- Oligonucleotides
- Nucleoside Analogs
- Adenosine
Adenosine
-
Adenosine (283)
- Formula: C10H14N6O4
- Molecular Weight: 282.26
N6-Aminoadenosine is an adenosine analogue. Adenosine analogs mostly act as smooth muscle vasodilators and have also been shown to inhibit cancer progression. The popular products in this series are adenosine phosphate, Acadesine (HY-13417), Clofarabine (HY-A0005), Fludarabine phosphate (HY-B0028) and Vidarabine (HY-B0277).
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- Formula: C15H22N6O4
- Molecular Weight: 350.37
2-Amino-N-(3-methyl-2-buten-1-yl)adenosine is an adenosine analogue. Adenosine analogs mostly act as smooth muscle vasodilators and have also been shown to inhibit cancer progression. The popular products in this series are adenosine phosphate, Acadesine (HY-13417), Clofarabine (HY-A0005), Fludarabine phosphate (HY-B0028) and Vidarabine (HY-B0277).
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- Formula: C12H18N6O4
- Molecular Weight: 310.31
2-Methylamino-N6-methyladenosine 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: C11H12F3N5O4
- Molecular Weight: 335.24
2-Trifluoromethyl adenosine 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: C12H16FN5O3
- Molecular Weight: 297.29
2’-Fluoro-2’-deoxy-N6,N6-dimethylarabinoadenosine 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: C11H14FN5O3
- Molecular Weight: 283.26
2’-Fluoro-2’-deoxy-N6-methylarabinoadenosine 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: C10H12ClN5O4
- Molecular Weight: 301.69
8-Chloro-arabinoadenosine 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: C13H19N5O4
- Molecular Weight: 309.32
N6,N6-Dimethyl-3’-beta-C-methyl- adenosine is an adenosine analogue. Adenosine analogs mostly act as smooth muscle vasodilators and have also been shown to inhibit cancer progression. The popular products in this series are adenosine phosphate, Acadesine (HY-13417), Clofarabine (HY-A0005), Fludarabine phosphate (HY-B0028) and Vidarabine (HY-B0277).
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- Formula: C11H14FN5O3
- Molecular Weight: 283.26
3’-Deoxy-3’-fluoro-N6-methyladenosine 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: C13H19N5O4
- Molecular Weight: 309.32
N,N-Dimethyl-2′-O-methyladenosine 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: C10H12N8O3
- Molecular Weight: 292.25
3’-Azido-3’-deoxy-beta-L-adenosine 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-beta-L-adenosine 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: C10H11N5O3
- Molecular Weight: 249.23
2′,3′-Anhydroadenosine 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: C12H16FN5O3
- Molecular Weight: 297.29
3’-Deoxy-3’-fluoro-N6,N6-dimethyladenosine 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: C12H13N5O4
- Molecular Weight: 291.26
1,N6-Etheno-9-(β-D-xylofuranosyl)adenosine 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: C16H27N5O4Si
- Molecular Weight: 381.50
2’-O-t-Butyldimethylsilyladenosine is a adenosine analog. Adenosine analogs mostly act as smooth muscle vasodilators and have also been shown to inhibit cancer progression. Its popular products are adenosine phosphate, Acadesine (HY-13417), Clofarabine (HY-A0005), Fludarabine phosphate (HY-B0028) and Vidarabine (HY-B0277).
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- Formula: C11H14N4O2
- Molecular Weight: 234.25
7-Deaza-2',3'-dideoxyadenosine can be used in the synthesis of oligodeoxyribonucleotides.
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- Formula: C11H13IN4O2
- Molecular Weight: 360.15
7-Iodo-2',3'-dideoxy-7-deazaadenosine is a dideoxynucleoside that can be used in DNA synthesis and sequencing reactions.
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- Formula: C10H12Li4N5O13P3
- Molecular Weight: 530.91
8-Oxo-dATP lithium, as an oxidized purine nucleoside triphosphate, is hydrolyzed by MTH1 into monophosphates, thereby preventing errors caused by its misincorporation during DNA replication or transcription.
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- Formula: C17H19N5O5
- Molecular Weight: 373.36
N6-Benzoyl-2'-deoxyadenosine monohydrate is a nucleoside analog that is used in the diagnosis of infections caused by bacteria by binding to DNA duplexes and altering their structure, which can be detected using electrophoresis.
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