نتایج جستجو برای: thiol alkylating peg reagent

تعداد نتایج: 48611  

Due to the unique optical properties like high brightness and narrow emission bands of Quantum dots, it is used as simple fluorescence materials in bio-imaging, immunoassays, microarrays, and other applications. To easy invistigate cell lines that overexpressed somtostatin receptors, somatostatin (SST) was conjugated with Quantum dots carrying PEG amine (Qdots-PEG-NH2). The conjugation of SST t...

Journal: :Langmuir : the ACS journal of surfaces and colloids 2009
Guojun Chen Xinghai Ning Bosoon Park Geert-Jan Boons Bingqian Xu

A simple two-step protocol for modification of atomic force microscopy (AFM) tip and substrate by using a "click reaction" has been developed. The modified tip and substrate would be applied to detect trace amounts of ricin by using atomic force microscopy. A key feature of the approach is the use of a PEG (polyethylene glycol) derivative functionalized with one thiol and one azide ending group...

Journal: :Bioconjugate chemistry 2007
Sibu Balan Ji-Won Choi Antony Godwin Ian Teo Carlos M Laborde Sibylle Heidelberger Mire Zloh Sunil Shaunak Steve Brocchini

The covalent conjugation of a functionalized poly(ethylene glycol) (PEG) to multiple nucleophilic amine residues results in a heterogeneous mixture of PEG positional isomers. Their physicochemical, biological, and pharmaceutical properties vary with the site of conjugation of PEG. Yields are low because of inefficient conjugation chemistry and production costs high because of complex purificati...

Journal: :Bioconjugate chemistry 2014
George Badescu Penny Bryant Julia Swierkosz Farzad Khayrzad Estera Pawlisz Monika Farys Yuehua Cong Maurizio Muroni Norbert Rumpf Steve Brocchini Antony Godwin

Many clinically used protein therapeutics are modified to increase their efficacy. Example modifications include the conjugation of cytotoxic drugs to monoclonal antibodies or poly(ethylene glycol) (PEG) to proteins and peptides. Monothiol-specific conjugation can be efficient and is often accomplished using maleimide-based reagents. However, maleimide derived conjugates are known to be suscept...

2004
Wei Fu Dinesh Shenoy Jane Li Curtis Crasto Graham Jones Charles Dimarzio Srinivas Sridhar Mansoor Amiji

To increase the targeting potential, circulation time, and the flexibility of surface-attached biomedically-relevant ligands on gold nanoparticles, hetero-bifunctional poly(ethylene glycol) (PEG, MW 1,500) was synthesized having a thiol group on one terminus and a reactive functional group on the other. Coumarin, a model fluorescent dye, was conjugated to the PEG spacer and gold nanoparticles w...

Journal: :Acta biomaterialia 2009
Kelly S Brink Peter J Yang Johnna S Temenoff

Our laboratory is currently exploring synthetic oligo(poly(ethylene glycol)fumarate) (OPF)-based biomaterials as a means to deliver fibroblasts to promote regeneration of central/partial defects in tendons and ligaments. In order to further modulate the swelling and degradative characteristics of OPF-based hydrogels, OPF crosslinking via a radically initiated, mixed-mode reaction involving poly...

Journal: :The Biochemical journal 1970
W Hasselbach G Taugner

The thiol groups of the vesicular protein of bovine adrenal medulla were allowed to react with the bifunctional thiol reagent bis-(N-maleimidomethyl) ether and with the monofunctional thiol reagent N-ethylmaleimide, and the ATP-dependent and -independent catecholamine fluxes of the modified preparations were studied. 1. During the initial phase of the reaction bis-(N-maleimidomethyl) ether bloc...

2012
Redouan Mahou Christine Wandrey

Pegylation using heterotelechelic poly(ethylene glycol) (PEG) offers many possibilities to create high-performance molecules and materials. A versatile route is proposed to synthesize heterobifunctional PEG containing diverse combinations of azide, amine, thioacetate, thiol, pyridyl disulfide, as well as activated hydroxyl end groups. Asymmetric activation of one hydroxyl end group enables the ...

Journal: :Biofouling 2013
Paul J Molino BinBin Zhang Gordon G Wallace Timothy W Hanks

The ability to control the interaction between proteins and cells with biomaterials is critical for the effective application of materials for a variety of biomedical applications. Herein, the surface modification of the biological dopant dextran sulphate-doped polypyrrole (PPy-DS) with poly(ethylene glycol) to generate a biomaterial interface that is highly resistant to protein and cellular ad...

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