A poly(amidoamine) dendrimer-based nanocarrier conjugated with Angiopep-2 for dual-targeting function in treating glioma cells
文献信息
Zejun Xu, Yao Wang, Zhiyong Ma, Zhijian Wang, Yen Wei, Xinru Jia
A GSH sensitive nanocarrier (G4-DOX-Angiopep-PEG), with Angiopep-2 as a dual-targeting group and doxorubicin (DOX) as the therapy drug, was constructed by covalently conjugating them on the periphery of fourth generation PAMAM dendrimers (G4 PAMAM), aiming for an enhancement of BBB transportation and drug accumulation in glioma cells. It was found that the DOX release reached 44% with the concentration of GSH at 10 mM in the system, while only 3% DOX was released at pH 7.4 without GSH. The in vitro assay of transport across the BBB model showed that G4-DOX-Angiopep-PEG delivered 11% of DOX in a period of 12 h. The carrier could internalize into C6 glioma cells through low-density lipoprotein receptor-related protein (LRP)-mediated transcytosis. The accumulation of DOX in the tumor site was increased due to the targeting effects of Angiopep-2 via LRP-mediated endocytosis, which resulted in the volume of the avascular C6 glioma spheroids being effectively reduced in vitro.
相关文献
Identification of intrinsic catalytic activity for electrochemical reduction of water molecules to generate hydrogen
Tatsuya Shinagawa, Kazuhiro Takanabe
DOI: 10.1039/C5CP02330K
Structure determination of trans-cinnamaldehyde by broadband microwave spectroscopy
DOI: 10.1039/C5CP02582F
Simulation of X-ray absorption spectra with orthogonality constrained density functional theory
Wallace D. Derricotte, Francesco A. Evangelista
DOI: 10.1039/C4CP05509H
Tautomeric transition between wobble A·C DNA base mispair and Watson–Crick-like A·C* mismatch: microstructural mechanism and biological significance
DOI: 10.1039/C5CP01568E
Hydrogen bonding and π–π interactions in imidazolium-chloride ionic liquid clusters
Richard P. Matthews, Tom Welton, Patricia A. Hunt
DOI: 10.1039/C5CP00459D
NO reduction by CO over CuO supported on CeO2-doped TiO2: the effect of the amount of a few CeO2
Changshun Deng, Bin Li, Lihui Dong, Feiyue Zhang, Minguang Fan, Guangzhou Jin, Junbin Gao, Liwen Gao, Fei Zhang, Xinpeng Zhou
DOI: 10.1039/C5CP00745C
Co-solvent enhanced zinc oxysulfide buffer layers in Kesterite copper zinc tin selenide solar cells
K. Xerxes Steirer, Rebekah L. Garris, Jian V. Li, Michael J. Dzara, Paul F. Ndione, Kannan Ramanathan, Ingrid Repins, Glenn Teeter, Craig L. Perkins
DOI: 10.1039/C5CP01607J
Phase inversion of ionomer-stabilized emulsions to form high internal phase emulsions (HIPEs)
Tao Zhang, Zhiguang Xu, Zengxiao Cai, Qipeng Guo
DOI: 10.1039/C5CP01157D
Plasmon-enhanced homogeneous and heterogeneous triplet–triplet annihilation by gold nanoparticles
Xian Cao, Bo Hu, Rui Ding, Peng Zhang
DOI: 10.1039/C5CP01876E
Reinforced photocatalytic reduction of CO2 to CO by a ternary metal oxide NiCo2O4
Zhaoyu Wang, Min Jiang, Jiani Qin, Han Zhou, Zhengxin Ding
DOI: 10.1039/C5CP01997D
您可能还喜欢
P11(CAS号:848644-86-0)安全吗?
P11作为一种化学化合物,需要谨慎处理。一般来说,该化合物无毒,但在操作过程中仍需遵循实验室安全规定,避免皮肤接触和吸入。建议在通风良好的环境中操作,并佩戴适当...
氨甲环酸杂质C(CAS号:330838-52-3)通常如何合成?
氨甲环酸杂质C通常通过氨甲环酸的衍生物与环己烯进行缩合反应合成。常见的合成方法包括一步合成法和多步合成法,其中多步合成法可以提高产物的选择性和产率。反应通常在无...
(±)-茉莉酸(CAS号:221682-41-3)通常如何合成?
(±)-茉莉酸的合成通常采用生物合成或者化学合成的方法。化学合成方法中,可以通过2-戊烯-1-醇与环戊酮的缩合反应,再经过氧化反应得到目标产物。该反应需要温和的...
(4S,4'S)-2,2'-(1,1-环己烷二基)双(4-异丙基-4,5-二氢-1,3-噁唑)(CAS号:1373357-00-6)安全吗?
(4S,4'S)-2,2'-(1,1-环己烷二基)双(4-异丙基-4,5-二氢-1,3-噁唑)属于有机化合物,应遵循实验室安全规范。在操作时应佩戴适当的个人防护...
什么是6-苄氧基-5-甲氧基-2-羧基吲哚(CAS号:2495-92-3)?
6-苄氧基-5-甲氧基-2-羧基吲哚是一种有机化合物,分子式为C16H15NO3。它是一种含有苄氧基、甲氧基和羧基官能团的吲哚衍生物。
丙二酸丁酯乙酯(CAS号:17373-84-1)安全吗?
丙二酸丁酯乙酯属于易燃物质,具有一定的毒性。在操作时应佩戴防护眼镜和手套,避免接触皮肤和眼睛。储存时应远离热源和火源,避免阳光直射,以减少火灾和爆炸的风险。
2-碘-3-甲基吡嗪(CAS号:58139-08-5)的市场或研究趋势如何?
2-碘-3-甲基吡嗪作为一种特殊结构的化合物,目前在工业和学术研究中的应用相对有限。然而,随着对特定化学结构及其潜在应用的深入研究,预计未来可能在农药、医药等领...
千层纸素A-7-0-β-D-葡萄糖醛酸苷甲酯(CAS号:82475-01-2)的物理化学性质是什么?
千层纸素A-7-0-β-D-葡萄糖醛酸苷甲酯是一种白色结晶固体,分子量为616.27 g/mol。该化合物在水中溶解度较低,在有机溶剂中溶解度较高。其反应活性主...
什么是7-苄基-4,7-二氮杂螺[2.5]辛烷(CAS号:1222106-45-7)?
7-苄基-4,7-二氮杂螺[2.5]辛烷是一种有机化合物,其结构由一个环状的7-苄基-4,7-二氮杂螺环和一个苯基组成。该化合物的分子式为C14H16N2。它具...
在合成中是否有丁酰胺酸甲酯(CAS号:53171-39-4)的替代品?
丁酰胺酸甲酯的合成中可能的替代品包括其他氨基酸衍生物,如乙酰胺酸甲酯或丙酰胺酸甲酯。这些替代品在某些合成路线中可能更为便利或成本更低。
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.














