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Updated: Feb 15, 2026

Spatial Measurements of Perfusion, Interstitial Fluid Pressure and Liposomes Accumulation in Solid Tumors
Published on: August 18, 2016
Surface Functionalization and Targeting Strategies of Liposomes in Solid Tumor Therapy: A Review
Muhammad Kashif Riaz1, Muhammad Adil Riaz2, Xue Zhang3
1School of Chinese Medicine, Hong Kong Baptist University, 7 Baptist University Road, Kowloon Tong, Kowloon, Hong Kong, China. kashif@life.hkbu.edu.hk.
Abstract:
Surface functionalization of liposomes can play a key role in overcoming the current limitations of nanocarriers to treat solid tumors, i.e., biological barriers and physiological factors. The phospholipid vesicles (liposomes) containing anticancer agents produce fewer side effects than non-liposomal anticancer formulations, and can effectively target the solid tumors. This article reviews information about the strategies for targeting of liposomes to solid tumors along with the possible targets in cancer cells, i.e., extracellular and intracellular targets and targets in tumor microenvironment or vasculature. Targeting ligands for functionalization of liposomes with relevant surface engineering techniques have been described. Stimuli strategies for enhanced delivery of anticancer agents at requisite location using stimuli-responsive functionalized liposomes have been discussed. Recent approaches for enhanced delivery of anticancer agents at tumor site with relevant surface functionalization techniques have been reviewed. Finally, current challenges of functionalized liposomes and future perspective of smart functionalized liposomes have been discussed.
Insights
Surface functionalization of liposomes enhances anticancer drug delivery to solid tumors by overcoming biological barriers. This review covers targeting strategies, ligands, and stimuli-responsive approaches for improved cancer treatment.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Liposomes offer reduced side effects compared to conventional chemotherapy.
- Current nanocarrier limitations include biological barriers and physiological factors in solid tumors.
Purpose of the Study:
- To review strategies for targeting liposomes to solid tumors.
- To discuss surface engineering techniques and stimuli-responsive approaches for enhanced drug delivery.
Main Methods:
- Literature review of targeting strategies for liposomes.
- Analysis of extracellular, intracellular, and tumor microenvironment targets.
- Discussion of targeting ligands and surface functionalization techniques.
Main Results:
- Functionalized liposomes can effectively target solid tumors.
- Stimuli-responsive liposomes enhance drug delivery to the tumor site.
- Surface engineering improves liposome efficacy in cancer treatment.
Conclusions:
- Surface functionalization is crucial for overcoming nanocarrier limitations in solid tumor treatment.
- Smart functionalized liposomes hold significant future potential for targeted cancer therapy.
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