A Carrier Free Delivery System of a Monoacylglycerol Lipase Hydrophobic Inhibitor

Author(s):  
Muhammad Adeel ◽  
Gloria Saorin ◽  
Giacomo Boccalon ◽  
Andrea Augusto Sfriso ◽  
Salvatore Parisi ◽  
...  
2020 ◽  
Author(s):  
Jianou Qiao ◽  
Bo Ye ◽  
Bao Zhao ◽  
Kun Wang ◽  
Yilong Guo ◽  
...  

Abstract Background Neutrophil-based drug delivery system possesses excellent advantages in targeting at tumour because neutrophils are easily recruited by chemotactic factor in tumor microenvironment. Herein, we developed a novel tactic of multistage neutrophils-based nanoparticle delivery system for promoting photothermal therapy (PTT) of lung cancer. Results Au nanorod (AuNR) was successfully modified with bovine serum albumin (AuNRB) and further conjugated with RGD (AuNRBR), followed by neutrophil internalisation to obtain neutrophils-based delivery system (AuNRBR/N). The engineered neutrophils efficiently migrated across the epithelial cells due to inflammatory signal. They exhibited better toxicity against Lewis cells with laser irradiation in vitro. Moreover, AuNRBR/N showed significantly more targetability to tumour tissue compared with cell carrier-free AuNRBR, as demonstrated in Lewis tumour-bearing mice. The enhanced tumour homing efficiency of AuNRBR/N together with subsequently released AuNRBR from the neutrophils was favourable for further deep tissue diffusion and contributed to the inhibition of the tumour growth in PTT and improved survival rate (over 120 days). Conclusions Overall results illustrated that the design of cell-based nanoparticle delivery system for PTT of cancer is promising.


2020 ◽  
Vol 18 (1) ◽  
Author(s):  
Bo Ye ◽  
Bao Zhao ◽  
Kun Wang ◽  
Yilong Guo ◽  
Qinguo Lu ◽  
...  

Abstract Background Neutrophil-based drug delivery system possesses excellent advantages in targeting at tumour because neutrophils are easily recruited by chemotactic factor in tumor microenvironment. Herein, we developed a novel tactic of multistage neutrophils-based nanoparticle delivery system for promoting photothermal therapy (PTT) of lung cancer. Results Au nanorod (AuNR) was successfully modified with bovine serum albumin (AuNRB) and further conjugated with RGD (AuNRBR), followed by neutrophil internalisation to obtain neutrophils-based delivery system (AuNRBR/N). The engineered neutrophils efficiently migrated across the epithelial cells due to inflammatory signal. They exhibited better toxicity against Lewis cells with laser irradiation in vitro. Moreover, AuNRBR/N showed significantly more targetability to tumour tissue compared with cell carrier-free AuNRBR, as demonstrated in Lewis tumour-bearing mice. The enhanced tumour homing efficiency of AuNRBR/N together with subsequently released AuNRBR from the neutrophils was favourable for further deep tissue diffusion and contributed to the inhibition of the tumour growth in PTT and improved survival rate (over 120 days). Conclusions Overall results illustrated that the design of cell-based nanoparticle delivery system for PTT of cancer is promising.


2020 ◽  
Author(s):  
Bo Ye ◽  
Bao Zhao ◽  
Kun Wang ◽  
Yilong Guo ◽  
Qinguo Lu ◽  
...  

Abstract Background : Neutrophil-based drug delivery system possesses excellent advantages in targeting at tumour because neutrophils are easily recruited by chemotactic factor in tumor microenvironment. Herein, we developed a novel tactic of multistage neutrophils-based nanoparticle delivery system for promoting photothermal therapy (PTT) of lung cancer. Results: Au nanorod (AuNR) was successfully modified with bovine serum albumin (AuNRB) and further conjugated with RGD (AuNRBR), followed by neutrophil internalisation to obtain neutrophils-based delivery system (AuNRBR/N). The engineered neutrophils efficiently migrated across the epithelial cells due to inflammatory signal. They exhibited better toxicity against Lewis cells with laser irradiation in vitro . Moreover, AuNRBR/N showed significantly more targetability to tumour tissue compared with cell carrier-free AuNRBR, as demonstrated in Lewis tumour-bearing mice. The enhanced tumour homing efficiency of AuNRBR/N together with subsequently released AuNRBR from the neutrophils was favourable for further deep tissue diffusion and contributed to the inhibition of the tumour growth in PTT and improved survival rate (over 120 days). Conclusions: Overall results illustrated that the design of cell-based nanoparticle delivery system for PTT of cancer is promising.


2019 ◽  
Vol 11 (47) ◽  
pp. 44007-44017 ◽  
Author(s):  
Nan Zheng ◽  
Dan Xie ◽  
Chunsen Wang ◽  
Zhiyi Zhang ◽  
Yubin Zheng ◽  
...  

2019 ◽  
Vol 7 (9) ◽  
pp. 3662-3674 ◽  
Author(s):  
Yiming Liu ◽  
Ke Li ◽  
Youshen Wu ◽  
Jingwen Ma ◽  
Peng Tang ◽  
...  

A novel carrier-free dual-drug delivery system (HA-Gn@DPGn NPs) realizes ultralow dose DOX administration while ensuring high tumor comprehensive synergistic therapeutic efficacy.


2021 ◽  
Author(s):  
Adeel Muhammad ◽  
Gloria Saorin ◽  
Giacomo Boccalon ◽  
Andrea Augusto Sfriso ◽  
Salvatore Parisi ◽  
...  

Abstract Background: Monoacylglycerol lipase (MAGL) is an emerging therapeutic target for cancer. It is involved in lipid metabolism and its inhibition impairs many hallmarks of cancer including cell proliferation, migration/invasion and tumor growth. For these reasons, our group has recently developed a potent reversible MAGL inhibitor (MAGL23), which showed promising anticancer activities. Here in, to improve its pharmacological properties, a nanoformulation based on nanocrystals coated with albumin was prepared for therapeutic applications. MAGL23 was solubilized by a nanocrystallization method with Pluronic F-127 and Cetyltrimethylammonium bromide (CTAB) as surfactants into an organic solvent and was recovered as nanocrystals in water after solvent evaporation. Finally, the solubilized nanocrystals were stabilized by human serum albumin to create a smart delivery carrier. Results: An in-silico prediction (lipophilicity, structure at different pH and solubility in water), as well as experimental study (solubility), have been performed to check the chemical properties of the inhibitor and nanocrystals. The solubility in water increases from less than 0.01 mg/mL (0.0008 mg/mL, predicted) up to 0.82 mg/mL in water. The formulated inhibitor maintained its potency in ovarian and colon cancer cell lines as the free drug. Furthermore, the system was thoroughly observed at each step of the solubilization process till the final formulation stage by different spectroscopic techniques and a comparative study was performed to check the effects of Pluronic F-127 and CTAB as surfactants. The formulated system is favorable to release the drug at physiological pH conditions (at pH 7.4, after 24h, less than 20% of compound is released). Conclusions: As per our knowledge, we are reporting the first ever nanoformulation of a MAGL inhibitor, which is promising as a therapeutic system where the MAGL enzyme is involved, especially for cancer therapeutic applications.


Author(s):  
ying Li ◽  
Lihua Zhou ◽  
baode Zhu ◽  
Jingjing Xiang ◽  
Jian Du ◽  
...  

Triptolide (TP) has been one of the most common systemic treatments for inflammatory and immune deseases in China for centuries. However, TP exhibits some disadvantages, such as poor solubility in...


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