about
Tumor-Penetrating Nanoparticles for Enhanced Anticancer Activity of Combined Photodynamic and Hypoxia-Activated Therapy.Synthesis and Antitumor Activities of Chiral Dipeptide Thioureas Containing an Alpha-Aminophosphonate Moiety.Targeting of p32 in peritoneal carcinomatosis with intraperitoneal linTT1 peptide-guided pro-apoptotic nanoparticles.Multifaceted Role of Neuropilins in the Immune System: Potential Targets for ImmunotherapyStructure-Guided Strategy for the Development of Potent Bivalent ERK Inhibitors.iRGD peptide conjugation potentiates intraperitoneal tumor delivery of paclitaxel with polymersomes.A nanoliposome-based photoactivable drug delivery system for enhanced cancer therapy and overcoming treatment resistance.Peptide-targeted, stimuli-responsive polymersomes for delivering a cancer stemness inhibitor to cancer stem cell microtumors.Autonomous self-navigating drug-delivery vehicles: from science fiction to reality.Emerging potential of stimulus-responsive nanosized anticancer drug delivery systems for systemic applications.Ratiometric in vivo auditioning of targeted silver nanoparticles.Functionalized Nanoparticles Efficiently Enhancing the Targeted Delivery, Tumor Penetration, and Anticancer Activity of 7-Ethyl-10-Hydroxycamptothecin.Designing a cancer therapeutic peptide by combining the mitochondrial targeting domain of Noxa and ErbB2-targeting moieties.Polyarginine and PEG-AEYLR comodified nanostructured lipid carrier: 10mol% uncleavable PEG-AEYLR showed no shielding effect to polyarginine in vitro while maintaining good tumor targeting in vivo.Supramolecular self assembly of nanodrill-like structures for intracellular delivery.Neuropilin-1and platelet-derived growth factor receptors cooperatively regulate intermediate filaments and mesenchymal cell migration during alveolar septation.Tumor-targeting delivery of herb-based drugs with cell-penetrating/tumor-targeting peptide-modified nanocarriers.Access granted: iRGD helps silicasome-encased drugs breach the tumor barrier.Cell-penetrating peptide conjugates of gambogic acid enhance the antitumor effect on human bladder cancer EJ cells through ROS-mediated apoptosis.Application of polymersomes engineered to target p32 protein for detection of small breast tumors in mice.Peptides as drug delivery vehicles across biological barriersTherapeutic Peptide Amphiphile as a Drug Carrier with ATP-Triggered Release for Synergistic Effect, Improved Therapeutic Index, and Penetration of 3D Cancer Cell Spheroids
P2860
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P2860
description
2016 nî lūn-bûn
@nan
2016年の論文
@ja
2016年論文
@yue
2016年論文
@zh-hant
2016年論文
@zh-hk
2016年論文
@zh-mo
2016年論文
@zh-tw
2016年论文
@wuu
2016年论文
@zh
2016年论文
@zh-cn
name
Tumor penetrating peptides for improved drug delivery.
@ast
Tumor penetrating peptides for improved drug delivery.
@de
Tumor penetrating peptides for improved drug delivery.
@en
Tumor penetrating peptides for improved drug delivery.
@fr
type
label
Tumor penetrating peptides for improved drug delivery.
@ast
Tumor penetrating peptides for improved drug delivery.
@de
Tumor penetrating peptides for improved drug delivery.
@en
Tumor penetrating peptides for improved drug delivery.
@fr
prefLabel
Tumor penetrating peptides for improved drug delivery.
@ast
Tumor penetrating peptides for improved drug delivery.
@de
Tumor penetrating peptides for improved drug delivery.
@en
Tumor penetrating peptides for improved drug delivery.
@fr
P2860
P1476
Tumor penetrating peptides for improved drug delivery.
@en
P2860
P356
10.1016/J.ADDR.2016.03.008
P407
P478
P577
2016-04-01T00:00:00Z