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SM(PEG)2, 100 MG. EA,22102,赛默飞世尔

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订货号 1WE4660
品牌型号 赛默飞世尔 22102
货期 询货期
最小订货量 1套
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产品介绍 Product Description
规格
Crosslinker Type: Heterobifunctional
Labeling Method: Chemical Labeling
Product Line: Pierce™
Reactive Moiety: Maleimide, NHS Ester
Spacer: Pegylated, Long
Description: Pierce SM(PEG)2
Quantity: 100mg
Solubility: Water
储存
Upon receipt store desiccated at -20°C. Product is shipped at ambient temperature.
描述

Thermo Scientific Pierce SM(PEG)12 is a hetero-bifunctional crosslinker with N-hydroxysuccinimide (NHS) ester and maleimide groups that allow covalent conjugation of amine- and sulfhydryl-containing molecules. Crosslinkers having polyethylene glycol (PEG) spacers are convenient alternatives to reagents with purely hydrocarbon spacer arms. PEG spacers improve water solubility of reagent and conjugate, reduce the potential for aggregation of the conjugate, and increase flexibility of the crosslink, resulting in reduced immunogenic response to the spacer itself. In contrast to typical PEG reagents that contain heterogeneous mixtures of different PEG chain lengths, Pierce PEGylation reagents are homogeneous compounds of defined molecular weight and spacer arm length, providing greater precision in optimization and characterization of crosslinking applications.

Thermo Scientific No-Weigh products are specialty reagents provided in a pre-aliquoted format. The pre-weighed packaging prevents the loss of reagent reactivity and contamination over time by eliminating the repetitive opening and closing of the vial. The format enables use of a fresh vial of reagent each time, eliminating the hassle of weighing small amounts of reagents and reducing concerns over reagent stability.

Features of SM(PEG)12:

Reactive groups: NHS ester and maleimide
Reactive toward: amino and sulfhydryl groups
• Irreversibly crosslink proteins or peptides by flexible PEG spacer arms
• Polyethylene glycol spacer arms help maintain conjugate solubility
• Pure compound with defined structure and molecular weight, ensuring reproducible protein-modification effects
• PEG spacer provides unique advantages, including increased stability, reduced tendency toward aggregation and reduced immunogenicity
• Ideal for performing controlled, two-step protein conjugations (see Sulfo-SMCC)

SM(PEG)n NHS- and maleimide-activated PEG compounds for crosslinking between primary amines (NH2) and sulfhydryl (SH) groups in proteins and other molecules. A complete set of compounds are offered, each having the same heterobifunctional structure (NHS-PEGn-Maleimide) but differing in the number of discrete ethylene glycol units ( n = 2, 4, 6, 8, 12 or 24). The N-hydroxysuccinimide ester (NHS) group reacts specifically and efficiently with lysine and N-terminal amino groups at pH 7-9 to form stable amide bonds. The maleimide group reacts with reduced sulfhydryls at pH 6.5-7.5 to form stable thioether bonds.

Alternative Names for SM(PEG)n:
• NHS-dPEG-Mal
• Mal-PEG NHS ester
• NHS-PEO-Maleimide
• Succinimidyl-dPEG-maleimide
• Succinimide-Maleimide PEG

Why use crosslinkers with polyethylene glycol (PEG) spacer arms?
PEG-containing reagents have been used to modify proteins to provide specific advantages. Protein PEGylation can improve the stability of the modified protein, protect it from proteolytic digestion, increase its half life in a biological application, mask it from causing an immunogenic response, decrease its antigenicity or potential toxicity, improve its solubility, diminish the potential for aggregation, and minimize interference for both in vitro and in vivo applications. Polyethylene glycol has these effects because it is nontoxic, nonimmunogenic, hydrophilic, water soluble and highly flexible.

Advantages of discrete-length polyethylene glycol compounds:
These reagents are specially synthesized, resulting in homogeneous compounds of defined molecular weight, characterized by discrete chain lengths, providing a greater ability to optimize and characterize surface protein modifications. Typical preparations of PEG compounds are a heterogeneous mixtures composed of a distribution of chain lengths with a specified average molecular weight or approximate number of PEG subunits.

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