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Manufacture and Drug Delivery Applications of Silk Nanoparticles
Published on: October 8, 2016
Recent Studies and Progress in the Intratumoral Administration of Nano-Sized Drug Delivery Systems
Wan Su Yun1, Jeongrae Kim1, Dong-Kwon Lim1
1Korea Institute of Science and Technology (KU-KIST), Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea.
Abstract:
Over the last 30 years, diverse types of nano-sized drug delivery systems (nanoDDSs) have been intensively explored for cancer therapy, exploiting their passive tumor targetability with an enhanced permeability and retention effect. However, their systemic administration has aroused some unavoidable complications, including insufficient tumor-targeting efficiency, side effects due to their undesirable biodistribution, and carrier-associated toxicity. In this review, the recent studies and advancements in intratumoral nanoDDS administration are generally summarized. After identifying the factors to be considered to enhance the therapeutic efficacy of intratumoral nanoDDS administration, the experimental results on the application of intratumoral nanoDDS administration to various types of cancer therapies are discussed. Subsequently, the reports on clinical studies of intratumoral nanoDDS administration are addressed in short. Intratumoral nanoDDS administration is proven with its versatility to enhance the tumor-specific accumulation and retention of therapeutic agents for various therapeutic modalities. Specifically, it can improve the efficacy of therapeutic agents with poor bioavailability by increasing their intratumoral concentration, while minimizing the side effect of highly toxic agents by restricting their delivery to normal tissues. Intratumoral administration of nanoDDS is considered to expand its application area due to its potent ability to improve therapeutic effects and relieve the systemic toxicities of nanoDDSs.
Insights
Intratumoral nano-drug delivery systems (nanoDDSs) offer improved cancer therapy by directly targeting tumors. This approach enhances drug efficacy and reduces side effects compared to systemic administration.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Nano-sized drug delivery systems (nanoDDSs) have been explored for cancer therapy for 30 years, utilizing passive tumor targeting via the enhanced permeability and retention effect.
- Systemic administration of nanoDDSs faces challenges including insufficient tumor targeting, adverse biodistribution, and carrier toxicity.
Purpose of the Study:
- To summarize recent advancements in intratumoral nanoDDS administration for cancer therapy.
- To identify factors enhancing therapeutic efficacy of intratumoral nanoDDS administration.
- To discuss experimental and clinical applications of intratumoral nanoDDS administration.
Main Methods:
- Review of recent studies and advancements in intratumoral nanoDDS administration.
- Analysis of factors influencing therapeutic efficacy.
- Discussion of experimental results across various cancer therapies and clinical studies.
Main Results:
- Intratumoral nanoDDS administration enhances tumor-specific accumulation and retention of therapeutic agents.
- Improves efficacy of drugs with poor bioavailability by increasing intratumoral concentration.
- Minimizes systemic side effects of toxic agents by localizing delivery.
Conclusions:
- Intratumoral nanoDDS administration is a versatile strategy for improving cancer therapy.
- This method enhances therapeutic effects and reduces systemic toxicities associated with nanoDDSs.
- Intratumoral delivery is poised for expanded application in cancer treatment.
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