Tailoring the physicochemical properties of nanomaterials for immunomodulation

Nanomaterial physicochemical properties affect their immunomodulation. Here, size, surface charge, shape, rigidity and surface chemical composition of nanomaterials are discussed for understanding nanomaterials-induced immune responses. [Display omitted] Immunomodulation is poised to revolutionize t...

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Published inAdvanced drug delivery reviews Vol. 180; p. 114039
Main Authors Deng, Junjie, Wang, Jilong, Shi, Jiaqi, Li, Hongjun, Lu, Mingqin, Fan, Zhiyuan, Gu, Zhen, Cheng, Hao
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.01.2022
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Abstract Nanomaterial physicochemical properties affect their immunomodulation. Here, size, surface charge, shape, rigidity and surface chemical composition of nanomaterials are discussed for understanding nanomaterials-induced immune responses. [Display omitted] Immunomodulation is poised to revolutionize the treatment of cancer, autoimmune diseases, and many other inflammation-related disorders. The immune system in these conditions can be either activated or suppressed by nanocarriers loaded with bioactive molecules. Although immunomodulation via these therapeutics has long been recognized, and a broad range of nanocarriers have been designed to accommodate varied usages, less studies have focused on the effects of nanomaterial physicochemical properties on immune responses, especially the immunity altered by nanocarrier materials alone. Conclusions are sometimes seemly inconsistent due to the complexities of nanomaterials and the immune system. An in-depth understanding of the nanocarrier-induced immune responses is essential for clinical applications. In this review, we summarize recent studies of the immune responses influenced by nanomaterial physicochemical properties with an emphasis on the intrinsic features of nanomaterials that modulate the innate and adaptive immunities. We then provide our perspectives on the design of nanomaterials for immunomodulation.
AbstractList Immunomodulation is poised to revolutionize the treatment of cancer, autoimmune diseases, and many other inflammation-related disorders. The immune system in these conditions can be either activated or suppressed by nanocarriers loaded with bioactive molecules. Although immunomodulation via these therapeutics has long been recognized, and a broad range of nanocarriers have been designed to accommodate varied usages, less studies have focused on the effects of nanomaterial physicochemical properties on immune responses, especially the immunity altered by nanocarrier materials alone. Conclusions are sometimes seemly inconsistent due to the complexities of nanomaterials and the immune system. An in-depth understanding of the nanocarrier-induced immune responses is essential for clinical applications. In this review, we summarize recent studies of the immune responses influenced by nanomaterial physicochemical properties with an emphasis on the intrinsic features of nanomaterials that modulate the innate and adaptive immunities. We then provide our perspectives on the design of nanomaterials for immunomodulation.
Nanomaterial physicochemical properties affect their immunomodulation. Here, size, surface charge, shape, rigidity and surface chemical composition of nanomaterials are discussed for understanding nanomaterials-induced immune responses. [Display omitted] Immunomodulation is poised to revolutionize the treatment of cancer, autoimmune diseases, and many other inflammation-related disorders. The immune system in these conditions can be either activated or suppressed by nanocarriers loaded with bioactive molecules. Although immunomodulation via these therapeutics has long been recognized, and a broad range of nanocarriers have been designed to accommodate varied usages, less studies have focused on the effects of nanomaterial physicochemical properties on immune responses, especially the immunity altered by nanocarrier materials alone. Conclusions are sometimes seemly inconsistent due to the complexities of nanomaterials and the immune system. An in-depth understanding of the nanocarrier-induced immune responses is essential for clinical applications. In this review, we summarize recent studies of the immune responses influenced by nanomaterial physicochemical properties with an emphasis on the intrinsic features of nanomaterials that modulate the innate and adaptive immunities. We then provide our perspectives on the design of nanomaterials for immunomodulation.
ArticleNumber 114039
Author Cheng, Hao
Li, Hongjun
Deng, Junjie
Fan, Zhiyuan
Gu, Zhen
Wang, Jilong
Shi, Jiaqi
Lu, Mingqin
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  surname: Deng
  fullname: Deng, Junjie
  organization: Joint Centre of Translational Medicine, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325000, China
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  givenname: Jilong
  surname: Wang
  fullname: Wang, Jilong
  organization: Joint Centre of Translational Medicine, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325000, China
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  givenname: Jiaqi
  surname: Shi
  fullname: Shi, Jiaqi
  organization: College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China
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  givenname: Hongjun
  surname: Li
  fullname: Li, Hongjun
  organization: College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China
– sequence: 5
  givenname: Mingqin
  surname: Lu
  fullname: Lu, Mingqin
  organization: Joint Centre of Translational Medicine, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325000, China
– sequence: 6
  givenname: Zhiyuan
  surname: Fan
  fullname: Fan, Zhiyuan
  organization: Department of Materials Science and Engineering, Drexel University, Philadelphia, PA 19104, USA
– sequence: 7
  givenname: Zhen
  surname: Gu
  fullname: Gu, Zhen
  email: guzhen@zju.edu.cn
  organization: College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China
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  givenname: Hao
  surname: Cheng
  fullname: Cheng, Hao
  email: hcheng@drexel.edu
  organization: Department of Materials Science and Engineering, Drexel University, Philadelphia, PA 19104, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/34742825$$D View this record in MEDLINE/PubMed
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Snippet Nanomaterial physicochemical properties affect their immunomodulation. Here, size, surface charge, shape, rigidity and surface chemical composition of...
Immunomodulation is poised to revolutionize the treatment of cancer, autoimmune diseases, and many other inflammation-related disorders. The immune system in...
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SubjectTerms Complement
Drug delivery
Drug Delivery Systems
Humans
Immunoengineering
Immunologic Factors - chemistry
Immunotherapy
Nanomaterials
Nanoparticles - chemistry
Title Tailoring the physicochemical properties of nanomaterials for immunomodulation
URI https://dx.doi.org/10.1016/j.addr.2021.114039
https://www.ncbi.nlm.nih.gov/pubmed/34742825
https://search.proquest.com/docview/2595119515
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