CPGs for oligo synthesis

CALF Red 610 CPG (1000 Å)

Description: CALF Red 610 is a novel oxanthracene fluorescent dye designed for qPCR instruments. The attachment chemistry of CALF Red dyes to biomolecules eliminates the problem of multiple isomers, which results in dye labels that are easier to prepare. CALF dyes can be used in oligonucleotide synthesis in the form of CPG and phosphoramides, allowing for more efficient labeling and fewer purification steps than post-synthetic labeling. CALF dyes are sensitive to light, and prolonged exposure to light can cause photobleaching. CALF Red 610 has an excitation wavelength of 590 nm, an emission wavelength of 610 nm, a single RP-HPLC peak and a well-defined emission spectrum, and can be paired with BHQ-1 or BHQ-2 to achieve efficient quenching of various probe forms. The CAlF Red 610 is a replacement for Texas Red and ROX.
CAT: BRP-00475
Appearance: Red solid
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Synonyms: CAL Fluor Red 610 (1000 Å)

3'-(6-TAMRA) CPG (1000 Å)

Description: TAMRA's light absorption properties and spectral overlap with several commonly used fluorophores, including FAM, HEX, TET, and JOE, make it a FRET receptor for double-labeled FRET probes such as molecular beacons. TAMRA has been widely used for real-time PCR and other molecular diagnostic applications.
CAT: BRP-00477
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rC (Ac) CNA CPG

Description: rC (Ac) CNA CPG is a modification reagent used in molecular biology and biotechnology applications for oligonucleotide synthesis. It is designed to introduce a ribocytidine (rC) residue with an acetyl (Ac) group onto a controlled pore glass (CPG) solid support. The "CNA" designation indicates the presence of a 2'-O-methylribonucleotide modification, enhancing nuclease resistance and stability. This modification imparts specific chemical properties to the synthesized RNA oligonucleotides, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides have found applications in various research fields, including RNA interference (RNAi), gene expression regulation, and RNA-based therapies. Additionally, the CPG support aids in the solid-phase synthesis of oligonucleotides, enabling efficient and high-throughput production.
CAT: BRP-00487
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rU AMP CPG

Description: rU AMP CPG is a modification reagent used in oligonucleotide synthesis for molecular biology and biotechnology applications. It facilitates the introduction of a ribouridine (rU) residue onto a controlled pore glass (CPG) solid support. The "AMP" designation indicates that the ribouridine residue is modified with an adenosine monophosphate (AMP) group, enhancing stability and functionality. This modification allows for the synthesis of RNA oligonucleotides with specific chemical properties, suitable for various research areas including RNA interference, gene expression regulation, and RNA-based therapeutics. Additionally, the CPG support facilitates efficient and high-throughput solid-phase synthesis of oligonucleotides.
CAT: BRP-00488
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rG (iBu) CNA CPG

Description: rG (iBu) CNA CPG is a modification reagent used in oligonucleotide synthesis for molecular biology and biotechnology applications. It introduces a riboguanosine (rG) residue modified with an isobutyryl (iBu) group onto a controlled pore glass (CPG) solid support. The "CNA" designation indicates the presence of a 2'-O-methylribonucleotide modification, enhancing nuclease resistance and stability. This modification enables the synthesis of RNA oligonucleotides with increased resistance to degradation, suitable for various research areas such as RNA interference and gene regulation studies. Additionally, the CPG support facilitates efficient solid-phase synthesis of oligonucleotides.
CAT: BRP-00489
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rA (Pac) CNA CPG

Description: rA (Pac) CNA CPG is a modification reagent used in oligonucleotide synthesis for molecular biology and biotechnology applications. It introduces a riboadenosine (rA) residue modified with a pacidamycin (Pac) group onto a controlled pore glass (CPG) solid support. This modification enhances nuclease resistance and stability, enabling the synthesis of RNA oligonucleotides with improved durability. These modified RNA oligonucleotides are valuable tools in various research areas, including RNA interference and gene regulation studies. Additionally, the CPG support facilitates efficient solid-phase synthesis of oligonucleotides.
CAT: BRP-00490
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rC (Bz) CNA CPG

