This strategy family remodels the tumor microenvironment to restore perfusion and decompress stromal barriers that impede transport.
First-pass extracted concept
microenvironment remodeling
Candidate: concept label1 source documents3 linked claims
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Heterogeneous perfusion, elevated interstitial fluid pressure, and dense extracellular matrix restrict convection-diffusion balance and amplify binding-site barriers in solid tumors.
Quoted textsource-backed
This limitation arises from heterogeneous perfusion, elevated interstitial fluid pressure, and dense extracellular matrix, which together restrict convection-diffusion balance and amplify binding-site barriers.
In solid tumors, therapeutics that reach tumors often remain near vessels and fail to distribute uniformly into tumor cores.
Quoted textsource-backed
therapeutics that reach tumors often remain sequestered near vessels and fail to distribute uniformly into tumor cores
The review summarizes five strategy families for deepening and homogenizing intratumoral transport: stimuli-responsive size/charge switching, microenvironment remodeling, ligand-guided transcytosis and CendR pathway engagement, cell-based and biomimetic vectors, and multistage designs.
Quoted textsource-backed
We organize transformable and bioinspired nanomedicines using a barrier-centric lens and summarize five strategy families to deepen and homogenize intratumoral transport