相关产品推荐更多 >
万千商家帮你免费找货
0 人在求购买到急需产品
- 详细信息
- 询价记录
- 文献和实验
- 技术资料
- 保存条件:
0-8度保存
- 保质期:
24month
- 英文名:
Eight Arm PEG Derivatives
- 库存:
少量现货/4周
- 供应商:
西宝生物 - Creative PEGWORKS授权代理
8-Arm PEG
| Catalog No. | Product name & molecular weight |
|---|---|
| 8-Arm PEG-OH (Multi-arm - eight arm - Polyethylene Glycol) | |
![]() |
|
| PSB-801 | 8-Arm PEG-OH, MW 10k |
| PSB-802 | 8-Arm PEG-OH, MW 20k |
| PSB-804 | 8-Arm PEG-OH, MW 40k |
| 8-Arm PEG-NH2 (Multi-arm - eight arm - PEG Amine) | |
![]() |
|
| PSB-811 | 8-Arm PEG-NH2, MW 10k |
| PSB-812 | 8-Arm PEG-NH2, MW 20k |
| PSB-814 | 8-Arm PEG-NH2, MW 40k |
| 8-Arm PEG-Acrylate (Multi-arm - eight arm - PEG Acrylate) | |
![]() |
|
| PSB-821 | 8-Arm PEG-Acrylate, MW 10k |
| PSB-822 | 8-Arm PEG-Acrylate, MW 20k |
| PSB-824 | 8-Arm PEG-Acrylate, MW 40k |
| 8-Arm PEG-Acrylamide (Multi-arm - eight arm - PEG Acrylamide) | |
![]() |
|
| PSB-826 | 8-Arm PEG-Acrylamide, MW 10k |
| PSB-827 | 8-Arm PEG-Acrylamide, MW 20k |
| PSB-828 | 8-Arm PEG-Acrylamide, MW 40k |
| 8-Arm PEG-Acid (Multi-arm - eight arm - PEG Carboxylic Acid COOH) | |
![]() |
|
| PSB-831 | 8-Arm PEG-Acid, MW 10k |
| PSB-832 | 8-Arm PEG-Acid, MW 20k |
| PSB-834 | 8-Arm PEG-Acid, MW 40k |
| 8-Arm PEG-GA (Multi-arm - eight arm - PEG Glutaric Acid) | |
![]() |
|
| PSB-836 | 8-Arm PEG-GA, MW 10k |
| PSB-837 | 8-Arm PEG-GA, MW 20k |
| PSB-839 | 8-Arm PEG-GA, MW 40k |
| 8-Arm PEG-SA (Multi-arm - eight arm - PEG Succinic Acid) | |
![]() |
|
| PSB-8011 | 8-Arm PEG-SA, MW 10k |
| PSB-8012 | 8-Arm PEG-SA, MW 20k |
| PSB-8014 | 8-Arm PEG-SA, MW 40k |
| 8-Arm PEG-GAA (Multi-arm - eight arm - PEG Carboxylic Acid COOH) | |
![]() |
|
| PSB-8021 | 8-Arm PEG-GAA, MW 10k |
| PSB-8022 | 8-Arm PEG-GAA, MW 20k |
| PSB-8023 | 8-Arm PEG-GAA, MW 40k |
| 8-Arm PEG-SAA (Multi-arm - eight arm - PEG Carboxylic Acid COOH) | |
![]() |
|
| PSB-8031 | 8-Arm PEG-SAA, MW 10k |
| PSB-8032 | 8-Arm PEG-SAA, MW 20k |
| PSB-8034 | 8-Arm PEG-SAA, MW 40k |
| 8-Arm PEG-SCM (Multi-arm - eight arm - PEG Succinimidyl NHS ester) | |
![]() |
|
| PSB-841 | 8-Arm PEG-SCM, MW 10k |
| PSB-842 | 8-Arm PEG-SCM, MW 20k |
| PSB-844 | 8-Arm PEG-SCM, MW 40k |
