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| Cat. No. | Product Name | Field of Application | Chemical Structure |
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| DC35125 | Bis-PEG7-acid |
Bis-PEG7-acid is a PEG derivative containing two terminal carboxylic acid groups. The terminal carboxylic acids can be reacted with primary amine groups in the presence of activators (e.g. EDC, or DCC) to form a stable amide bond. PEG Linkers may be useful in the development of the antibody drug conjugates.
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| DC35124 | Bis-PEG3-acid |
Bis-PEG3-acid is a PEG derivative containing two terminal carboxylic acid groups. The terminal carboxylic acids can be reacted with primary amine groups in the presence of activators (e.g. EDC, or DCC) to form a stable amide bond. PEG Linkers may be useful in the development of antibody drug conjugates.
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| DC35075 | Biotin-PEG11-azide |
Biotin-PEG11-azide is PEG derivative containing a biotin group and an azide group. The azide group can react to form a stable triazole linkage. The hydrophilic PEG spacer increases membrane impermeability of the molecules conjugated to the biotin compound. It also helps to minimize steric hindrance involved with the binding to avidin molecules. PEG Linkers may be useful in the development of antibody drug conjugates.
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| DC35052 | Biotin-PEG6-alcohol |
Biotin-PEG6-alcohol is a PEG derivative containing a biotin group and a terminal primary hydroxyl. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC35028 | Benzyl-PEG2-CH2CO2H |
Benzyl-PEG2-CH2CO2H is a Benzyl PEG Linker. Benzyl-PEG2-CH2CO2H may be useful in the development of antibody drug conjugates.
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| DC35009 | t-Boc-Aminooxy-PEG3-bromide |
t-Boc-Aminooxy-PEG3-bromide is a crosslinker containing a t-Boc-aminooxy group and a bromide group. The bromide (Br) is a very good leaving group for nucleophilic substitution reactions. Aminooxy PEGs may be useful in bioconjugation experiments.
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| DC35001 | t-Boc-Aminooxy-PEG4-alcohol |
t-Boc-Aminooxy-PEG4-alcohol is a PEG derivative containing a Boc-protected aminooxy group and an alcohol group. The protected aminooxy can be deprotected under mild acidic conditions and then can be reacted with an aldehyde or ketone group to form a stable oxime linkage. The hydroxyl group enables further derivatization or replacement with other reactive functional groups. Aminooxy PEG Linkers may be useful in bioconjugation experiments.
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| DC34989 | Bis-aminooxy-PEG1 |
Bis-aminooxy-PEG1 is a PEG derivative containing two aminooxy groups that can be used in bioconjugation. It reacts with an aldehyde to form an oxime bond. If a reductant is used, it will form a hydroxylamine linkage. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34942 | t-Boc-N-amido-PEG11-amine |
t-Boc-N-amido-PEG11-amine is a PEG derivative containing an amino group and Boc-protected amino group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The Boc group can be deprotected under mild acidic conditions to form the free amine. PEG Linkers are useful in the development of antibody drug conjugates.
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| DC34923 | Azido-PEG10-amine |
Azido-PEG10-amine is a PEG derivative containing an amino group with an azide group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The azide group can react with alkyne, BCN, DBCO via Click Chemistry to yield a stable triazole linkage. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34922 | Azido-PEG6-amine |
Azido-PEG6-amine is a PEG derivative containing an amino group with an azide group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The azide group can react with alkyne, BCN, DBCO via Click Chemistry to yield a stable triazole linkage. PEG Linkers are useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34920 | Azido-PEG4-amine |
Azido-PEG4-amine is a PEG derivative containing an amino group with an azide group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The azide group can react with alkyne, BCN, DBCO via Click Chemistry to yield a stable triazole linkage. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34915 | Amino-PEG10-amine |
Amino-PEG10-amine is a PEG derivative containing two amino groups. The amino groups are reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34908 | Amino-PEG3-amine |
Amino-PEG3-amine is a PEG derivative containing two amino groups. The amino groups are reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34907 | Amino-PEG2-amine |
Amino-PEG2-amine is a PEG derivative containing two amino groups. The amino groups are reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34904 | Amino-PEG12-alcohol |
Amino-PEG12-alcohol is a PEG derivative containing an amino group with a hydroxyl group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The hydroxyl group enables further derivatization or replacement with other reactive functional groups. PEG Linkers may be useful in the development of antibody drug conjugates.
