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Published on: October 26, 2017
Nanomedicine Innovations for Lung Cancer Diagnosis and Therapy
Valéria Maria de Oliveira Cardoso1, Maria Julia Bistaffa1, Raquel González Sterman1
1Nanomedicine and Nanotoxicology Group, São Carlos Institute of Physics, University of São Paulo, 13560-970 São Carlos, São Paulo, Brazil.
Abstract:
Lung cancer remains a challenge within the realm of oncology. Characterized by late-stage diagnosis and resistance to conventional treatments, the currently available therapeutic strategies encompass surgery, radiotherapy, chemotherapy, immunotherapy, and biological therapy; however, overall patient survival remains suboptimal. Nanotechnology has ushered in a new era by offering innovative nanomaterials with the potential to precisely target cancer cells while sparing healthy tissues. It holds the potential to reshape the landscape of cancer management, offering hope for patients and clinicians. The assessment of these nanotechnologies follows a rigorous evaluation process similar to that applied to chemical drugs, which includes considerations of their pharmacokinetics, pharmacodynamics, toxicology, and clinical effectiveness. However, because of the characteristics of nanoparticles, standard toxicological tests require modifications to accommodate their unique characteristics. Effective therapeutic strategies demand a profound understanding of the disease and consideration of clinical outcomes, physicochemical attributes of nanomaterials, nanobiointeractions, nanotoxicity, and regulatory compliance to ensure patient safety. This review explores the promise of nanomedicine in lung cancer treatment by capitalizing on its unique physicochemical properties. We address the multifaceted challenges of lung cancer and its tumor microenvironment and provide an overview of recent developments in nanoplatforms for early diagnosis and treatment that can enhance patient outcomes and overall quality of life.
Insights
Nanomedicine offers novel nanomaterials for precise lung cancer targeting, improving treatment outcomes. Rigorous evaluation ensures safety and efficacy, addressing challenges in diagnosis and therapy.
Area of Science:
- Oncology
- Nanotechnology
- Nanomedicine
Background:
- Lung cancer presents significant challenges due to late diagnosis and treatment resistance.
- Current therapies like chemotherapy and immunotherapy offer suboptimal patient survival rates.
- Nanotechnology provides innovative nanomaterials for targeted cancer cell therapy, sparing healthy tissues.
Purpose of the Study:
- To explore the potential of nanomedicine in advancing lung cancer treatment.
- To review recent developments in nanoplatforms for early diagnosis and therapy.
- To highlight the importance of understanding nanomedicine's physicochemical properties, nanobiointeractions, and nanotoxicity for effective application.
Main Methods:
- Review of current literature on nanomedicine applications in lung cancer.
- Analysis of the challenges posed by the lung cancer tumor microenvironment.
- Examination of assessment processes for nanotechnologies, including pharmacokinetics, pharmacodynamics, and toxicology.
Main Results:
- Nanomaterials offer precise targeting capabilities for lung cancer cells.
- Nanomedicine can potentially reshape cancer management and improve patient survival.
- Modified toxicological tests are necessary to evaluate nanoparticle characteristics.
Conclusions:
- Effective lung cancer nanomedicine requires understanding disease, clinical outcomes, nanomaterial properties, and regulatory compliance.
- Nanomedicine holds promise for enhancing patient outcomes and quality of life in lung cancer.
- Further research into nanobiointeractions and nanotoxicity is crucial for safe and effective clinical translation.
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