| 8-Arm PEG-SG (Multi-arm - eight arm - PEG Succinimidyl NHS ester) | |
![]() |
|
| PSB-846 | 8-Arm PEG-SG, MW 10k |
| PSB-847 | 8-Arm PEG-SG, MW 20k |
| PSB-849 | 8-Arm PEG-SG, MW 40k |
| 8-Arm PEG-SS (Multi-arm - eight arm - PEG Succinimidyl NHS ester) | |
![]() |
|
| PSB-8041 | 8-Arm PEG-SS, MW 10k |
| PSB-8042 | 8-Arm PEG-SS, MW 20k |
| PSB-8044 | 8-Arm PEG-SS, MW 40k |
| 8-Arm PEG-GAS (Multi-arm - eight arm - PEG Succinimidyl NHS ester) | |
![]() |
|
| PSB-8051 | 8-Arm PEG-GAS, MW 10k |
| PSB-8052 | 8-Arm PEG-GAS, MW 20k |
| PSB-8054 | 8-Arm PEG-GAS, MW 40k |
| 8-Arm PEG-SAS (Multi-arm - eight arm - PEG Succinimidyl NHS ester) | |
![]() |
|
| PSB-8061 | 8-Arm PEG-SAS, MW 10k |
| PSB-8062 | 8-Arm PEG-SAS, MW 20k |
| PSB-8064 | 8-Arm PEG-SAS, MW 40k |
| 8-Arm PEG-Hydrazide (Multi-arm - eight arm - PEG Hydrazide) | |
![]() |
|
| PSB-8111 | 8-Arm PEG-Hydrazide, MW 10k |
| PSB-8112 | 8-Arm PEG-Hydrazide, MW 20k |
| PSB-8113 | 8-Arm PEG-Hydrazide, MW 40k |
| 8-Arm PEG-SH (Multi-arm - eight arm - PEG SH sulfhydryl mecapto) | |
![]() |
|
| PSB-851 | 8-Arm PEG-SH, MW 10k |
| PSB-852 | 8-Arm PEG-SH, MW 20k |
| PSB-854 | 8-Arm PEG-SH, MW 40k |
| 8-Arm PEG-MAL (Multi-arm - eight arm - PEG Maleimide) | |
![]() |
|
| PSB-861 | 8-Arm PEG-MAL, MW 10k |
| PSB-862 | 8-Arm PEG-MAL, MW 20k |
| PSB-864 | 8-Arm PEG-MAL, MW 40k |
| 8-Arm PEG-OPSS (Multi-arm - eight arm - PEG Orthopyridyl Disulfide) | |
![]() |
|
| PSB-866 | 8-Arm PEG-OPSS, MW 10k |
| PSB-867 | 8-Arm PEG-OPSS, MW 20k |
| PSB-868 | 8-Arm PEG-OPSS, MW 40k |
| 8-Arm PEG-Epoxide (Multi-arm - eight arm - PEG Epoxide) | |
![]() |
|
| PSB-871 | 8-Arm PEG-Epoxide, MW 10k |
| PSB-872 | 8-Arm PEG-Epoxide, MW 20k |
| PSB-874 | 8-Arm PEG-Epoxide, MW 40k |
| 8-Arm PEG-NPC (Multi-arm - eight arm - PEG Nitrophenyl Carbonate) | |
![]() |
|
| PSB-877 | 8-Arm PEG-NPC, MW 10k |
| PSB-878 | 8-Arm PEG-NPC, MW 20k |
| PSB-879 | 8-Arm PEG-NPC, MW 40k |
| 8-Arm PEG-Azide (Multi-arm PEG for azide alkyne click reaction) | |
![]() |
|
| PSB-881 | 8-Arm PEG-Azide, MW 10k |
| PSB-882 | 8-Arm PEG-Azide, MW 20k |
| PSB-884 | 8-Arm PEG-Azide, MW 40k |
