Glioblastoma Chemoresistance: The Double Play by Microenvironment and Blood-Brain Barrier.
Martina Da RosVeronica De GregorioAnna Lisa IorioLaura GiuntiMilena GuidiMaurizio de MartinoLorenzo GenitoriIacopo SardiPublished in: International journal of molecular sciences (2018)
For glioblastoma, the tumor microenvironment (TME) is pivotal to support tumor progression and therapeutic resistance. TME consists of several types of stromal, endothelial and immune cells, which are recruited by cancer stem cells (CSCs) to influence CSC phenotype and behavior. TME also promotes the establishment of specific conditions such as hypoxia and acidosis, which play a critical role in glioblastoma chemoresistance, interfering with angiogenesis, apoptosis, DNA repair, oxidative stress, immune escape, expression and activity of multi-drug resistance (MDR)-related genes. Finally, the blood brain barrier (BBB), which insulates the brain microenvironment from the blood, is strongly linked to the drug-resistant phenotype of glioblastoma, being a major physical and physiological hurdle for the delivery of chemotherapy agents into the brain. Here, we review the features of the glioblastoma microenvironment, focusing on their involvement in the phenomenon of chemoresistance; we also summarize recent advances in generating systems to modulate or bypass the BBB for drug delivery into the brain. Genetic aspects associated with glioblastoma chemoresistance and current immune-based strategies, such as checkpoint inhibitor therapy, are described too.
Keyphrases
- blood brain barrier
- cancer stem cells
- drug resistant
- dna repair
- oxidative stress
- dna damage
- cerebral ischemia
- multidrug resistant
- drug delivery
- stem cells
- endothelial cells
- poor prognosis
- resting state
- white matter
- acinetobacter baumannii
- bone marrow
- mental health
- signaling pathway
- squamous cell carcinoma
- functional connectivity
- mesenchymal stem cells
- physical activity
- cell death
- multiple sclerosis
- cystic fibrosis
- cell proliferation
- gene expression
- cell cycle
- genome wide
- copy number
- pseudomonas aeruginosa
- ischemia reperfusion injury
- brain injury
- heat shock
- chemotherapy induced