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Nanomedicine as an emerging platform for metastatic lung cancer therapy
Dalit Landesman-Milo1, Srinivas Ramishetti, Dan Peer
1Laboratory of NanoMedicine, Department of Cell Research and Immunology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, 69978, Israel.
Abstract:
Metastatic lung cancer is one of the most common cancers leading to mortality worldwide. Current treatment includes chemo- and pathway-dependent therapy aiming at blocking the spread and proliferation of these metastatic lesions. Nanomedicine is an emerging multidisciplinary field that offers unprecedented access to living cells and promises the state of the art in cancer detection and treatment. Development of nanomedicines as drug carriers (nanocarriers) that target cancer for therapy draws upon principles in the fields of chemistry, medicine, physics, biology, and engineering. Given the zealous activity in the field as demonstrated by more than 30 nanocarriers already approved for clinical use and given the promise of recent clinical results in various studies, nanocarrier-based strategies are anticipated to soon have a profound impact on cancer medicine and human health. Herein, we will detail the latest innovations in therapeutic nanomedicine with examples from lipid-based nanoparticles and polymer-based approaches, which are engineered to deliver anticancer drugs to metastatic lung cells. Emphasis will be placed on the latest and most attractive delivery platforms, which are developed specifically to target lung metastatic tumors. These novel nanomedicines may open new avenues for therapeutic intervention carrying new class of drugs such as RNAi and mRNA and the ability to edit the genome using the CRISPER/Cas9 system. Ultimately, these strategies might become a new therapeutic modality for advanced-stage lung cancer.
Insights
Nanomedicine innovations, including lipid and polymer nanocarriers, offer advanced drug delivery for metastatic lung cancer. These targeted nanocarriers promise new therapies, potentially impacting advanced lung cancer treatment.
Area of Science:
- Oncology
- Nanomedicine
- Biotechnology
Background:
- Metastatic lung cancer is a leading cause of cancer mortality globally.
- Current treatments involve chemotherapy and targeted therapies with limitations.
- Nanomedicine offers novel approaches for cancer detection and treatment.
Purpose of the Study:
- To review the latest innovations in therapeutic nanomedicine for metastatic lung cancer.
- To highlight nanocarrier systems, focusing on lipid-based and polymer-based approaches.
- To discuss the potential of novel nanomedicines in treating advanced-stage lung cancer.
Main Methods:
- Review of recent advancements in nanomedicine for cancer therapy.
- Focus on nanocarrier design for targeted drug delivery to lung metastases.
- Exploration of emerging therapeutic payloads like RNAi, mRNA, and CRISPR/Cas9.
Main Results:
- Over 30 nanocarriers are approved for clinical use, indicating field maturity.
- Nanocarrier-based strategies show promise in clinical studies for various cancers.
- Targeted nanomedicines are being engineered to deliver anticancer drugs to lung metastatic cells.
Conclusions:
- Nanomedicine holds significant promise for transforming lung cancer treatment.
- Novel nanocarrier platforms can deliver advanced therapeutics, including gene-editing tools.
- These strategies may represent a new therapeutic modality for advanced-stage lung cancer.