| 8-Arm PEG-Alkyne (Eight arm PEG for azide alkyne click chemistry) | |
![]() |
|
| PSB-886 | 8-Arm PEG-Alkyne, MW 10k |
| PSB-887 | 8-Arm PEG-Alkyne, MW 20k |
| PSB-889 | 8-Arm PEG-Alkyne, MW 40k |
| 8-Arm PEG-Biotin (Multi-arm - eight arm - PEG Biotin) | |
![]() |
|
| PSB-891 | 8-Arm PEG-Biotin, MW 10k |
| PSB-892 | 8-Arm PEG-Biotin, MW 20k |
| PSB-893 | 8-Arm PEG-Biotin, MW 40k |
| 8-Arm PEG-Chloride (Multi-arm - eight arm - PEG Chloride) | |
![]() |
|
| PSB-894 | 8-Arm PEG-Chloride, MW 10k |
| PSB-895 | 8-Arm PEG-Chloride, MW 20k |
| PSB-896 | 8-Arm PEG-Chloride, MW 40k |
| 8-Arm PEG-Tosylate (Multi-arm - eight arm - Tosyl PEG) | |
![]() |
|
| PSB-897 | 8-Arm PEG-Tosylate, MW 10k |
| PSB-898 | 8-Arm PEG-Tosylate, MW 20k |
| PSB-899 | 8-Arm PEG-Tosylate, MW 40k |
线性同型双官能团聚乙二醇衍生物 Linear Homobifunctional PEG Derivatives
线性异型双官能团聚乙二醇衍生物 Linear Heterobifunctional PEG Derivatives
四臂聚乙二醇衍生物 Multiarm PEG Derivatives – 4-Arm
八臂聚乙二醇衍生物 Eight Arm PEG Derivatives
脂质和两亲性聚乙二醇衍生物 Lipid and Amphiphilic PEG Derivatives
聚乙二醇共聚物PEG Copolymer Products
多糖产品-透明质酸 Polysaccharide Products - Hyaluronic Acid
多 糖产品–海藻酸钙,纤维素,壳聚糖,肝素,硫酸软骨素,葡聚糖,蔗糖,和木聚糖Polysaccharide Products – Alginate, Cellulose, Chitosan, Heparin, Chondroitin Sulfate, Dextran, Ficoll, and Xylan
风险提示:丁香通仅作为第三方平台,为商家信息发布提供平台空间。用户咨询产品时请注意保护个人信息及财产安全,合理判断,谨慎选购商品,商家和用户对交易行为负责。对于医疗器械类产品,请先查证核实企业经营资质和医疗器械产品注册证情况。
- 作者
- 内容
- 询问日期
文献和实验,常有几个氨基被修饰,导致多态混合物的产生,即使只结合一个聚乙二醇,也可能结合在不同的氨基位点上,产生位点异构体。由于蛋白质只有一个末端氨基,因此对它的修饰可以减少多态混合物和位点异构体的产生,但修饰末端氨基的聚乙二醇反应时需使用硼氢氰化钠,有一定的毒性。氨基修饰最常用的修饰剂为SS-PEG、SC-PEG、SPA-PEG、NHS-PEG2和ALD-PEG等。 巯基修饰 活化半胱氨酸的巯基往往处于蛋白质的活性中心部位,位于蛋白质表面的自由巯基远少于氨基,因此修饰效率低下,修饰后蛋白活性损失较大
质上的氨基发生分子间或分子内中和反应,也很难活化。因此,蛋白质或多肽分子最容易与修饰剂发生作用的位点是分子表面赖氨酸残基上的氨基,包括氨基或氨基。 聚乙二醇修饰又称分子的PEG化(PEGylation),是20世纪70年代后期发展起来的修饰方法。将活化的聚乙二醇与蛋白质分子相偶联,影响蛋白质的空间结构,最终导致蛋白质各种生物化学性质的改变:化学稳定性增加,抵抗蛋白酶水解的能力提高,免疫原性和毒性降低或消失,体内半衰期延长,血浆清除率降低等。 对PEG修饰有一定了解,希望同行多多交流
位点上,而羧基如果不与蛋白质上的氨基发生分子间或分子内中和反应,也很难活化。因此,蛋白质或多肽分子最容易与修饰剂发生作用的位点是分子表面赖氨酸残基上的氨基,包括氨基或氨基。 聚乙二醇修饰又称分子的PEG化(PEGylation),是20世纪70年代后期发展起来的修饰方法。将活化的聚乙二醇与蛋白质分子相偶联,影响蛋白质的空间结构,最终导致蛋白质各种生物化学性质的改变:化学稳定性增加,抵抗蛋白酶水解的能力提高,免疫原性和毒性降低或消失,体内半衰期延长,血浆清除率降低等。
技术资料暂无技术资料 索取技术资料
































