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Published on: February 9, 2019
Cancer Cell Membrane-Coated Nanoparticles for Cancer Management
Jenna C Harris1, Mackenzie A Scully2, Emily S Day1,2,3
1Materials Science and Engineering, University of Delaware, Newark, DE 19716, USA.
Abstract:
Cancer is a global health problem in need of transformative treatment solutions for improved patient outcomes. Many conventional treatments prove ineffective and produce undesirable side effects because they are incapable of targeting only cancer cells within tumors and metastases post administration. There is a desperate need for targeted therapies that can maximize treatment success and minimize toxicity. Nanoparticles (NPs) with tunable physicochemical properties have potential to meet the need for high precision cancer therapies. At the forefront of nanomedicine is biomimetic nanotechnology, which hides NPs from the immune system and provides superior targeting capabilities by cloaking NPs in cell-derived membranes. Cancer cell membranes expressing "markers of self" and "self-recognition molecules" can be removed from cancer cells and wrapped around a variety of NPs, providing homotypic targeting and circumventing the challenge of synthetically replicating natural cell surfaces. Compared to unwrapped NPs, cancer cell membrane-wrapped NPs (CCNPs) provide reduced accumulation in healthy tissues and higher accumulation in tumors and metastases. The unique biointerfacing capabilities of CCNPs enable their use as targeted nanovehicles for enhanced drug delivery, localized phototherapy, intensified imaging, or more potent immunotherapy. This review summarizes the state-of-the-art in CCNP technology and provides insight to the path forward for clinical implementation.
Insights
Biomimetic nanotechnology uses cancer cell membranes to cloak nanoparticles (NPs), creating cancer cell membrane-wrapped NPs (CCNPs). CCNPs improve targeted cancer therapy by reducing side effects and enhancing treatment efficacy.
Area of Science:
- Biomedical Engineering
- Nanomedicine
- Oncology
Background:
- Conventional cancer treatments often lack specificity, leading to side effects and limited efficacy.
- There is a critical need for targeted therapies to improve patient outcomes in cancer treatment.
- Nanoparticles (NPs) offer potential for precision cancer therapies due to their tunable properties.
Purpose of the Study:
- To review the current state of cancer cell membrane-wrapped nanoparticle (CCNP) technology.
- To highlight the advantages of CCNPs for targeted cancer therapy.
- To discuss the future clinical implementation of CCNP technology.
Main Methods:
- Utilizing biomimetic nanotechnology to cloak NPs with cancer cell membranes.
- Employing cell-derived membranes to provide homotypic targeting and immune evasion.
- Wrapping NPs with cancer cell membranes to create CCNPs.
Main Results:
- CCNPs demonstrate reduced accumulation in healthy tissues compared to conventional NPs.
- CCNPs show higher accumulation in tumors and metastases, enhancing targeted delivery.
- CCNPs offer versatile applications in drug delivery, phototherapy, imaging, and immunotherapy.
Conclusions:
- Cancer cell membrane-wrapped NPs represent a promising advancement in targeted cancer therapy.
- CCNPs offer superior targeting and reduced toxicity, addressing limitations of current treatments.
- Further research and development are crucial for the clinical translation of CCNP technology.
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