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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Emerging Nano-Based Strategies Against Drug Resistance in Tumor Chemotherapy
Lei Cao1, Yuqin Zhu1, Weiju Wang2
1Department of Pathology, Quanzhou Women's and Children's Hospital, Quanzhou, China.
Abstract:
Drug resistance is the most significant causes of cancer chemotherapy failure. Various mechanisms of drug resistance include tumor heterogeneity, tumor microenvironment, changes at cellular levels, genetic factors, and other mechanisms. In recent years, more attention has been paid to tumor resistance mechanisms and countermeasures. Nanomedicine is an emerging treatment platform, focusing on alternative drug delivery and improved therapeutic effectiveness while reducing side effects on normal tissues. Here, we reviewed the principal forms of drug resistance and the new possibilities that nanomaterials offer for overcoming these therapeutic barriers. Novel nanomaterials based on tumor types are an excellent modality to equalize drug resistance that enables gain more rational and flexible drug selectivity for individual patient treatment. With the emergence of advanced designs and alternative drug delivery strategies with different nanomaterials, overcome of multidrug resistance shows promising and opens new horizons for cancer therapy. This review discussed different mechanisms of drug resistance and recent advances in nanotechnology-based therapeutic strategies to improve the sensitivity and effectiveness of chemotherapeutic drugs, aiming to show the advantages of nanomaterials in overcoming of drug resistance for tumor chemotherapy, which could accelerate the development of personalized medicine.
Insights
Drug resistance is a major cause of chemotherapy failure. Nanomedicine offers promising strategies to overcome drug resistance and improve cancer treatment effectiveness, paving the way for personalized medicine.
Area of Science:
- Oncology
- Nanotechnology
- Drug Delivery
Background:
- Drug resistance is a primary challenge in cancer chemotherapy, leading to treatment failure.
- Mechanisms include tumor heterogeneity, microenvironment, cellular changes, and genetic factors.
- Nanomedicine presents a novel approach to enhance drug delivery and therapeutic efficacy while minimizing toxicity.
Purpose of the Study:
- To review principal forms of cancer drug resistance.
- To explore the potential of nanomaterials in overcoming therapeutic barriers.
- To discuss nanotechnology-based strategies for improving chemotherapy effectiveness.
Main Methods:
- Literature review of cancer drug resistance mechanisms.
- Analysis of current nanomedicine applications in overcoming resistance.
- Discussion of advanced nanomaterial designs and drug delivery strategies.
Main Results:
- Nanomaterials offer tailored solutions for drug resistance based on tumor types.
- Advanced nanotechnological approaches show promise in overcoming multidrug resistance.
- Nanomaterials enable rational and flexible drug selectivity for personalized cancer treatment.
Conclusions:
- Nanomedicine provides a powerful platform for overcoming cancer drug resistance.
- Nanotechnology-based strategies enhance chemotherapeutic drug sensitivity and effectiveness.
- The application of nanomaterials in cancer therapy accelerates the development of personalized medicine.
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