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Updated: Oct 2, 2025

Manufacture and Drug Delivery Applications of Silk Nanoparticles
Published on: October 8, 2016
Recent Progress in Nanostructured Smart Drug Delivery Systems for Cancer Therapy: A Review
Md Ishak Khan1, M Imran Hossain2, M Khalid Hossain3,4
1Department of Neurosurgery, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
Abstract:
Traditional treatment approaches for cancer involve intravenous chemotherapy or other forms of drug delivery. These therapeutic measures suffer from several limitations such as nonspecific targeting, poor biodistribution, and buildup of drug resistances. However, significant technological advancements have been made in terms of superior modes of drug delivery over the last few decades. Technical capability in analyzing the molecular mechanisms of tumor biology, nanotechnology─particularly the development of biocompatible nanoparticles, surface modification techniques, microelectronics, and material sciences─has increased. As a result, a significant number of nanostructured carriers that can deliver drugs to specific cancerous sites with high efficiency have been developed. This particular maneuver that enables the introduction of a therapeutic nanostructured substance in the body by controlling the rate, time, and place is defined as the nanostructured drug delivery system (NDDS). Because of their versatility and ability to incorporate features such as specific targeting, water solubility, stability, biocompatibility, degradability, and ability to reverse drug resistance, they have attracted the interest of the scientific community, in general, and nanotechnologists as well as biomedical scientists. To keep pace with the rapid advancement of nanotechnology, specific technical aspects of the recent NDDSs and their prospects need to be reported coherently. To address these ongoing issues, this review article provides an overview of different NDDSs such as lipids, polymers, and inorganic nanoparticles. In addition, this review also reports the challenges of current NDDSs and points out the prospective research directions of these nanocarriers. From our focused review, we conclude that still now the most advanced and potent field of application for NDDSs is lipid-based, while other significantly potential fields include polymer-based and inorganic NDDSs. However, despite the promises, challenges remain in practical implementations of such NDDSs in terms of dosage and stability, and caution should be exercised regarding biocompatibility of materials. Considering these aspects objectively, this review on NDDSs will be particularly of interest for small-to-large scale industrial researchers and academicians with expertise in drug delivery, cancer research, and nanotechnology.
Insights
Nanostructured drug delivery systems (NDDS) offer improved cancer treatment by targeting tumors precisely. While lipid-based NDDS show great promise, challenges in dosage, stability, and biocompatibility require further research for effective clinical application.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Traditional cancer therapies face limitations like nonspecific targeting and drug resistance.
- Advancements in nanotechnology, material sciences, and molecular biology have enabled superior drug delivery methods.
- Nanostructured Drug Delivery Systems (NDDS) offer controlled drug release at specific sites, improving therapeutic efficiency.
Purpose of the Study:
- To provide a comprehensive overview of recent Nanostructured Drug Delivery Systems (NDDS).
- To discuss various types of NDDS, including lipid-based, polymer-based, and inorganic nanoparticles.
- To highlight current challenges and future research directions for NDDS in cancer treatment.
Main Methods:
- Review of current literature on Nanostructured Drug Delivery Systems (NDDS).
- Analysis of different nanocarrier types: lipids, polymers, and inorganic nanoparticles.
- Evaluation of NDDS characteristics such as targeting, stability, and biocompatibility.
Main Results:
- Lipid-based NDDS are currently the most advanced and potent application.
- Polymer-based and inorganic nanoparticles represent other significantly potential fields for NDDS.
- NDDS offer advantages like specific targeting, improved solubility, stability, and potential to overcome drug resistance.
Conclusions:
- Nanostructured Drug Delivery Systems (NDDS) hold significant promise for targeted cancer therapy.
- Further research is needed to address challenges in dosage, stability, and biocompatibility for practical implementation.
- Lipid-based, polymer-based, and inorganic nanoparticles are key areas for future development in NDDS.
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