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Published on: August 2, 2016
The Targeted-liposome Delivery System of Antitumor Drugs
Wei-dang Wu, Xiu-lin Yi, Li-xin Jiang
1School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, People's Republic of China. liuchangxiao@vip.163.com.
Abstract:
The liposome delivery system has been intensively explored as novel drug delivery system (DDS) for antitumor drugs, due to its safety, selective cytotoxicity, long circulation and slow elimination in blood, which is favorable for cancer therapy. The liposome-based chemotherapeutics are used to treat a variety of cancers to enhance the therapeutic index of antitumor drugs. Here, the author reviewed the important targets for cancer therapy and the pharmacokinetic behavior of liposomal drugs in vivo, as well as the application of the targeting liposomal system in cancer therapy. Considering further application for clinical use, the great challenges of the liposome-based delivery system were also proposed as follows: 1) prepare stealth liposome with steric stabilization and further enhance the therapeutic effects and safety; 2) explore more safe clinical targets and complementary or different types of targeting liposome; 3) thirdly, more investment is needed on the research of pharmacokinetics of the elements such as the ligands (antibody), PEG and lipids of liposome delivery system as well as safety evaluation. Considering the complex process of the liposomal encapsulation drugs in vivo, the author inferred that there are maybe different forms of the encapsulation drug to be internalized by the tumor tissues at the same time and space, although there are little reports on it.
Insights
Liposome drug delivery systems enhance antitumor drug efficacy and safety for cancer therapy. Further research is needed to optimize stealth liposomes, identify new targets, and understand in vivo pharmacokinetics for clinical application.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Pharmacology
Background:
- Liposomes are extensively studied as drug delivery systems (DDS) for antitumor agents.
- Liposomes offer advantages like safety, selective cytotoxicity, and prolonged circulation for cancer therapy.
- Liposome-based chemotherapeutics improve the therapeutic index of anticancer drugs across various cancers.
Purpose of the Study:
- To review key targets for cancer therapy.
- To discuss the in vivo pharmacokinetic behavior of liposomal drugs.
- To explore the application of targeted liposomal systems in cancer treatment and identify future challenges.
Main Methods:
- Literature review of cancer therapy targets.
- Analysis of pharmacokinetic data for liposomal drugs.
- Evaluation of targeted liposome systems in cancer treatment.
Main Results:
- Liposomes enhance the therapeutic index of antitumor drugs.
- Targeted liposomes show promise in cancer therapy.
- Challenges include optimizing stealth liposomes, finding new targets, and understanding pharmacokinetics.
Conclusions:
- Liposome drug delivery systems are crucial for advancing cancer therapy.
- Further research on liposome formulation, targeting, and pharmacokinetics is essential for clinical translation.
- Understanding the complex in vivo drug encapsulation and internalization processes is critical.
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