Description: rC (Bz) CNA CPG is a modification reagent used in oligonucleotide synthesis for molecular biology and biotechnology applications. It introduces a ribocytidine (rC) residue modified with a benzoyl (Bz) group onto a controlled pore glass (CPG) solid support. The "CNA" designation indicates the presence of a 2'-O-methylribonucleotide modification, enhancing nuclease resistance and stability. This modification enables the synthesis of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides find applications in various research areas, including RNA interference (RNAi), gene expression regulation, and RNA-based therapeutics. Additionally, the CPG support facilitates efficient solid-phase synthesis of oligonucleotides, allowing for high-throughput production.
CAT: BRP-00491
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rC (Bz), 2'-OAc CNA CPG

Description: rC (Bz), 2'-OAc CNA CPG is a modification reagent for oligonucleotide synthesis, incorporating a benzoyl (Bz) group onto ribocytidine (rC) residues. Additionally, it adds a 2'-O-acetyl modification to the ribose sugar and includes a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent enables the production of RNA oligonucleotides with improved nuclease resistance, suitable for various molecular biology and biotechnology applications such as RNA interference and gene expression studies.
CAT: BRP-00492
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rG (iPr-Pac), 2'-OAc CNA CPG

Description: rG (iPr-Pac), 2'-OAc CNA CPG is a modification reagent used in oligonucleotide synthesis. It introduces a riboguanosine (rG) residue modified with an isopropyl-pacidamycin (iPr-Pac) group onto a controlled pore glass (CPG) solid support. Additionally, it adds a 2'-O-acetyl modification to the ribose sugar and includes a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent facilitates the production of RNA oligonucleotides with improved nuclease resistance, suitable for diverse molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00493
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Storage: Store at -20 °C
Synonyms: iPr-Pac-G-RNA-CPG; 5'-Dimethoxytrityl-N-isopropyl-phenoxyacetyl-Guanosine, 2'-acetate-3'-succinoyl-long chain alkylamino-CPG; 2'-OAc iPr-Pac-G-RNA-CPG

rU, 2'-OAc CNA CPG

Description: rU, 2'-OAc CNA CPG is a modification reagent used in oligonucleotide synthesis. It introduces a ribouridine (rU) residue onto a controlled pore glass (CPG) solid support. Additionally, it adds a 2'-O-acetyl modification to the ribose sugar and includes a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent facilitates the production of RNA oligonucleotides with improved nuclease resistance, suitable for various molecular biology and biotechnology applications such as RNA interference and gene expression studies.
CAT: BRP-00494
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Storage: Store at RT
Synonyms: U-RNA-CPG; 5'-Dimethoxytrityl-Uridine, 2'-acetate-3'-succinoyl-long chain alkylamino-CPG; 2'-OAc U-RNA-CPG

rA (Bz) CNA CPG

Description: rA (Bz) CNA CPG is a modification reagent used in oligonucleotide synthesis. It incorporates a riboadenosine (rA) residue modified with a benzoyl (Bz) group into the oligonucleotide sequence. Additionally, it includes a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. The CPG designation indicates that it is compatible with controlled-pore glass solid supports for solid-phase synthesis. This reagent facilitates the production of modified RNA oligonucleotides with improved nuclease resistance, suitable for various molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00496
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rG (iBu), 2'-OAc CNA CPG

Description: rG (iBu), 2'-OAc CNA CPG is a modification reagent used in oligonucleotide synthesis. It introduces a riboguanosine (rG) residue modified with an isobutyryl (iBu) group onto a controlled pore glass (CPG) solid support. Additionally, it includes a 2'-O-acetyl modification to the ribose sugar and incorporates a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent enables the synthesis of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides find applications in various research areas, including RNA interference (RNAi), gene expression regulation, and RNA-based therapeutics.
CAT: BRP-00497
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rA (Ac), 2'-OAc CNA CPG

