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Methoxy PEG DSPE

产品代号:

M-PEG-DSPE

产品纯度:

≥ 95%

包装规格:

1g, 10g, 100g等(特殊包装需收取分装费用)

分子量:

5000 Da等

产品咨询:

科研客户小批量一键采购地址(小于5克)

  • 产品描述
  • 参考文献
  •   键凯科技提供甲氧基聚乙二醇DSPE产品。

           键凯科技提供分装服务,需要收取分装费用,如果您需要分装为其他规格请与我们联系。

      键凯科技同时提供其他分子量的M-DSPE 产品,如你需要请与我司sales@jenkem.com联系。

      键凯科技提供大批量生产产品及GMP级别产品,如需报价请与我们联系。

     

  •   References:

      1. Chen, Y., et al., An upconversion nanoparticle/Ru (ii) polypyridyl complex assembly for NIR-activated release of a DNA covalent-binding agent. RSC Advances, 2016, 6(28):23804-8.

      2. Vij, N., et al., Neutrophil targeted nano-drug delivery system for chronic obstructive lung diseases, Nanomedicine: Nanotechnology, Biology and Medicine, 2016.

      3. Vila-Caballer, M., et al., A pH-sensitive stearoyl-PEG-poly(methacryloyl sulfadimethoxine)-decorated liposome system for protein delivery: An application for bladder cancer treatment, Journal of Controlled Release, 2016, 238, p: 31-42.

      4. Bersani, S., et al., pH-sensitive stearoyl-PEG-poly(methacryloyl sulfadimethoxine) decorated liposomes for the delivery of gemcitabine to cancer cells, European Journal of Pharmaceutics and Biopharmaceutics, 2014, 88(3), p. 670-682.

      5. Farvadi, F., et al., Micellar stabilized single-walled carbon nanotubes for a pH-sensitive delivery of doxorubicin. Research in Pharmaceutical Sciences, 2014, 9(1):1-10.

          6. Popilski, H., et al., Doxorubicin liposomes cell penetration enhancement and its potential drawbacks for the tumor targeting efficiency, International Journal of Pharmaceutics, 2021, V. 592.

          7. Liu, M., et al., Branched PEG-modification: A new strategy for nanocarriers to evade of the accelerated blood clearance phenomenon and enhance anti-tumor efficacy, Biomaterials, 2022, 283, p.121415.

          8. Jia, F., et al., Long-acting anti-colorectal cancer by nanocomplex co-regulating Bmi1 through miR-218 and siCCAT1, Journal of Drug Delivery Science and Technology, V. 83, 2023.

          9.Jia, F., et al., Long-acting anti-colorectal cancer by nanocomplex co-regulating Bmi1 through miR-218 and siCCAT1, Journal of Drug Delivery Science and Technology, 83, 2023.

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