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Amino-dPEG®4-(m-dPEG®x)3




Product Image Model- Price Item Name
10400 Amino-dPEG®4-(m-dPEG®12)3 10400 $250.00

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10400 Amino-dPEG®4-(m-dPEG®12)3

CAS #: 1334178-02-7

Item Name: Amino-dPEG®4-(m-dPEG®12)3

Item #: 10400

Mol. Wt.: 2209.63;

single compound dPEG® Spacers are 61 atoms and 63 A approx.

Amount: 100mg

CAS #: 1334178-02-7

Amount: 100mg

Item Name: Amino-dPEG®4-(m-dPEG®12)3

Item #: 10400

Mol. Wt.: 2209.63;

single compound dPEG® Spacers are 61 atoms and 63 A approx.

Product Features and Benefits: Carbonyl/carboxyl reactive tri-branched dPEG® pegylation reagents; reacts with acids (activated in situ), active esters and aldehydes (to 2o amines with reductive amination) Each is a single “monodisperse” pegylation compound, made synthetically. Tribranched pegylation reagent imparts incredible and surprising water solubility, and the branched dPEG® compound s are non-immunogenic and non-toxic Can also react on surfaces to significantly reduce or eliminate non-specific interactions and create a monolayer surface structure Potentially very useful as a drug modifier to increase hydrodynamic volume

10410 Amino-dPEG®4-(m-dPEG®4)3 10410 $250.00

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10410 Amino-dPEG®4-(m-dPEG®4)3

CAS #: 1333154-69-0

Item Name: Amino-dPEG®4-(m-dPEG®4)3

Item #: 10410

Mol. Wt.: 1152.37;

single compound dPEG® Spacer is 37 atoms and 21 A approx.

Amount: 100mg

CAS #: 1333154-69-0

Amount: 100mg

Item Name: Amino-dPEG®4-(m-dPEG®4)3

Item #: 10410

Mol. Wt.: 1152.37;

single compound dPEG® Spacer is 37 atoms and 21 A approx.

Product Features and Benefits: Carbonyl/carboxyl reactive tri-branched dPEG® pegylation reagents; reacts with acids (activated in situ), active esters and aldehydes (to 2o amines with reductive amination) Each is a single “monodisperse” pegylation compound, made synthetically. Tribranched pegylation reagent imparts incredible and surprising water solubility, and the branched dPEG® compound s are non-immunogenic and non-toxic Can also react on surfaces to significantly reduce or eliminate non-specific interactions and create a monolayer surface structure Potentially very useful as a drug modifier to increase hydrodynamic volume

10420 Amino-dPEG®4-(m-dPEG®8)3 10420 $250.00

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10420 Amino-dPEG®4-(m-dPEG®8)3

CAS #: 1333154-73-6

Item Name: Amino-dPEG®4-(m-dPEG®8)3

Item #: 10420

Mol. Wt.: 1681.00;

single compound dPEG® Spacer is 49 atoms and 50 A approx.

Amount: 100mg

CAS #: 1333154-73-6

Amount: 100mg

Item Name: Amino-dPEG®4-(m-dPEG®8)3

Item #: 10420

Mol. Wt.: 1681.00;

single compound dPEG® Spacer is 49 atoms and 50 A approx.

Product Features and Benefits: Carbonyl/carboxyl reactive tri-branched dPEG® pegylation reagents; reacts with acids (activated in situ), active esters and aldehydes (to 2o amines with reductive amination) Each is a single “monodisperse” pegylation compound, made synthetically. Tribranched pegylation reagent imparts incredible and surprising water solubility, and the branched dPEG® compound s are non-immunogenic and non-toxic Can also react on surfaces to significantly reduce or eliminate non-specific interactions and create a monolayer surface structure Potentially very useful as a drug modifier to increase hydrodynamic volume

10453 Amino-dPEG®4-(m-dPEG®24)3 10453 $325.00

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10453 Amino-dPEG®4-(m-dPEG®24)3

CAS #: 1334178-02-7

Item Name: Amino-dPEG®4-(m-dPEG®24)3

Item #: 10453

Mol. Wt.: 3795.52;

single compound dPEG® Spacers are 97 atoms and 96.2(avg) A approx.

Amount: 100mg

CAS #: 1334178-02-7

Amount: 100mg

Item Name: Amino-dPEG®4-(m-dPEG®24)3

Item #: 10453

Mol. Wt.: 3795.52;

single compound dPEG® Spacers are 97 atoms and 96.2(avg) A approx.

Product Features and Benefits: Carbonyl/carboxyl reactive tri-branched dPEG® pegylation reagents; reacts with acids (activated in situ), active esters and aldehydes (to 2o amines with reductive amination) Each is a single “monodisperse” pegylation compound, made synthetically. Tribranched pegylation reagent imparts incredible and surprising water solubility, and the branched dPEG® compound s are non-immunogenic and non-toxic Can also react on surfaces to significantly reduce or eliminate non-specific interactions and create a monolayer surface structure Potentially very useful as a drug modifier to increase hydrodynamic volume


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