Hurdles in selection process of nanodelivery systems for multidrug-resistant cancer
P S Thakur1, A M Khan1, S Talegaonkar1
1Department of Pharmaceutics, Faculty of Pharmacy, Jamia Hamdard, New Delhi, India.
Purpose:
Most of the nanomedicines for treatment of multidrug-resistant cancer do not reach Phase III trials and many are terminated or withdrawn or are in an indeterminate state since long without any study results being presented. Extensive perusal of nanomedicine development research revealed that one of the critical aspects influencing clinical outcomes and which requires diligent scrutiny is selection process of nanodelivery system.
Methods:
Research papers and articles published on development of nanodelivery systems for treatment of multidrug-resistant cancer were analyzed. Observations and conclusions noted by these researchers which might shed some light on poor clinical performance of nanocarriers were collated and summarized under observation section. Further research articles were studied to find possible solutions which may be applied to these particular problems for resolving them. The inferences of these findings were composed in Result section.
Result:
Plausible solutions for the observed obstacles were noted as examples of novel formulations that can yield the following: better in vivo imaging, precise targeting and dosing of a specific site and specific cell type in a particular cancer, modulation of tumor surroundings, intonation of systemic effects and high reproducibility.
Conclusion:
The angle of approach to the development of best nanosystem for a specific type of tumor needs to be spun around. Some of these changes can be brought about by individual scientists, some need to be established by collated efforts of scientists globally and some await advent of better technologies. Regardless of the stratagem, it can be said decisively that the schematics of development phase need rethinking.
Insights
Rethinking nanodelivery system development is crucial for overcoming clinical trial failures in multidrug-resistant cancer treatment. Novel formulations offer improved targeting, imaging, and reproducibility for better patient outcomes.
Area of Science:
- Oncology
- Nanotechnology
- Pharmaceutical Sciences
Background:
- Many nanomedicines for multidrug-resistant cancer fail to progress beyond early clinical trials.
- The selection of nanodelivery systems is a critical, yet often overlooked, factor impacting clinical success.
Purpose of the Study:
- To analyze the reasons behind the poor clinical performance of nanocarriers in multidrug-resistant cancer.
- To identify and propose solutions for improving nanodelivery system development for enhanced therapeutic efficacy.
Main Methods:
- Systematic review and analysis of research papers on nanodelivery systems for multidrug-resistant cancer.
- Collating observations on obstacles and identifying potential solutions from existing literature.
Main Results:
- Identified key obstacles in nanodelivery system development.
- Proposed novel formulations enabling improved in vivo imaging, precise targeting, and modulated tumor microenvironments.
- Highlighted potential for reduced systemic effects and increased reproducibility.
Conclusions:
- Current approaches to nanodelivery system development require significant rethinking.
- A multi-faceted strategy involving individual research, global collaboration, and technological advancements is necessary.
- Revising development schematics is essential for advancing nanomedicine in cancer therapy.
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