International Journal of Nanomedicine 2011-01-01

Nanotherapeutics in angiogenesis: synthesis and in vivo assessment of drug efficacy and biocompatibility in zebrafish embryos.

Jinping Cheng, Yan-Juan Gu, Yajun Wang, Shuk Han Cheng, Wing-Tak Wong

文献索引:Int. J. Nanomedicine 6 , 2007-21, (2011)

全文:HTML全文

摘要

Carbon nanotubes have shown broad potential in biomedical applications, given their unique mechanical, optical, and chemical properties. In this pilot study, carbon nanotubes have been explored as multimodal drug delivery vectors that facilitate antiangiogenic therapy in zebrafish embryos.Three different agents, ie, an antiangiogenic binding site (cyclic arginine-glycin-easpartic acid), an antiangiogenic drug (thalidomide), and a tracking dye (rhodamine), were conjugated onto single-walled carbon nanotubes (SWCNT). The biodistribution, efficacy, and biocompatibility of these triple functionalized SWCNT were tested in mammalian cells and validated in transparent zebrafish embryos.Accumulation of SWCNT-associated nanoconjugates in blastoderm cells facilitated drug delivery applications. Mammalian cell xenograft assays demonstrated that these antiangiogenic SWCNT nanoconjugates specifically inhibited ectopic angiogenesis in the engrafted zebrafish embryos.This study highlights the potential of using SWCNT for generating efficient nanotherapeutics.


相关化合物

  • 4-(N-马来酰亚胺基...
  • 2-(Boc-氨基)乙基溴

相关文献:

A Humanized Anti-CD22-Onconase Antibody-Drug Conjugate Mediates Highly Potent Destruction of Targeted Tumor Cells.

2015-01-01

[J. Immunol. Res. 2015 , 561814, (2015)]

Solid formulations by a nanocrystal approach: critical process parameters regarding scale-ability of nanocrystals for tableting applications.

2015-05-15

[Int. J. Pharm. 485 , 77-86, (2015)]

An NIR-triggered and thermally responsive drug delivery platform through DNA/copper sulfide gates.

2015-08-07

[Nanoscale 7 , 12614-24, (2015)]

Polyethylenimine derivate conjugated with RGD-TAT-NLS as a novel gene vector.

2014-01-01

[Biomed Mater Eng 24(6) , 1933-9, (2014)]

The Mammalian Cell Cycle Regulates Parvovirus Nuclear Capsid Assembly.

2015-06-01

[PLoS Pathog. 11 , e1004920, (2015)]

更多文献...