- Oligonucleotides
- Nucleoside Analogs
- Uridine
Uridine
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Uridine (436)
- Formula: C14H18F3N3O7
- Molecular Weight: 397.30
5-[3-[(Trifluoroacetyl)amino]propyl]uridine is a thymidine analogue. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis.
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- Formula: C11H16N2O7
- Molecular Weight: 288.25
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- Formula: C13H19N5O7
- Molecular Weight: 357.32
5-(Azidomethyl)-2’-O-(2-methoxyethyl)uridine is a thymidine analogue. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis. 5-(Azidomethyl)-2’-O-(2-methoxyethyl)uridine is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
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- Formula: C10H13N5O6
- Molecular Weight: 299.24
5-(Azidomethyl) arauridine is a thymidine analogue. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis. 5-(Azidomethyl) arauridine is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
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- Formula: C10H13FN2O6
- Molecular Weight: 276.22
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- Formula: C11H16N2O7
- Molecular Weight: 288.25
5-Hydroxymethyl-2’-β-C-methyluridine is a thymidine analogue. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis.
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- Formula: C13H20N2O8
- Molecular Weight: 332.31
5-Hydroxymethyl-2’-O-(2-methoxyethyl)uridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C10H14N2O7
- Molecular Weight: 274.23
5-Hydroxymethyl-arauridine is a thymidine analogue. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis.
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- Formula: C11H14F2N2O6
- Molecular Weight: 308.24
N1-(1,1-Difluoroethyl)pseudouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C13H20N2O7
- Molecular Weight: 316.31
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- Formula: C12H14N2O6
- Molecular Weight: 282.25
3’-β-C-Ethynyl-5-methyl uridine is a thymidine analog. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis. 3’-β-C-Ethynyl-5-methyl uridine is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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- Formula: C9H11N5O4S
- Molecular Weight: 285.28
3’-Azido-3’-deoxy-2-thiouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc. 3’-Azido-3’-deoxy-2-thiouridine is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
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- Formula: C9H11FN2O4S
- Molecular Weight: 262.26
2’-Deoxy-2’-fluoro-β-D-arabino-2-thiouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C15H23N3O8
- Molecular Weight: 373.36
5-N-Boc-aminomethyluridine is a thymidine analog. Analogs of this series have insertional activity towards replicated DNA. They can be used to label cells and track DNA synthesis.
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- Formula: C16H16N2O7
- Molecular Weight: 348.31
N1-Benzoyl pseudouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C12H18N2O7
- Molecular Weight: 302.28
N1-Ethoxymethyl pseudouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C9H12N2O5S
- Molecular Weight: 260.27
1-(β-D-Xylofuranosyl)-2-thiouracil is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C11H16N2O7
- Molecular Weight: 288.25
N1-Methoxymethyl pseudouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C13H20N2O6
- Molecular Weight: 300.31
N1-(2-Methyl)propyl pseudouridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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- Formula: C8H10FN3O5
- Molecular Weight: 247.18
3’-Deoxy-3’-fluoro-6-azauridine is a purine nucleoside analogue. Purine nucleoside analogs have broad antitumor activity targeting indolent lymphoid malignancies. Anticancer mechanisms in this process rely on inhibition of DNA synthesis, induction of apoptosis, etc.
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