Literature DB >> 29064085

The biology of natural killer cells during sepsis.

Yin Guo1,2, Naeem K Patil1, Liming Luan1, Julia K Bohannon1, Edward R Sherwood1,2.   

Abstract

Natural killer (NK) cells are large granular lymphocytes largely recognized for their importance in tumour surveillance and the host response to viral infections. However, as the major innate lymphocyte population, NK cells also coordinate early responses to bacterial infections by amplifying the antimicrobial functions of myeloid cells, especially macrophages, by production of interferon-γ (IFN-γ). Alternatively, excessive NK cell activation and IFN-γ production can amplify the systemic inflammatory response during sepsis resulting in increased physiological dysfunction and organ injury. Our understanding of NK cell biology during bacterial infections and sepsis is mostly derived from studies performed in mice. Human studies have demonstrated a correlation between altered NK cell functions and outcomes during sepsis. However, mechanistic understanding of NK cell function during human sepsis is limited. In this review, we will review the current understanding of NK cell biology during sepsis and discuss the challenges associated with modulating NK cell function during sepsis for therapeutic benefit.
© 2017 John Wiley & Sons Ltd.

Entities:  

Keywords:  inflammation; innate lymphoid cells; natural killer cell; sepsis

Mesh:

Substances:

Year:  2017        PMID: 29064085      PMCID: PMC5765373          DOI: 10.1111/imm.12854

Source DB:  PubMed          Journal:  Immunology        ISSN: 0019-2805            Impact factor:   7.397


  120 in total

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2.  Parallels between cancer and infectious disease.

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Journal:  Zhonghua Yi Xue Za Zhi       Date:  2001-01-25

4.  CD16 cross-linking induces increased expression of CD56 and production of IL-12 in peripheral NK cells.

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Journal:  Cell Immunol       Date:  2010-05-10       Impact factor: 4.868

5.  Activity of lung neutrophils and matrix metalloproteinases in cyclophosphamide-treated mice with experimental sepsis.

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6.  Mice depleted of CD8+ T and NK cells are resistant to injury caused by cecal ligation and puncture.

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7.  The functional role of natural killer cells early in clinical sepsis.

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8.  A prospective analysis of lymphocyte phenotype and function over the course of acute sepsis.

Authors:  Jonathan S Boomer; Jennifer Shuherk-Shaffer; Richard S Hotchkiss; Jonathan M Green
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Review 9.  The role of natural killer cells in sepsis.

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10.  Early acute kidney injury and sepsis: a multicentre evaluation.

Authors:  Sean M Bagshaw; Carol George; Rinaldo Bellomo
Journal:  Crit Care       Date:  2008-04-10       Impact factor: 9.097

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  28 in total

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2.  NK Cell-Derived IL-10 Supports Host Survival during Sepsis.

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Review 4.  Immunomonitoring of Monocyte and Neutrophil Function in Critically Ill Patients: From Sepsis and/or Trauma to COVID-19.

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5.  Intracellular expression of granzymes A, B, K and M in blood lymphocyte subsets of critically ill patients with or without sepsis.

Authors:  M Isabel García-Laorden; Arie J Hoogendijk; Maryse A Wiewel; Lonneke A van Vught; Marcus J Schultz; Niels Bovenschen; Alex F de Vos; Tom van der Poll
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Review 6.  Human Gut-Associated Natural Killer Cells in Health and Disease.

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Journal:  Front Immunol       Date:  2019-05-03       Impact factor: 7.561

7.  Long-term survivors of murine sepsis are predisposed to enhanced LPS-induced lung injury and proinflammatory immune reprogramming.

Authors:  Scott J Denstaedt; Angela C Bustamante; Michael W Newstead; Bethany B Moore; Theodore J Standiford; Rachel L Zemans; Benjamin H Singer
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Review 8.  Flattening the COVID-19 Curve With Natural Killer Cell Based Immunotherapies.

Authors:  Marisa Market; Leonard Angka; Andre B Martel; Donald Bastin; Oladunni Olanubi; Gayashan Tennakoon; Dominique M Boucher; Juliana Ng; Michele Ardolino; Rebecca C Auer
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9.  Polymicrobial sepsis influences NK-cell-mediated immunity by diminishing NK-cell-intrinsic receptor-mediated effector responses to viral ligands or infections.

Authors:  Isaac J Jensen; Christina S Winborn; Micaela G Fosdick; Peng Shao; Mikaela M Tremblay; Qiang Shan; Sandeep Kumar Tripathy; Christopher M Snyder; Hai-Hui Xue; Thomas S Griffith; Jon C Houtman; Vladimir P Badovinac
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Review 10.  Endoscopic retrograde cholangiopancreatography-induced and non-endoscopic retrograde cholangiopancreatography-induced acute pancreatitis: Two distinct clinical and immunological entities?

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