Description: rA (Ac), 2'-OAc CNA CPG is a modification reagent used in oligonucleotide synthesis. It introduces a riboadenosine (rA) residue modified with an acetyl (Ac) group onto a controlled pore glass (CPG) solid support. Additionally, it includes a 2'-O-acetyl modification to the ribose sugar and incorporates a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent enables the synthesis of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides find applications in various research areas, including RNA interference (RNAi), gene expression regulation, and RNA-based therapeutics.
CAT: BRP-00498
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Storage: Store at -20 °C
Synonyms: Ac-A-RNA-CPG; 5'-Dimethoxytrityl-N-acetyl-Adenosine, 2'-O-acetyl-3'-succinoyl-long chain alkylamino-CPG; 2'-OAc Ac-A-RNA-CPG

rG (Pac) CNA CPG

Description: rG (Pac) CNA CPG is a modification reagent utilized in oligonucleotide synthesis. It incorporates a riboguanosine (rG) residue modified with a pacidamycin (Pac) group onto a controlled pore glass (CPG) solid support. The "CNA" designation indicates the presence of a 2'-O-methylribonucleotide modification, enhancing nuclease resistance and stability. This reagent enables the synthesis of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides find applications in various research areas, including RNA interference (RNAi), gene expression regulation, and RNA-based therapeutics.
CAT: BRP-00499
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rG (Ac), 2'-OAc CNA CPG

Description: rG (Ac), 2'-OAc CNA CPG is a modification reagent used in oligonucleotide synthesis. It introduces a riboguanosine (rG) residue modified with an acetyl (Ac) group onto a controlled pore glass (CPG) solid support. Additionally, it includes a 2'-O-acetyl modification to the ribose sugar and incorporates a 2'-O-methylribonucleotide (CNA) modification for enhanced stability. This reagent facilitates the synthesis of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These modified RNA oligonucleotides find applications in various research areas, including RNA interference (RNAi), gene expression regulation, and RNA-based therapeutics.
CAT: BRP-00500
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Storage: Store at -20 °C
Synonyms: Ac-G-RNA-CPG; 5'-Dimethoxytrityl-N-acetyl-Guanosine, 2'-O-acetyl-3'-succinoyl-long chain alkylamino-CPG; 2'-OAc Ac-G-RNA-CPG

rG (iBu) AMP CPG

Description: rG (iBu) AMP CPG is a modification reagent used in oligonucleotide synthesis. It introduces a riboguanosine (rG) residue modified with an isobutyryl (iBu) group onto a controlled pore glass (CPG) solid support. Additionally, it includes an adenosine monophosphate (AMP) group, which serves as a linker between the nucleoside and the solid support. This reagent facilitates the efficient synthesis of modified RNA oligonucleotides with enhanced stability and functionality, suitable for various molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00501
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rC (Ac), 2'-OAc CNA CPG

Description: rC (Ac), 2'-OAc CNA CPG is a modification reagent employed in oligonucleotide synthesis. It introduces a ribocytidine (rC) residue modified with an acetyl (Ac) group onto a controlled pore glass (CPG) solid support. Additionally, it incorporates a 2'-O-acetyl modification to the ribose sugar and includes a 2'-O-methylribonucleotide (CNA) modification for heightened stability. This reagent facilitates the production of RNA oligonucleotides with specific chemical properties, such as increased resistance to nuclease degradation. These tailored RNA oligonucleotides are essential tools in diverse research areas, including RNA interference (RNAi), gene expression modulation, and RNA-based therapeutics.
CAT: BRP-00502
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Storage: Store at -20 °C
Synonyms: Ac-C-RNA-CPG; 5'-Dimethoxytrityl-N-acetyl-Cytidine, 2'-acetate-3'-succinoyl-long chain alkylamino-CPG; 2'-OAc Ac-C-RNA-CPG

rU AMP (M3) CPG

Description: rU AMP (M3) CPG is a modification reagent utilized in oligonucleotide synthesis. This modification enhances stability and functionality. It enables the production of RNA oligonucleotides with improved properties, suitable for various molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00503
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rU CNA CPG

Description: rU CNA CPG is a modification reagent utilized in oligonucleotide synthesis. This modification enhances stability and resistance to nuclease degradation. It enables the synthesis of RNA oligonucleotides with improved properties, suitable for various molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00504
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rA (Bz) AMP CPG

Description: rA (Bz) AMP CPG is a modification reagent used in oligonucleotide synthesis. This modification enhances stability and functionality. It facilitates the production of RNA oligonucleotides with improved properties, suitable for various molecular biology and biotechnology applications, including RNA interference and gene expression studies.
CAT: BRP-00505
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What are CPGs?

