Deciphering nanoparticle trafficking into glioblastomas uncovers an augmented antitumor effect of metronomic chemotherapy

MJY Ang, J Yoon, M Zhou, HL Wei, YY Goh… - Advanced …, 2022 - Wiley Online Library
Nanoparticles have been explored in glioblastomas as they can traverse the blood–brain
barrier and target glioblastoma selectively. However, direct observation of nanoparticle …

Deciphering Nanoparticle Trafficking into Glioblastomas Uncovers an Augmented Antitumor Effect of Metronomic Chemotherapy

MJY Ang, J Yoon, M Zhou, HL Wei… - Advanced …, 2022 - pubmed.ncbi.nlm.nih.gov
Nanoparticles have been explored in glioblastomas as they can traverse the blood-brain
barrier and target glioblastoma selectively. However, direct observation of nanoparticle …

Deciphering Nanoparticle Trafficking into Glioblastomas Uncovers an Augmented Antitumor Effect of Metronomic Chemotherapy.

MJY Ang, J Yoon, M Zhou, HL Wei, YY Goh… - … (Deerfield Beach, Fla …, 2021 - europepmc.org
Nanoparticles have been explored in glioblastomas as they can traverse the blood-brain
barrier and target glioblastoma selectively. However, direct observation of nanoparticle …

Deciphering Nanoparticle Trafficking into Glioblastomas Uncovers an Augmented Antitumor Effect of Metronomic Chemotherapy

MJY Ang, J Yoon, M Zhou, HL Wei… - Advanced …, 2022 - ui.adsabs.harvard.edu
Nanoparticles have been explored in glioblastomas as they can traverse the blood-brain
barrier and target glioblastoma selectively. However, direct observation of nanoparticle …

[PDF][PDF] Deciphering Nanoparticle Trafficking into Glioblastomas Uncovers an Augmented Antitumor Effect of Metronomic Chemotherapy

MJY Ang, J Yoon, M Zhou, HL Wei, YY Goh… - Adv …, 2021 - liuxg.science.nus.edu.sg
Glioblastoma (GBM), characterized by extensive microvascular proliferation and is
considered the most infiltrative and aggressive form of solid brain tumors with poor …