Tailored nanoplatforms with detachable 'meteorolite' for photothermal-enhanced programmed tumor therapy. (31st October 2022)
- Record Type:
- Journal Article
- Title:
- Tailored nanoplatforms with detachable 'meteorolite' for photothermal-enhanced programmed tumor therapy. (31st October 2022)
- Main Title:
- Tailored nanoplatforms with detachable 'meteorolite' for photothermal-enhanced programmed tumor therapy
- Authors:
- Zhao, Qinfu
Zhang, Yunran
Yu, Tong
Lu, Junya
Sun, Guangxiang
Luo, Xinyi
Wang, Siling - Abstract:
- Abstract: The premature drug release, multidrug resistance, and limited tumor penetration ability have vastly weakened the chemotherapy effect. To surmount this dilemma, iRGD modified red-light emitting carbon dots (CDR ) were gated on paclitaxel (PTX) loaded hollow mesoporous carbon (HMC) via cleavable disulfide bonds for photothermal-enhanced programmed tumor therapy. The HMC vehicles were designed based on their high photothermal conversion efficiency and tailored mesoporous structure with considerable drug loading capacity. The fluorescent CDR worked as the smart gatekeepers to prevent premature release, photothermal agents to enhance the photothermal effect of HMC, and the fluorescent agent to visualize the delivery process. The modification of iRGD peptide could promote the targeting and penetration capacities of PTX/HMC-CD-iRGD. The tailored nanoplatforms could promptly divide into (1) unlocked PTX/HMC for synergistic thermo-chemotherapy on the surface of tumor cells, and (2) abundant CDR -iRGD as detachable 'meteorolite' with enhanced penetration ability to realize photothermal ablation at the deep-seated tumor. PTX/HMC-CD-iRGD showed outstanding synergistic cells killing efficiency of chemotherapy and photothermal therapy at different depths, exhibiting great potential in clinical application. Graphical abstract: Image 1 Highlights: Hollow mesoporous carbon (HMC) was used as a NIR-absorbing carrier with high loading. CDR worked as the smart gatekeepers, photothermalAbstract: The premature drug release, multidrug resistance, and limited tumor penetration ability have vastly weakened the chemotherapy effect. To surmount this dilemma, iRGD modified red-light emitting carbon dots (CDR ) were gated on paclitaxel (PTX) loaded hollow mesoporous carbon (HMC) via cleavable disulfide bonds for photothermal-enhanced programmed tumor therapy. The HMC vehicles were designed based on their high photothermal conversion efficiency and tailored mesoporous structure with considerable drug loading capacity. The fluorescent CDR worked as the smart gatekeepers to prevent premature release, photothermal agents to enhance the photothermal effect of HMC, and the fluorescent agent to visualize the delivery process. The modification of iRGD peptide could promote the targeting and penetration capacities of PTX/HMC-CD-iRGD. The tailored nanoplatforms could promptly divide into (1) unlocked PTX/HMC for synergistic thermo-chemotherapy on the surface of tumor cells, and (2) abundant CDR -iRGD as detachable 'meteorolite' with enhanced penetration ability to realize photothermal ablation at the deep-seated tumor. PTX/HMC-CD-iRGD showed outstanding synergistic cells killing efficiency of chemotherapy and photothermal therapy at different depths, exhibiting great potential in clinical application. Graphical abstract: Image 1 Highlights: Hollow mesoporous carbon (HMC) was used as a NIR-absorbing carrier with high loading. CDR worked as the smart gatekeepers, photothermal agents and the fluorescent tracker. The iRGD can promote the targeting and penetration of PTX/HMC-CD-iRGD. CDR -iRGD and HMC were combined for enhanced thermochemotherapy at different depths. … (more)
- Is Part Of:
- Carbon. Volume 199(2022)
- Journal:
- Carbon
- Issue:
- Volume 199(2022)
- Issue Display:
- Volume 199, Issue 2022 (2022)
- Year:
- 2022
- Volume:
- 199
- Issue:
- 2022
- Issue Sort Value:
- 2022-0199-2022-0000
- Page Start:
- 119
- Page End:
- 131
- Publication Date:
- 2022-10-31
- Subjects:
- Hollow mesoporous carbon -- Red-light emitting carbon dots -- Tumor-targeting and permeability -- Paclitaxel -- Programmed synergetic therapy
Carbon -- Periodicals
Carbone -- Périodiques
Koolstof
Toepassingen
Electronic journals
546.681 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00086223 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.carbon.2022.07.073 ↗
- Languages:
- English
- ISSNs:
- 0008-6223
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3050.991000
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