Enantiomeric Virus-Inspired Oncolytic Particles for Efficient Antitumor Immunotherapy.
basic_science · Level V
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- Record sourced from PubMed, PMID 37506386.
- Also identified by DOI 10.1021/acsnano.3c05288.
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Abstract
Synthesizing biomimetic systems with stereospecific architectures and advanced bioactivity remains an enormous challenge in modern science. To fundamentally eliminate biosafety issues of natural oncolytic viruses, the development of synthetic virus-inspired particles with high oncolytic activity is urgently needed for clinical antitumor treatments. Here, we describe the design and synthesis of enantiomeric virus-inspired particles for efficient oncolytic therapy from homochiral building blocks to stereospecific supramolecular constructions. The L-virus-inspired oncolytic particles (L-VOPs) and D-VOPs possess similar biomimetic nanostructures but mirror-imaged enantiomeric forms. It is important that both L-VOPs and D-VOPs successfully mimic the pharmacological activity of oncolytic viruses, including direct tumor lysis and antitumor immune activation. D-VOPs provide quite better oncolytic efficacy than that of clinical-grade oncolytic agents (LTX-315, IC<sub>50</sub> = 53.00 μg mL<sup>-1</sup>) with more than 5-fold decrease in IC<sub>50</sub> value (10.93 μg mL<sup>-1</sup>) and close to 100% tumor suppression (98.79%) against 4T1 tumor-bearing mice, attributed to the chirality-dependent tumor recognition, interaction, antidegradation, and immunotherapy. This work provides a strategy for the synthesis of stereospecific biomimetic material systems as well as develops an advanced candidate for biomimetic oncolytic agents without biosafety risks.
Medical subject headings
- Oncolytic Virotherapy
- Oncolytic Viruses
- Neoplasms