Rachita Kiran, Fatemeh Kashani Asadi Jafari, Ryan Strauch, Richard d'Arcy
After nearly five decades of clinical dominance, polyethylene glycol (PEG) is approaching an inflection point. Pervasive environmental exposure has driven anti-PEG antibody prevalence above 70% in some adult populations, transforming the once-reliable stealth shield into a source of accelerated blood clearance (ABC), complement activation-related pseudoallergy (CARPA), and unpredictable loss of efficacy - risks brought into sharp focus by the global rollout of PEGylated lipid nanoparticle mRNA vaccines. PEG is thus no longer a passive bystander, and a generation of drug delivery scientists are responding by re-engineering the corona itself. This review reframes stealth not bioinert concealment but rather as an active interface between a nanomedicine and the host: a programmable surface that can hide, sense, switch, deliver, and target. We examine how branched, bottlebrush, and statistical PEG architectures evade pre-existing antibodies while preserving regulatory familiarity; how dePEGylation triggered by tumour pH, redox, enzymatic, and reactive oxygen species (ROS) cues turns stealth into a temporally controlled handoff; how classical alternatives and new functional stealth polymers zwitterionic, polyglycerol, polysulfoxide, and polyphosphoester scaffolds deliver ultra-long circulation while simultaneously providing antioxidant defence, cryo/lyoprotection, or immune tolerance; how degradable platforms (heparosan, polysialic acid, hydroxyethyl starch, PASylation, XTEN, EK zwitterionic peptides) reconcile prolonged half-life with clean metabolic exit; and how bio-inspired tropic coatings - hyaluronic acid, phosphocholine, phosphoserine, fucoidan, sialic acid, glucose and mannose glycopolymers - exploit endogenous receptors to reconcile stealth properties with directional targeting.