| Literature DB >> 29290821 |
Conglian Yang1, Tingting Wu1, Yan Qi1, Zhiping Zhang1,2,3.
Abstract
D-ɑ-tocopheryl polyethylene glycol succinate (Vitamin E TPGS or TPGS) has been approved by FDA as a safe adjuvant and widely used in drug delivery systems. The biological and physicochemical properties of TPGS provide multiple advantages for its applications in drug delivery like high biocompatibility, enhancement of drug solubility, improvement of drug permeation and selective antitumor activity. Notably, TPGS can inhibit the activity of ATP dependent P-glycoprotein and act as a potent excipient for overcoming multi-drug resistance (MDR) in tumor. In this review, we aim to discuss the recent advances of TPGS in drug delivery including TPGS based prodrugs, nitric oxide donor and polymers, and unmodified TPGS based formulations. These potential applications are focused on enhancing delivery efficiency as well as the therapeutic effect of agents, especially on overcoming MDR of tumors. It also demonstrates that the clinical translation of TPGS based nanomedicines is still faced with many challenges, which requires more detailed study on TPGS properties and based delivery system in the future.Entities:
Keywords: TPGS; Vitamin E; anticancer.; drug delivery; multi-drug resistance
Mesh:
Substances:
Year: 2018 PMID: 29290821 PMCID: PMC5743561 DOI: 10.7150/thno.22711
Source DB: PubMed Journal: Theranostics ISSN: 1838-7640 Impact factor: 11.556
TPGS based prodrugs in drug delivery
| Prodrug | Payload | Tumor model | Effects | Ref |
|---|---|---|---|---|
| TPGS-DOX | DOX | Resistant breast cancer, melanoma, hepatoma | 95-fold lower IC50 in MCF-7/ADR | |
| TPGS-DOX | DOX | Breast, glioma cancer | High cellular uptake and cytotoxicity | |
| TPGS-DOX | DOX, Ce6 | Non-small cell lung cancer | Good tumor targeting, high apoptosis, tumor growth suppression in A549 cells | |
| TPGS-PTX | PTX | Resistant ovarian cancer, hepatoma | PTX accumulation in A2780/T, cytotoxicity against A2780 and A2780/T, S180 tumor inhibition | |
| TPGS-cisplatin | Cisplatin | Hepatoma | High cell uptake and cytotoxicity, significant neuroprotective effects | |
| TPGS-cisplatin | Cisplatin, DTX, Herceptin | Breast cancer | Enhanced cytotoxicity against SK-BR-3 cells with overexpression of HER2 | |
| TPGS-5-FU | 5-FU, PTX | Resistant breast cancer, lung cancer | Cytotoxicity, P-gp inhibition in H460/TaxR cells | |
| TPGS-5-FU | 5-FU, PTX | Resistant epidermal carcinoma | P-gp, β-tubulin, and p53 protein extracted from KB-8-5 cells, tumor growth inhibition in KB-3-1 and KB-8-5 tumor model | |
| TPGS- mitoxantrone | Mitoxantrone | Resistant breast cancer | Cell cytotoxicity against MCF7 and MCF7/ADR cells | |
| TPGS- | Gemcitabine | Pancreatic cancer | Improved cytotoxicity against pancreatic cancer BxPC-3 | |
| TPGS- cantharidin | Cantharidin | Colorectal breast cancer | Increased cytotoxicity on folate overexpressed HT-29 cells but not on lower expressed MCF-7 cells |
TPGS based polymers in drug delivery
| Polymer | Payload | Tumor model | Effects | Ref |
|---|---|---|---|---|
| PLA-SS-TPGS | PTX | Melanoma, Hepatoma | 3.1-fold AUC, 7.3-fold MRT | |
| PLA-TPGS, TPGS-COOH | Iron oxides, Herceptin, DTX | HER2-positive breast cancer | More efficient cytotoxicity than the physical mixture of the corresponding single modality treatment | |
| TAPP-PLA- | DTX | Cervical cancer | High drug loading efficiency, good cytotoxicity towards cervical carcinoma after irradiation | |
