| Literature DB >> 29774132 |
Raghupathy Vengoji1, Muzafar A Macha1,2, Surinder K Batra1,3, Nicole A Shonka3,4.
Abstract
Glioblastoma (GBM) is one of the most aggressive malignant tumors with an overall dismal survival averaging one year despite multimodality therapeutic interventions including surgery, radiotherapy and concomitant and adjuvant chemotherapy. Few drugs are FDA approved for GBM, and the addition of temozolomide (TMZ) to standard therapy increases the median survival by only 2.5 months. Targeted therapy appeared promising in in vitro monolayer cultures, but disappointed in preclinical and clinical trials, partly due to the poor penetration of drugs through the blood brain barrier (BBB). Cancer stem cells (CSCs) have intrinsic resistance to initial chemoradiation therapy (CRT) and acquire further resistance via deregulation of many signaling pathways. Due to the failure of classical chemotherapies and targeted drugs, research efforts focusing on the use of less toxic agents have increased. Interestingly, multiple natural compounds have shown antitumor and apoptotic effects in TMZ resistant and p53 mutant GBM cell lines and also displayed synergistic effects with TMZ. In this review, we have summarized the current literature on natural products or product analogs used to modulate the BBB permeability, induce cell death, eradicate CSCs and sensitize GBM to CRT.Entities:
Keywords: blood brain barrier and chemotherapeutic drugs; glioblastoma; temozolomide
Year: 2018 PMID: 29774132 PMCID: PMC5955138 DOI: 10.18632/oncotarget.25175
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Natural products and product analogs with potential as chemo/radio sensitizers in GBM
| S. No | Scientific Name | Component | Function | Refs |
|---|---|---|---|---|
| 1 | Quercetin | ↓ Hsp27 and ↑ TMZ sensitivity in U87 and U251 GBM cell lines | [ | |
| 2 | Resveratrol | ↓MGMT expression, ↓Nf-ƘB signaling and ↓ antiapoptotic proteins XIAP and survivin and ↑TMZ sensitivity in T98G GBM cells | [ | |
| 3 | Resveratrol | ↑ROS generation, ↑AMPK activation , ↓ mTOR signaling , ↓ antiapoptotic protein Bcl-2 and ↑TMZ sensitivity in SHG44 GBM cells; ↓orthotopic GBM xenograft with TMZ | [ | |
| 4 | Icariin | ↓ proliferation of U87 GBM cells; ↓ Nf-ƘB signaling , ↓migration, ↓invasion and ↑TMZ sensitivity in U87 GBM cells | [ | |
| 5 | Latex | ↓ proliferation of U87, U138MG and T98G GBM cell lines; ↑ tumor suppressor let-7miRNA, ↓invasion and ↑TMZ sensitivity | [ | |
| 6 | Ethanolic extract of Propolisis | ↓Nf-ƘB signaling and ↑ TMZ sensitivity in U87 GBM cells | [ | |
| 7 | Propolisis | ↓ cell proliferation in U343 and U251 GBM cell lines, ↑ chemosensitivity to TMZ | [ | |
| 8 | Hydroalcoholic extract | ↑ radiosensitivity of A172 GBM cells | [ | |
| 9 | Tetrandrine | ↑G0/G1 cell cycle arrest; ↓ radiation induced ERK signaling and proliferation associated genes PCNA and CCND1; ↑ radiosensitivity of U87 and U251 cell lines | [ | |
| 10 | Withaferin A | ↓ cell proliferation of U87, U251 and TMZ resistant GBM cell lines U87 TMZ, U251 TMZ, T98G and U138 in a concentration dependent manner, ↑ TMZ sensitivity by ↓ MGMT expression. | [ | |
| 11 | Turmeric Force™ | ↑ sensitivity to TMZ in U87 GBM cells | [ |
Figure 1Mechanism of natural product based sensitization of GBM
RTKs activate Ras/Raf/MAPK signaling cascade to increase GBM cell proliferation. The RTK/PI3K/AKT signaling pathway inhibits apoptosis by phosphorylating the pro-apoptotic protein BAD resulting in its cytoplasmic sequestration to inhibit cytochrome-C release from mitochondria. It also inactivates the transcription factor FOXO1 by phosphorylation, resulting in inactivation of pro-apoptotic proteins and cell survival. Natural products resveratrol and eckol attenuate both the Ras/Raf and PI3K/AKT signaling pathways, inhibit cell proliferation, induce apoptosis and also eradicate GBM CSCs; Korean natural medicine recipe, MSC500 decreases CSCs population by decreasing the aldehyde dehydrogenase (ALDH) activity and downregulated the expression of ABC transporters (ABCG2 and ABCB5). Moreover, natural products especially resveratrol and Withaferin A increased the TMZ sensitivity by downregulating MGMT expression. Zataria multiflora hydroalcoholic extract and tetrandrine significantly increased the radiosensitivity of the GBM cell lines. RTK, receptor tyrosine kinase; MAP, mitogen- activated protein kinase; CSCs, cancer stem cells; PTEN, phosphatase and tensin homolog; MGMT, O6-methylguanine-DNA methyl transferase; PI (4,5)P2, phosphatidylinositol-4,5-bisphosphate; PI(1,4,5) P3 - phosphatidylinositol-3,4,5-trisphosphate. Dotted arrow indicates expected effects.
Natural products which displayed anti-cancer activities in GBM pre-clinical models
| S. No | Scientific Name | Component | Function | Refs |
|---|---|---|---|---|
| 1 | Water extract | ↓ tumor volume in rat orthotopic glioma allograft model | [ | |
| 2 | Withaferin A | ↑ median survival of orthotopic xenograft mouse model by 40% | [ | |
| 3 | Curcumin | ↓ intracranial tumor growth of U87 GBM xenografts and ↑ the overall survival of mice | [ | |
| 4 | Root chloroform extract | ↑ apoptosis in both p53 independent and dependent pathways | [ | |
| 5 | Ardipusilloside 1 (ADS-1) polymer microspheres | able to retain ADS-1 release for 36 days in | [ | |
| 6 | Berberine | elicited more cytotoxicity than TMZ in U87, U251 and U118 GBM cell lines; | [ | |
| 7 | Saponin 1 | ↓ expression of survivin, XIAP, Bcl-2/Bax ratio, activating caspase-9, caspase-3 and apoptosis in U251 and U87 GBM cell lines; ↓ tumor growth in U251 and U87 GBM xenografts in mice | [ | |
| 8 | Ginsenoside RG3 | ↑ TMZ sensitivity, ↓ VEGF-A and BCl-2 in HUVEC and rat glioma cell lines; | [ | |
| 9 | Iris versicolor | Iridin | ↓ intracranial growth of U87 and G144 GBM xenografts in mice | [ |
Figure 2Natural products modulating blood brain barrier permeability
Natural products aid the permeation of chemotherapeutic drugs in the brain. On the left of the diagram I: A- shows the influx of sugars and amino acids from the blood to the brain by a selective nutrient transporter in the endothelial cells, identified as solute carrier proteins and passive diffusion of chemotherapeutic lipophilic drugs; B- showing P-gp present in the endothelial cells pumps out most drugs in a ATP dependent manner and lowers the drug concentrations in the brain. On the right side of diagram II: C & D- shows natural compounds like procyanidine and scillarenin inhibit P-gp protein thereby allow accumulation of drug () in the brain to reduce the tumor burden. TJ, Tight junctions; EC, endothelial cells; P-gp, P-glycoprotein; PC, pericytes; AE, astrocytic endfoot; MG, microglia.