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Manufacture and Drug Delivery Applications of Silk Nanoparticles
Published on: October 8, 2016
Protein-based nanocarriers in the management of hard-to-treat solid tumours
Alexander S Evtushenko1, Beatriz Lozano Torres1, Ljiljana Fruk1
1Department of Chemical Engineering and Biotechnology, University of Cambridge, Philippa Fawcett Drive, Cambridge CB3 0AS, United Kingdom..
Abstract:
Despite a steady decline in overall cancer mortality, the survival rates of certain hard-to-treat cancers of the lung, liver, oesophagus, pancreas, and brain remain strikingly low. A key unmet need in this field is the development of effective systemic therapies, for which nanotechnology offers promising solutions. While liposomal formulations have dominated the clinical landscape in oncology, protein-based nanocarriers (NCs) have emerged as biocompatible and biodegradable alternatives with intrinsic biological activity. The most notable example, nanoparticle albumin-bound (nab-)paclitaxel, has been in clinical use since 2005, however the development of new protein-based NCs has since largely stagnated for various reasons. For instance, while albumin has been employed in NC formulation since 1978, its intracellular trafficking remains poorly understood, and the proposed mechanism of tumour uptake based on glycoprotein 60-mediated transcytosis is not supported by adequate evidence. Beyond albumin, twelve other proteins have been explored for NC formulation in hard-to-treat cancers, yet none have progressed to clinical trials due to challenges with reproducibly and immunogenicity. Furthermore, conventional NC fabrication methods such as desolvation and homogenisation face stability and biocompatibility issues, limiting clinical translation. Additional hurdles include suboptimal choice of drug cargo, insufficient tumour targeting, and inadequate preclinical biological validation. To address these issues, this review critically evaluates the current landscape of protein-based NCs (including all multi-protein assemblies in the nature of nab-paclitaxel but excluding antibody-drug conjugates and virus-like nanoparticles) in the context of hard-to-treat cancers and highlights practical strategies to overcome their limitations with the goal of advancing these NCs towards clinical implementation.
Insights
Protein-based nanocarriers (NCs) show promise for hard-to-treat cancers. This review addresses challenges in their development and proposes strategies for clinical advancement, focusing on overcoming limitations in formulation and targeting.
Area of Science:
- Nanomedicine
- Oncology
- Biotechnology
Background:
- Survival rates for lung, liver, oesophageal, pancreatic, and brain cancers remain low.
- Nanotechnology offers potential solutions for effective systemic therapies.
- Protein-based nanocarriers (NCs) are biocompatible alternatives to liposomes, with nanoparticle albumin-bound (nab-)paclitaxel as a key example.
Purpose of the Study:
- To critically evaluate the current landscape of protein-based NCs for hard-to-treat cancers.
- To identify and address limitations hindering clinical translation.
- To propose practical strategies for advancing protein-based NCs.
Main Methods:
- Review of existing literature on protein-based NCs in oncology.
- Analysis of challenges including intracellular trafficking, reproducibility, immunogenicity, fabrication, drug loading, targeting, and validation.
- Identification of successful strategies and future directions.
Main Results:
- Development of protein-based NCs has stagnated due to formulation and biological challenges.
- Albumin's role in NCs is not fully understood, and other protein NCs face hurdles.
- Current fabrication methods and preclinical validation require improvement for clinical success.
Conclusions:
- Overcoming limitations in protein NC formulation, targeting, and validation is crucial.
- Further research and strategic development are needed to advance protein-based nanomedicines for challenging cancers.
- This review provides a roadmap for enhancing the clinical applicability of protein NCs.
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