内化
神经肽1
肽
外渗
生物
寡肽
肽序列
天线媒体
癌症研究
归巢(生物学)
细胞生物学
细胞
生物化学
免疫学
基因表达
同源盒
血管内皮生长因子受体
基因
血管内皮生长因子
生态学
作者
Lise Roth,Lilach Agemy,Venkata Ramana Kotamraju,Gary B. Braun,Tambet Teesalu,Kazuki N. Sugahara,Juliana Hamzah,Erkki Ruoslahti
出处
期刊:Oncogene
[Springer Nature]
日期:2011-12-19
卷期号:31 (33): 3754-3763
被引量:217
摘要
We have recently described a class of peptides that improve drug delivery by increasing penetration of drugs into solid tumors. These peptides contain a C-terminal C-end Rule (CendR) sequence motif (R/K)XX(R/K), which is responsible for cell internalization and tissue-penetration activity. Tumor-specific CendR peptides contain both a tumor-homing motif and a cryptic CendR motif that is proteolytically unmasked in tumor tissue. A previously described cyclic tumor-homing peptide, LyP-1 (sequence: CGNKRTRGC), contains a CendR element and is capable of tissue penetration. We use here the truncated form of LyP-1, in which the CendR motif is exposed (CGNKRTR; tLyP-1), and show that both LyP-1 and tLyP-1 internalize into cells through the neuropilin-1-dependent CendR internalization pathway. Moreover, we show that neuropilin-2 also binds tLyP-1 and that this binding equally activates the CendR pathway. Fluorescein-labeled tLyP-1 peptide and tLyP-1-conjugated nanoparticles show robust and selective homing to tumors, penetrating from the blood vessels into the tumor parenchyma. The truncated peptide is more potent in this regard than the parent peptide LyP-1. tLyP-1 furthermore improves extravasation of a co-injected nanoparticle into the tumor tissue. These properties make tLyP-1 a promising tool for targeted delivery of therapeutic and diagnostic agents to breast cancers and perhaps other types of tumors.
科研通智能强力驱动
Strongly Powered by AbleSci AI