Controlled Pore Glasses (CPGs) are made of silica and are widely used in solid phase synthesis reactions of oligonucleotides. CPG spheres have many irregular pore channels and are pore size stable. For spatial reasons, large pore sizes are suitable for the synthesis of long fragments, and short pore sizes are suitable for the synthesis of short fragments. BOC Sciences offers a wide range of CPGs for oligonucleotide synthesis to choose from, with pore sizes ranging from 300 Å-5000 Å. Groups linked to CPGs include TAMRA, DMT-Phosphate, Fluorescein, Aminopropyl, etc.

Different pore size CPGs can be used to synthesize oligonucleotide products with different loadings:

(1) 500 Å/600 Å pore size CPG products are suitable for oligonucleotide synthesis of < 35 mers. For example, therapeutic oligonucleotides can be synthesized at loads up to 100 μmol/g.

(2) 1000 Å pore size CPG products for >35 mers or highly modified oligonucleotide synthesis.

(3) 2000 Å/3000 Å pore size CPG products, suitable for oligonucleotide synthesis on a scale of 80 mers or more, with synthetic loads typically ranging from 10 to 20 μmol/g.

Examples of CPGs

Because tetramethylrhodamine (TAMRA) is not base-stable, procedures for cleaving and deprotecting labeled oligonucleotides must be carefully considered. For example, to simplify the preparation of TAMRA oligonucleotides, 3'-TAMRA CPG for 3' labeling and TAMRA-dT for in-sequence labeling are available.

Fluorescein CPG is traditionally used to add fluorescein labeling to the 3'-end. For example, 3'-(6-FAM) CPG effectively blocks polymerase extension and exonuclease digestion at the 3'-end.

The phosphate functional group on the surface of DMT-Phosphate-CPG usually carries a DMT protecting group. DMT is a commonly used protecting group that protects the phosphate group from non-specific reactions during nucleotide synthesis. The DMT protecting group can be easily removed at the end of the synthesis to expose the phosphate group for further modification. CPGs have a pore size and pore structure that can be tuned similar to that of conventional CPGs. This controllable pore size facilitates efficient solid-phase synthesis of oligonucleotides and ensures good attachment and stability of the phosphate functional groups.

Aminopropyl-CPG is a CPG modified by an aminopropyl functional group, and we can provide products with pore sizes ranging from 300 Å-2000 Å. The products can be used for the amination modification of nucleotides, and by introducing an amino functional group, the chemistry and reactivity of nucleotides can be extended.

Features of CPGs

The pore size and pore structure of CPGs can be tuned as needed, typically in the range of 3-30 nanometers. This controllable pore size and pore structure helps ensure efficient solid phase synthesis of oligonucleotides.

CPGs have a large amount of surface activity, providing enough binding sites to allow nucleotide immobilization and chemical reactions to take place during the synthesis process.

CPGs have good chemical stability and can be used under common nucleotide synthesis reaction conditions. They can tolerate synthesis conditions such as alkaline conditions, organic solvents, and high temperatures, thus ensuring high-quality oligonucleotide synthesis.

CPGs can be scaled and adjusted as needed for both small-scale research and large-scale industrial production.

After years of development, BOC Sciences has the expertise and experience to help you synthesize high-quality CPGs for oligo synthesis and accelerate the achievement of your research goals.

If you have any special requirements for CPGs products, please feel free to contact us. We look forward to working with you on attractive projects.

* Only for research. Not suitable for any diagnostic or therapeutic use.
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