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A Comprehensive Procedure to Evaluate the In Vivo Performance of Cancer Nanomedicines
Published on: March 4, 2017
Neutrophil membrane-based nanotherapeutics: Propitious paradigm shift in the management of cancer
Vivek Phatale1, Paras Famta1, Dadi A Srinivasarao1
1Pharmaceutical Innovation and Translational Research Lab (PITRL), Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Hyderabad, India.
Abstract:
Cancer is the leading cause of death across the globe, with 19.3 million new cancer cases and 10 million deaths in the year 2020. Conventional treatment modalities have numerous pitfalls, such as off-site cytotoxicity and poor bioavailability. Nanocarriers (NCs) have been explored to deliver various therapeutic moieties such as chemotherapeutic agents and photothermal agents, etc. However, several limitations, such as rapid clearance by the reticuloendothelial system, poor extravasation into the tumor microenvironment, and low systemic half-life are roadblocks to successful clinical translation. To circumvent the pitfalls of currently available treatment modalities, neutrophil membrane (NM)-based nanotherapeutics have emerged as a promising platform for cancer management. Their versatile features such as natural tumor tropism, tumor-specific accumulation, and prevention from rapid clearance owing to their autologous nature make them an effective anticancer NCs. In this manuscript, we have discussed various methods for isolation, coating and characterization of NM. We have discussed the role of NM-coated nanotherapeutics as neoadjuvant and adjuvant in different treatment modalities, such as chemotherapy, photothermal and photodynamic therapies with rationales behind their inclusion. Clinical hurdles faced during the bench-to-bedside translation with possible solutions have been discussed. We believe that in the upcoming years, NM-coated nanotherapeutics will open a new horizon in cancer management.
Insights
Neutrophil membrane (NM)-based nanotherapeutics offer a promising solution for cancer treatment, overcoming limitations of conventional therapies and nanocarriers (NCs). These NM-coated nanotherapeutics exhibit natural tumor tropism and enhanced accumulation for effective cancer management.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Cancer remains a leading global cause of death, with conventional treatments facing challenges like cytotoxicity and poor bioavailability.
- Existing nanocarriers (NCs) struggle with rapid clearance, poor tumor penetration, and short half-lives, hindering clinical success.
Purpose of the Study:
- To explore neutrophil membrane (NM)-based nanotherapeutics as an advanced platform for cancer management.
- To address the limitations of current cancer treatment modalities and nanocarrier delivery systems.
Main Methods:
- Discussed methods for isolating, coating, and characterizing neutrophil membranes (NM).
- Reviewed the application of NM-coated nanotherapeutics in chemotherapy, photothermal, and photodynamic therapies.
- Examined clinical translation challenges and potential solutions for NM-based nanotherapeutics.
Main Results:
- NM-based nanotherapeutics demonstrate natural tumor tropism and enhanced tumor-specific accumulation.
- Autologous nature of NM prevents rapid clearance, improving systemic half-life and efficacy.
- NM-coated nanotherapeutics show potential as neoadjuvant and adjuvant agents.
Conclusions:
- Neutrophil membrane (NM)-based nanotherapeutics represent a promising advancement in cancer treatment.
- These nanotherapeutics overcome key limitations of conventional therapies and existing nanocarriers.
- NM-coated nanotherapeutics are poised to open new avenues in oncological management and clinical translation.
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