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Spatial Measurements of Perfusion, Interstitial Fluid Pressure and Liposomes Accumulation in Solid Tumors
Published on: August 18, 2016
Cholesterol-tuned liposomal membrane rigidity directs tumor penetration and anti-tumor effect
Hangyi Wu1,2, Miaorong Yu2, Yunqiu Miao2
1Department of Pharmaceutics, Shenyang Pharmaceutical University, Shenyang 117004, China.
Abstract:
Recently, liposomes have been widely used in cancer therapeutics, but their anti-tumor effects are suboptimal due to limited tumor penetration. To solve this problem, researchers have made significant efforts to optimize liposomal diameters and potentials, but little attention has been paid to liposomal membrane rigidity. Herein, we sought to demonstrate the effects of cholesterol-tuned liposomal membrane rigidity on tumor penetration and anti-tumor effects. In this study, liposomes composed of hydrogenated soybean phospholipids (HSPC), 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethylene glycol)-2000] (DSPE-PEG2000) and different concentrations of cholesterol were prepared. It was revealed that liposomal membrane rigidity decreased with the addition of cholesterol. Moderate cholesterol content conferred excellent diffusivity to liposomes in simulated diffusion medium, while excessive cholesterol limited the diffusion process. We concluded that the differences of the diffusion rates likely stemmed from the alterations in liposomal membrane rigidity, with moderate rigidity leading to improved diffusion. Next, the in vitro tumor penetration and the in vivo anti-tumor effects were analyzed. The results showed that liposomes with moderate rigidity gained excellent tumor penetration and enhanced anti-tumor effects. These findings illustrate a feasible and effective way to improve tumor penetration and therapeutic efficacy of liposomes by changing the cholesterol content, and highlight the importance of liposomal membrane rigidity.
Insights
Cholesterol-modified liposomes show improved tumor penetration and anti-tumor effects. Moderate membrane rigidity enhances liposome diffusion, optimizing cancer therapeutics delivery and efficacy.
Area of Science:
- Nanomedicine
- Materials Science
- Oncology
Background:
- Liposomes are crucial in cancer therapeutics but face challenges with tumor penetration, limiting efficacy.
- Optimizing liposomal size and charge is common, yet membrane rigidity's role is under-explored.
Purpose of the Study:
- To investigate how cholesterol-induced changes in liposomal membrane rigidity affect tumor penetration and anti-tumor activity.
- To establish a method for enhancing liposome delivery and therapeutic outcomes in cancer treatment.
Main Methods:
- Liposomes were formulated using hydrogenated soybean phospholipids (HSPC), DSPE-PEG2000, and varying cholesterol concentrations.
- Liposomal membrane rigidity, diffusivity in a simulated medium, in vitro tumor penetration, and in vivo anti-tumor effects were evaluated.
Main Results:
- Increased cholesterol content reduced liposomal membrane rigidity.
- Moderate cholesterol levels enhanced liposome diffusivity and tumor penetration.
- Liposomes with moderate rigidity demonstrated superior in vivo anti-tumor efficacy.
Conclusions:
- Liposomal membrane rigidity, modulated by cholesterol content, significantly impacts tumor penetration and therapeutic effectiveness.
- Tailoring cholesterol concentration offers a viable strategy to improve liposome-based cancer therapies.
- Membrane rigidity is a critical factor for optimizing liposomal drug delivery in oncology.
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