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iRGD Peptide as a Tumor-Penetrating Enhancer for Tumor-Targeted Drug Delivery
by
Kang, Sujin
, Lee, Sooyeun
, Park, Soyeun
in
Adenoviruses
/ Angiogenesis
/ Blood-brain barrier
/ Cancer
/ Cancer therapies
/ Cell adhesion & migration
/ Chemotherapy
/ Conjugation
/ Drug delivery systems
/ Drug resistance
/ Immunotherapy
/ Penetration
/ Peptides
/ Permeability
/ Review
/ Synergistic effect
/ Tumors
2020
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iRGD Peptide as a Tumor-Penetrating Enhancer for Tumor-Targeted Drug Delivery
by
Kang, Sujin
, Lee, Sooyeun
, Park, Soyeun
in
Adenoviruses
/ Angiogenesis
/ Blood-brain barrier
/ Cancer
/ Cancer therapies
/ Cell adhesion & migration
/ Chemotherapy
/ Conjugation
/ Drug delivery systems
/ Drug resistance
/ Immunotherapy
/ Penetration
/ Peptides
/ Permeability
/ Review
/ Synergistic effect
/ Tumors
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
iRGD Peptide as a Tumor-Penetrating Enhancer for Tumor-Targeted Drug Delivery
by
Kang, Sujin
, Lee, Sooyeun
, Park, Soyeun
in
Adenoviruses
/ Angiogenesis
/ Blood-brain barrier
/ Cancer
/ Cancer therapies
/ Cell adhesion & migration
/ Chemotherapy
/ Conjugation
/ Drug delivery systems
/ Drug resistance
/ Immunotherapy
/ Penetration
/ Peptides
/ Permeability
/ Review
/ Synergistic effect
/ Tumors
2020
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iRGD Peptide as a Tumor-Penetrating Enhancer for Tumor-Targeted Drug Delivery
Journal Article
iRGD Peptide as a Tumor-Penetrating Enhancer for Tumor-Targeted Drug Delivery
2020
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Overview
The unique structure and physiology of a tumor microenvironment impede intra-tumoral penetration of chemotherapeutic agents. A novel iRGD peptide that exploits the tumor microenvironment can activate integrin-dependent binding to tumor vasculatures and neuropilin-1 (NRP-1)-dependent transport to tumor tissues. Recent studies have focused on its dual-targeting ability to achieve enhanced penetration of chemotherapeutics for the efficient eradication of cancer cells. Both the covalent conjugation and the co-administration of iRGD with chemotherapeutic agents and engineered delivery vehicles have been explored. Interestingly, the iRGD-mediated drug delivery also enhances penetration through the blood–brain barrier (BBB). Recent studies have shown its synergistic effect with BBB disruptive techniques. The efficacy of immunotherapy involving immune checkpoint blockades has also been amplified by using iRGD as a targeting moiety. In this review, we presented the recent advances in iRGD technology, focusing on cancer treatment modalities, including the current clinical trials using iRGD. The iRGD-mediated nano-carrier system could serve as a promising strategy in drug delivery to the deeper tumor regions, and be combined with various therapeutic interventions due to its novel targeting ability.
Publisher
MDPI AG,MDPI
Subject
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