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| DC34901 | Amino-PEG2-alcohol |
Amino-PEG2-alcohol is a PEG derivative containing an amino group with a hydroxyl group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The hydroxyl group enables further derivatization or replacement with other reactive functional groups. PEG Linkers may be useful in the development of antibody drug conjugates and drug delivery methods.
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| DC34838 | Propargyl-PEG4-methane |
Propargyl-PEG4-methane is a PEG derivative containing a propargyl group. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. PEG Linkers may be useful in the development of antibody drug conjugates.
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| DC34826 | Propargyl-PEG3-Ms |
Propargyl-PEG3-Ms is a PEG derivative containing a propargyl group and a Ms group. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. PEG Linkers may be useful in the development of antibody drug conjugates.
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| DC34807 | Propargyl-PEG12-amine |
Propargyl-PEG12-amine is a PEG derivative containing a propargyl group and an amino group. The hydrophilic PEG spacer increases solubility in aqueous media. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. PEG Linkers are useful in the development of antibody drug conjugates.
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| DC34802 | Propargyl-PEG3-amine |
Propargyl-PEG3-amine is a PEG derivative containing a propargyl group and an amino group. The amino group is reactive with carboxylic acids, activated NHS esters, carbonyls (ketone, aldehyde) etc. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. PEG Linkers are useful in the development of antibody drug conjugates (ADCs).
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| DC34799 | Propargyl-PEG7-alcohol |
Propargyl-PEG7-alcohol is a PEG derivative containing a hydroxyl group and a propargyl group. The hydroxyl group enables further derivatization or replacement with other reactive functional groups. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage.
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| DC34794 | Propargyl-PEG4-CH2CO2tBu |
Propargyl-PEG4-CH2CO2tBu is a PEG derivative containing a propargyl group and t-butyl protected carboxyl group. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage.
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| DC34766 | Iodoacetyl-LC-Biotin |
Iodoacetyl-LC-Biotin, or N-Biotinyl-N'-(iodoacetyl)-1,6-hexanediamine, reacts with sulfhydryl groups to form stable thioether linkages.
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| DC34743 | Sulfo-SMCC Crosslinker sodium salt |
Sulfo-SMCC Crosslinker, or Sulfosuccinimidyl-4-[N-maleimidomethyl]cyclohexane-1-carboxylate, is a water soluble, heterobifunctional crosslinker. The non-membrane piercing Sulfo-SMCC protein crosslinking reagent can conjugate extracellular proteins. Sulfo-SMCC crosslinker has an 8.3 angstrom, non-cleavable spacer arm.
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| DC34741 | Sulfo-MBS Crosslinker |
Sulfo-MBS Crosslinker, also known as m-Maleimidobenzoyl-N-hydroxysulfosuccinimide ester, is a non-cleavable, water soluble, heterobifunctional protein crosslinking reagent that is commonly used to crosslink haptens to carrier proteins and enzymes to antibody.
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| DC34725 | C.I. Azoic Coupling Component 12 |
C.I. 37550 is a fluorescent indicator.
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| DC34724 | Cibanaphthol AG |
C.I. Azoic Coupling Component 5 is a fluorescent indicator.
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| DC34699 | Toremifene |
Toremifene is an oral selective estrogen receptor modulator (SERM) which helps oppose the actions of estrogen in the body. It is antagonistic on mammary and uterine tissue. Licensed in the United States under the brand name Fareston, toremifene is FDA-approved for use in advanced (metastatic) breast cancer. It is also being evaluated for prevention of prostate cancer under the brand name Acapodene.
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| DC34678 | lambda-Cyhalothrin |
lambda-Cyhalothrin is an insecticide and pesticide that has adverse effects on rats as well, including neurotoxic and hepatopancreatic effects.
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