has anti-bacterial infection effects and can protect mice against bacterial infection in mice.
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- Formula: C10H13N5Na2O10P2
- Molecular Weight: 471.16
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- Formula: C5H6N2O2
- Molecular Weight: 126.11
Thymine, one of the four bases of DNA, is a substrate for rat liver dihydropyrimidine dehydrogenase (DPD), with a Km value of 2.2 μM, Ki of 24 μM (using 5-FU as the DPD substrate), and a specific activity of 0.68 nmol/min/mg.
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- Formula: C11H14N3Na4O15P3
- Molecular Weight: 613.12
N4-Acetylcytidine triphosphate sodium solution (100mM) is efficiently used as a substrate in T7 Polymerase-catalyzed in vitro transcription and it can be incorporated into multiple templates.
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- Formula: C11H15N5O4S
- Molecular Weight: 313.33
7-Methyl-6-thioguanosine (MESG) is a chromogenic substrate that can be converted to 7-methyl-6-thioguanine in the presence of purine nucleoside phosphorylase and inorganic phosphate. 7-Methyl-6-thioguanosine can be used to quantify inorganic phosphate. 7-Methyl-6-thioguanosine can also be used to determine the activities of purine nucleoside phosphorylase and protein phosphatases.
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- Formula: C10H13N5O5
- Molecular Weight: 283.24
8-Hydroxy-2'-deoxyguanosine is a critical biomarker of oxidative stress and carcinogenesis.
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- Formula: C10H14N2O6
- Molecular Weight: 258.23
N1-methyl-pseudouridine (1-Methylpseudouridine), a methylpseudouridine, outperforms 5 mC and 5 mC/N1-methyl-pseudouridine in translation. N1-methyl-pseudouridine in mRNA enhances translation through eIF2α-dependent and independent mechanisms by increasing ribosome density.
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- Formula: C10H17N2O15P3
- Molecular Weight: 498.17
N1-Methylpseudouridine-5′-triphosphate (1-Methylpseudouridine-5′-triphosphate) is a nucleobase-modified nucleotide, used for synthesizing mRNA with reduced immunogenicity and improved stability.
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- Formula: C10H15N3O5
- Molecular Weight: 257.24
5-Hydroxymethyl-2’-deoxycytidine (5hmdC) is an oxidation derivative of 5-methyl-2'-deoxycytidine (5-mdC) in DNA. 5-Hydroxymethyl-2’-deoxycytidine may serve as a marker of irreversibly damaged cells.
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