Wang et al. give a rigorous, panoramic review of biomolecule-derived nanostructures (polysaccharides, nucleic acids, peptides, proteins) for cancer β strong synthesis, deep mechanistic coverage, useful translational sections and clear limitations (immunogenicity, variability, scale-up). Key claims and limitations are supported by the review and by clinical-translation analyses.
Representative citations:
The review aligns with clinical-translation-focused analyses that emphasize EPR heterogeneity and manufacturing/regulatory barriers; it is consistent with the broader consensus that biomolecule-based platforms offer unique programmable functions but face translational friction
Wang et al. correctly identify that biomolecule-derived nanostructures give unique programmable functions (sequence addressability of DNA, stimuli-responsive peptides, protein cages for antigen presentation) and map realistic translational hurdles (immunogenicity, variability, manufacturing). Their prescriptions (standardization, imaging-guided stratification, AI/statistical models) are well-aligned with the communityβs clinical-translation analyses .
Remaining uncertainties: whether complex multifunctional systems will outcompete simpler, scalable platforms in clinical practice β this requires standardized head-to-head preclinical comparisons and more clinical readouts.
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