Cargando…

Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery

Peptides are a rapidly growing class of therapeutics with many advantages over conventional small molecule drugs. Dextrorotary (D)-peptides, with increased enzymatic stability and prolonged plasma half-life in comparison with natural L-peptides, are considered to have great potential as recognition...

Descripción completa

Detalles Bibliográficos
Autores principales: Bian, Zhenyuan, Yan, Jin, Wang, Simeng, Li, Yijie, Guo, Yi, Ma, Bohan, Guo, Hao, Lei, Zhijie, Yin, Chun, Zhou, Yi, Liu, Min, Tao, Kaishan, Hou, Peng, He, Wangxiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6276095/
https://www.ncbi.nlm.nih.gov/pubmed/30555549
http://dx.doi.org/10.7150/thno.27165
_version_ 1783377946803699712
author Bian, Zhenyuan
Yan, Jin
Wang, Simeng
Li, Yijie
Guo, Yi
Ma, Bohan
Guo, Hao
Lei, Zhijie
Yin, Chun
Zhou, Yi
Liu, Min
Tao, Kaishan
Hou, Peng
He, Wangxiao
author_facet Bian, Zhenyuan
Yan, Jin
Wang, Simeng
Li, Yijie
Guo, Yi
Ma, Bohan
Guo, Hao
Lei, Zhijie
Yin, Chun
Zhou, Yi
Liu, Min
Tao, Kaishan
Hou, Peng
He, Wangxiao
author_sort Bian, Zhenyuan
collection PubMed
description Peptides are a rapidly growing class of therapeutics with many advantages over conventional small molecule drugs. Dextrorotary (D)-peptides, with increased enzymatic stability and prolonged plasma half-life in comparison with natural L-peptides, are considered to have great potential as recognition molecules and therapeutic agents. However, the in vivo efficacy of current therapeutic D-peptides is hindered by their inefficient cellular uptake in diseased tissues. Methods: To overcome physiological and cellular barriers to D-peptides, we designed a gold-based ultra-small nanocarrier coupled with polylysine (PLL) and a receptor-targeted peptide to deliver therapeutic D-peptides. Using a D-peptide p53 activator (DPA) as a proof of concept, we synthesized, functionalized and characterized gold- and DPA-based nanoparticles termed AuNP-DPA. Results: AuNP-DPA were effectively enriched in tumor sites and subsequently internalized by cancer cells, thereby suppressing tumor growth via reactivating p53 signaling. More importantly, through a series of in vivo experiments, AuNP-DPA showed excellent biosafety without the common side effects that hinder p53 therapies in clinic trials. Conclusion: The present study not only sheds light on the development of AuNP-DPA as a novel class of antitumor agents for drugging the p53 pathway in vivo, but also supplies a new strategy to use D-peptides as intracellular PPI inhibitors for cancer-targeted therapy.
format Online
Article
Text
id pubmed-6276095
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-62760952018-12-14 Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery Bian, Zhenyuan Yan, Jin Wang, Simeng Li, Yijie Guo, Yi Ma, Bohan Guo, Hao Lei, Zhijie Yin, Chun Zhou, Yi Liu, Min Tao, Kaishan Hou, Peng He, Wangxiao Theranostics Research Paper Peptides are a rapidly growing class of therapeutics with many advantages over conventional small molecule drugs. Dextrorotary (D)-peptides, with increased enzymatic stability and prolonged plasma half-life in comparison with natural L-peptides, are considered to have great potential as recognition molecules and therapeutic agents. However, the in vivo efficacy of current therapeutic D-peptides is hindered by their inefficient cellular uptake in diseased tissues. Methods: To overcome physiological and cellular barriers to D-peptides, we designed a gold-based ultra-small nanocarrier coupled with polylysine (PLL) and a receptor-targeted peptide to deliver therapeutic D-peptides. Using a D-peptide p53 activator (DPA) as a proof of concept, we synthesized, functionalized and characterized gold- and DPA-based nanoparticles termed AuNP-DPA. Results: AuNP-DPA were effectively enriched in tumor sites and subsequently internalized by cancer cells, thereby suppressing tumor growth via reactivating p53 signaling. More importantly, through a series of in vivo experiments, AuNP-DPA showed excellent biosafety without the common side effects that hinder p53 therapies in clinic trials. Conclusion: The present study not only sheds light on the development of AuNP-DPA as a novel class of antitumor agents for drugging the p53 pathway in vivo, but also supplies a new strategy to use D-peptides as intracellular PPI inhibitors for cancer-targeted therapy. Ivyspring International Publisher 2018-10-22 /pmc/articles/PMC6276095/ /pubmed/30555549 http://dx.doi.org/10.7150/thno.27165 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Bian, Zhenyuan
Yan, Jin
Wang, Simeng
Li, Yijie
Guo, Yi
Ma, Bohan
Guo, Hao
Lei, Zhijie
Yin, Chun
Zhou, Yi
Liu, Min
Tao, Kaishan
Hou, Peng
He, Wangxiao
Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title_full Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title_fullStr Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title_full_unstemmed Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title_short Awakening p53 in vivo by D-peptides-functionalized ultra-small nanoparticles: Overcoming biological barriers to D-peptide drug delivery
title_sort awakening p53 in vivo by d-peptides-functionalized ultra-small nanoparticles: overcoming biological barriers to d-peptide drug delivery
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6276095/
https://www.ncbi.nlm.nih.gov/pubmed/30555549
http://dx.doi.org/10.7150/thno.27165
work_keys_str_mv AT bianzhenyuan awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT yanjin awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT wangsimeng awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT liyijie awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT guoyi awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT mabohan awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT guohao awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT leizhijie awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT yinchun awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT zhouyi awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT liumin awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT taokaishan awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT houpeng awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery
AT hewangxiao awakeningp53invivobydpeptidesfunctionalizedultrasmallnanoparticlesovercomingbiologicalbarrierstodpeptidedrugdelivery