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Cited 12 time in webofscience Cited 10 time in scopus
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Improved Protein Toxin Delivery Based on ATTEMPTS Systemsopen access

Authors
Chen, YingzhiZhang, MengMin, Kyoung AhWang, HuiyuanShin, Meong CheolLi, FengYang, Victor C.Huang, Yongzhuo
Issue Date
2018
Publisher
BENTHAM SCIENCE PUBL LTD
Keywords
Protein toxin; ribosome-inactivating protein; immunotoxin; cell-penetrating peptide (CPP); gelonin; tumor-targeting delivery
Citation
CURRENT DRUG TARGETS, v.19, no.4, pp 380 - 392
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
CURRENT DRUG TARGETS
Volume
19
Number
4
Start Page
380
End Page
392
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/13251
DOI
10.2174/1389450118666170302094758
ISSN
1389-4501
1873-5592
Abstract
Background: Ribosome-inactivating proteins (RIPs) are wildly found in multiple species of plants, bacteria and fungi. As a special family of protein toxins, RIPs can inhibit protein synthesis and induce cell death via inactivating ribosome in eukaryotic cells. Thus, RIPs have been applied for anti-tumor therapy in the past two decades. However, because of poor cell permeability, nonselective mode of action for tumor cells, poor pharmacokinetic profiles and immunogenicity, their clinical application has been severely constrained. As an effort to overcome these obstacles, tumor-specific monoclonal antibodies (mAb) have been conjugated to RIPs (forming so called "immunotoxins") specifically to increase their cytotoxicity and provide tumor targeting. Nevertheless, immunotoxins yet have not fully resolved all the issues and critical challenges still remain, such as immunogenicity and inability to penetrate into the deep site of tumor. Objective: To overcome the constrain of immunotoxins, the novel cell-penetrating peptide (CPP)modified ATTEMPTS systems based on combination of CPP-mediated penetration and antibody-mediated tumor targeting, with triggerable drug release function, were developed to achieve effective and safe delivery of protein toxin. Results: The CPP-modified ATTEMPTS systems showed effective protamine-triggered CPP-toxin release and thus enhanced CPP-mediated cellular uptake and cytotoxicity. It also showed antibody-mediated in vivo tumor targeting and significantly increased in vivo tumor growth suppression with limited systematic toxicity. Conclusion: The CPP-modified ATTEMPTS systems were developed and demonstrated as a proof-of-concept for CPP-based protein toxin delivery with triggerable antibody targeting to improve the druggability of protein toxin drugs. The systems showed the potential application of protein toxin clinical translation in anticancer treatment.
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