Nanomedicine and macroscale materials in immuno-oncology

Publication date

2019-01-07

Authors

Sun, Qingxue
Barz, Matthias
De Geest, Bruno G.ISNI 0000000392097518
Diken, Mustafa
Hennink, Wim EISNI 0000000390382745
Kiessling, Fabian
Lammers, TwanISNI 0000000057759211
Shi, YangISNI 0000000527247967

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Immunotherapy is revolutionizing the treatment of cancer. It can achieve unprecedented responses in advanced-stage patients, including complete cures and long-term survival. However, immunotherapy also has limitations, such as its relatively low response rates and the development of severe side effects. These drawbacks are gradually being overcome by improving our understanding of the immune system, as well as by establishing combination regimens in which immunotherapy is combined with other treatment modalities. In addition to this, in recent years, progress made in chemistry, nanotechnology and materials science has started to impact immuno-oncology, resulting in more effective and less toxic immunotherapy interventions. In this context, multiple different nanomedicine formulations and macroscale materials have been shown to be able to boost anti-cancer immunity and the efficacy of immunomodulatory drugs. We here review nanotechnological and materials chemistry efforts related to endogenous and exogenous vaccination, to the engineering of antigen-presenting cells and T cells, and to the modulation of the tumor microenvironment. We also discuss limitations, current trends and future directions. Together, the insights provided and the evidence obtained indicate that there is a bright future ahead for engineering nanomedicines and macroscale materials for immuno-oncology applications.

Keywords

Taverne, General Chemistry, SDG 3 - Good Health and Well-being

Citation

Sun, Q, Barz, M, De Geest, B G, Diken, M, Hennink, W E, Kiessling, F, Lammers, T & Shi, Y 2019, 'Nanomedicine and macroscale materials in immuno-oncology', Chemical Society Reviews, vol. 48, no. 1, pp. 351-381. https://doi.org/10.1039/c8cs00473k