| Cholic acid-PLGA- | DTX | Cervical cancer | Higher cellular uptake efficiency and better antitumor efficacy compared with the linear copolymer based nanoparticles | |
| TAPP-PCL- | DTX, porphine | Cervical cancer | Enhanced cytotoxicity on MCF-7/ADR cells and synergistic antitumor effect by chemo-photodynamic therapy on cervical cancer xenograft model | |
| MPEG-PCL-TPGS | PTX | Resistant lung cancer | Remarkable tumor inhibition on the resistant lung cancer | |
| (PCL-ran-PGA)- | TRAIL, endostatin | Cervical cancer | Increased cytotoxicity on HeLa cells induced by TRAIL/endostatin-loaded nanoparticles | |
| HA-conjugated TPGS | DOX | Resistant breast cancer | ROS regeneration and P-gp inhibition | |
| PBAE- | DTX | Resistant ovarian cancer | 22- and 100-fold lower IC50 against A2780 and A2780/T cells, respectively | |
| PBAE- | PTX | Resistant breast cancer | Stimuli-responsive release of PTX, targeted drug delivery to tumor and remarkable MCF-7/ADR tumor inhibition | |
| Chitosan- | DOX | Hepatoma | 2.4-fold AUC, 2.0-fold MRT | |
| iRGD-TPGS | PTX | Resistant lung cancer | Significant drug accumulation, downregulation of Survivin expression, and tumor apoptosis | |
| PLA-PGS, | DOX, Ce6 | DOX-resistant breast cancer | ||
| Transferrin conjugated TPGS | DTX, gold clusters | Breast cancer | ||
| 4-arm-PEG-TPGS | PTX | Hepatoma | Significant |
Unmodified TPGS based formulations for overcoming MDR
| Formulations | Payload | Tumor model | Effects | Ref |
|---|---|---|---|---|
| TPGS nanocrystals | PTX | Resistant lung cancer | 5-fold increase on tumor inhibitory rate on H460/RT | |
| TPGS/MCT/Tween 80 nanoemulsions | PTX | Resistant breast cancer | P-gp activity inhibition, 94% inhibitory rate in MCF-7/ADR bearing nude mice | |
| TPGS/PEG- | DOX | Resistant breast cancer | P-gp activity inhibition, tumor inhibition in MCF-7/ADR bearing nude mice | |
| TPGS/MPEG-SS-2SA mixed micelles | PTX | Resistant breast cancer | Cytotoxicity, P-gp inhibition on MCF-7/PTX | |
| TPGS/cholesterol/DSPE-PEG/DQA-PEG-DSPE liposomes | Epirubicin/LND | Resistant non-small cell lung cancer | Targeted accumulation in mitochondria, enhanced antitumor efficacy of combination of both drug-loaded liposomes in A549/cDDP cancer | |
| TPGS/EPC/cholesterol/DSPE-PEG/DQA-PEG-DSPE liposomes | Topotecan | Resistant breast cancer | Mitochondrial targeting effect, tumor inhibition on MCF-7/ADR tumor bearing mice, anti-metastasis effect on melanoma | |
| TPGS/HA cationic liposomes | PTX/LND | Resistant breast cancer | Inhibition on intracellular ATP production, cell apoptosis and cytotoxicity, MCF-7/MDR tumor inhibition | |
| TPGS | PTX/TQR | Resistant breast cancer | IL-10 production by MCF-7/ADR cells, cell viability, P-gp expression | |
| TPGS/DSPE-PEG mixed micelles | DOX/ | Resistant non-small cell lung cancer | Cytotoxicity and endocytosis on A549/ADR cells, antitumor effect on LLC-tumor bearing mice | |
| TPGS/Poloxamer 407 mixed micelles | Gambogic acid | Resistant breast cancer | Increased cell uptake and 2.9-fold higher cytotoxicity | |
| TPGS/Poloxamer 407 mixed micelles | CUR | Resistant breast cancer | 3-fold higher cytotoxicity of micelles in NCI/ADR-RES cells | |
| TPGS/Poloxamer 407 mixed micelles | DOX | Resistant ovarian cancer | Enhanced cellular uptake and increased cytotoxicity in SKOV3 and DOX-resistant SKOV3 cells |