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Published on: June 23, 2020
Glycosylated Nanoparticles for Cancer-Targeted Drug Delivery
Sergio Andrés Torres-Pérez1, Cindy Estefani Torres-Pérez1, Martha Pedraza-Escalona2
1Laboratorio de Citopatología Ambiental, Departamento de Morfología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Campus Zacatenco, Mexico City, Mexico.
Abstract:
Nanoparticles (NPs) are novel platforms that can carry both cancer-targeting molecules and drugs to avoid severe side effects due to nonspecific drug delivery in standard chemotherapy treatments. Cancer cells are characterized by abnormal membranes, metabolic changes, the presence of lectin receptors, glucose transporters (GLUT) overexpression, and glycosylation of immune receptors of programmed death on cell surfaces. These characteristics have led to the development of several strategies for cancer therapy, including a large number of carbohydrate-modified NPs, which have become desirable for use in cell-selective drug delivery systems because they increase nanoparticle-cell interactions and uptake of carried drugs. Currently, the potential of NP glycosylation to enhance the safety and efficacy of carried therapeutic antitumor agents has been widely acknowledged, and much information is accumulating in this field. This review seeks to highlight recent advances in NP stabilization, toxicity reduction, and pharmacokinetic improvement and the promising potential of NP glycosylation from the perspective of molecular mechanisms described for drug delivery systems for cancer therapy. From preclinical proof-of-concept to demonstration of therapeutic value in the clinic, the challenges and opportunities presented by glycosylated NPs, with a focus on their applicability in the development of nanodrugs, are discussed in this review.
Insights
Glycosylated nanoparticles (NPs) offer targeted cancer therapy by enhancing drug delivery and reducing side effects. This review explores advances in NP glycosylation for improved cancer treatment safety and efficacy.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Cancer Therapy
Background:
- Cancer cells exhibit unique characteristics like abnormal membranes and receptor overexpression.
- Conventional chemotherapy often causes severe side effects due to non-specific drug delivery.
- Nanoparticles (NPs) offer a promising platform for targeted drug delivery in cancer treatment.
Purpose of the Study:
- To review recent advances in nanoparticle (NP) glycosylation for cancer therapy.
- To highlight the potential of NP glycosylation in improving drug delivery systems.
- To discuss the molecular mechanisms and clinical applications of glycosylated NPs.
Main Methods:
- Review of current literature on nanoparticle (NP) glycosylation strategies.
- Analysis of molecular mechanisms underlying NP-cell interactions and drug uptake.
- Evaluation of preclinical and clinical data on glycosylated NPs for cancer treatment.
Main Results:
- Carbohydrate-modified NPs enhance nanoparticle-cell interactions and drug uptake.
- NP glycosylation improves stabilization, reduces toxicity, and enhances pharmacokinetics.
- Glycosylated NPs show significant promise in preclinical and clinical cancer therapy.
Conclusions:
- Glycosylation of nanoparticles is a key strategy for developing safer and more effective cancer nanodrugs.
- Further research into glycosylated NPs can overcome challenges in clinical translation.
- NP glycosylation holds significant potential for advancing targeted cancer therapy.
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