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Programming lipopeptide nanotherapeutics for tandem treatment of postsurgical infection and melanoma recurrence.

Authors :
Zhang, Ding-Yi
Cao, Rui-Ge
Cheng, Yin-Jia
Liu, Wen-Long
Huang, Rong
Zhang, Ai-Qing
Qin, Si-Yong
Source :
Journal of Controlled Release. Oct2023, Vol. 362, p565-576. 12p.
Publication Year :
2023

Abstract

Tumor recurrence and chronic bacterial infection constitute two major criteria in postsurgical intervention for malignant melanoma. One plausible strategy is the equipment of consolidation therapy after surgery, which relies on adjuvants to eliminate the residual tumor cells and inhibit bacterial growth. Until now, a number of proof-of-concept hybrid nanoadjuvants have been proposed to combat tumor recurrence and postsurgical bacterial infection, which may suffer from the potential bio-unsafety or involve complex design and synthesis. The batch-to-batch inconsistencies in drug composition further delay the clinical trials. To circumvent these issues, herein we develop a programmable strategy to generate lipopeptide nanotherapeutics with identical constitution for tandem intervention of postsurgical bacterial infection and cancer recurrence of melanoma. Increasing the number of hydrophobic linoleic acid within lipopeptides has been found to be a simple and practical strategy to improve the therapeutic outcomes for both tumor cells and bacteria. Self-assembled lipopeptide nanotherapeutics with two linoleic acid molecules possesses excellent antitumor activity and antimicrobial function toward both susceptible strains and drug-resistant bacteria. Arising from the incorporation of unsaturated linoleic acid, the unavoidable hemolysis of cationic peptide drugs was effectively alleviated. In vivo therapeutic abilities of postsurgical infection and tumor recurrence were investigated in BALB/c nude mice bearing a B16-F10 tumor model, with an incomplete surgical resection and in situ infection by methicillin-resistant Staphylococcus aureus (MRSA). Self-assembled lipopeptide nanotherapeutics could effectively inhibit cancer cell growth and bacterial infection, as well as promote wound healing. The easily scalable large-scale production, broad-spectrum antitumor and antibacterial bioactivities as well as fixed component endows lipopeptide nanotherapeutics as promising adjuvants for clinically postsurgical therapy of melanoma. Lipopeptide nanotherapeutics with easy preparation, fixed component and low hemolysis are proposed for post-surgical melanoma treatment, which could inhibit chronic bacterial infection and tumor recurrence. [Display omitted] • Multifunctional lipopeptide nanotherapeutics with fixed component and low hemolysis is easy fabricated. • P3 nanotherapeutics exhibits excellent antitumor and antibacterial activities in vitro. • P3 inhibits melanoma growth and promotes wound healing in mice with incomplete tumor resection and MRSA infection. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01683659
Volume :
362
Database :
Academic Search Index
Journal :
Journal of Controlled Release
Publication Type :
Academic Journal
Accession number :
172871258
Full Text :
https://doi.org/10.1016/j.jconrel.2023.09.009