Literature DB >> 29323870

Cell Membrane Bioconjugation and Membrane-Derived Nanomaterials for Immunotherapy.

Peter Y Li1, Zhiyuan Fan1, Hao Cheng1.   

Abstract

Cell membrane engineering, including live cell membrane bioconjugation and cell membrane-derived nanomaterials is a highly promising strategy to modulate immune responses for treating diseases. Many cell membrane engineering methods have potential for translation for human clinical use in the near future. In this Topical Review, we summarize the cell membrane conjugation strategies that have been investigated for cancer immunotherapy, the prevention of immune rejection to donor cells and tissues, and the induction of antigen-specific tolerance in autoimmune diseases. Additionally, cell membrane-derived or membrane-coated nanomaterials are an emerging class of nanomaterials that is attracting significant attention in the field of nanomedicine. Some of these nanomaterials have been employed to elicit immune responses against cancer, toxins, and bacteria, although their application in establishing immune tolerance has not been explored. In addition to discussing potential problems, we provide our perspectives for promising future directions.

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Year:  2018        PMID: 29323870      PMCID: PMC5916811          DOI: 10.1021/acs.bioconjchem.7b00669

Source DB:  PubMed          Journal:  Bioconjug Chem        ISSN: 1043-1802            Impact factor:   4.774


  91 in total

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3.  Chimeric antigen receptor T cells for sustained remissions in leukemia.

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4.  Ethylcarbodiimide as an agent for induction of specific transplant tolerance.

Authors:  C Elliott; K Wang; S Miller; R Melvold
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Review 5.  Vaccines for established cancer: overcoming the challenges posed by immune evasion.

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7.  Stem cell membrane engineering for cell rolling using peptide conjugation and tuning of cell-selectin interaction kinetics.

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Review 10.  PD-L1 (B7-H1) and PD-1 pathway blockade for cancer therapy: Mechanisms, response biomarkers, and combinations.

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2.  A new class of biological materials: Cell membrane-derived hydrogel scaffolds.

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Review 4.  Emerging Approaches to Functionalizing Cell Membrane-Coated Nanoparticles.

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Review 5.  Prospects of the Use of Cell Therapy to Induce Immune Tolerance.

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Review 6.  Advances in Engineering Cells for Cancer Immunotherapy.

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Review 7.  The Landscape of Nanovectors for Modulation in Cancer Immunotherapy.

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Review 8.  Engineered Cell Membrane-Derived Nanocarriers: The Enhanced Delivery System for Therapeutic Applications.

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Review 9.  Cancer Nano-Immunotherapy from the Injection to the Target: The Role of Protein Corona.

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  9 in total

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