Engineered Nanomaterials for Immunomodulation: A Review

  • Ragini Singh
  • , Mamta Kumawat
  • , Himanshu Gogoi
  • , Harishkumar Madhyastha
  • , Eric Lichtfouse
  • , Hemant Kumar Daima

Research output: Contribution to journalReview articlepeer-review

13 Scopus citations

Abstract

The immune system usually provides a defense against invading pathogenic microorganisms and any other particulate contaminants. Nonetheless, it has been recently reported that nanomaterials can evade the immune system and modulate immunological responses due to their unique physicochemical characteristics. Consequently, nanomaterial-based activation of immune components, i.e., neutrophils, macrophages, and other effector cells, may induce inflammation and alter the immune response. Here, it is essential to distinguish the acute and chronic modulations triggered by nanomaterials to determine the possible risks to human health. Nanomaterials size, shape, composition, surface charge, and deformability are factors controlling their uptake by immune cells and the resulting immune responses. The exterior corona of molecules adsorbed over nanomaterials surfaces also influences their immunological effects. Here, we review current nanoengineering trends for targeted immunomodulation with an emphasis on the design, safety, and potential toxicity of nanomaterials. First, we describe the characteristics of engineered nanomaterials that trigger immune responses. Then, the biocompatibility and immunotoxicity of nanoengineered particles are debated, because these factors influence applications. Finally, future nanomaterial developments in terms of surface modifications, synergistic approaches, and biomimetics are discussed.

Original languageEnglish
Pages (from-to)727-751
Number of pages25
JournalACS Applied Bio Materials
Volume7
Issue number2
DOIs
StatePublished - 19 Feb 2024

Keywords

  • Surface engineering
  • biocompatibility
  • immunomodulation
  • immunotoxicity
  • nanomedicine

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