The term uterine natural killer (uNK) cell is applied in mice to an abundant but transient NK cell population that undergoes unique, terminal differentiation within embryo implantation sites during endometrial decidualization and pregnancy. In mice, decidualization is induced by attachment and implantation of hatched, blastocyst-stage embryos. Within each implantation site, uNK cells proliferate and rapidly differentiate into highly restricted regions called decidua basalis and the mesometrial lymphoid aggregate of pregnancy (MLAp). uNK cells begin to die within healthy decidua basalis by day 8 of the 19-20 day pregnancy of mice. By gestation day 12, uNK cell numbers have peaked and most uNK cells show in situ nuclear fragmentation indicative of disintegration. Morphological studies (standard histology, ultrastructure, immunohistochemistry, in situ hybridization, and RNA analyses from laser capture microdissected uNK cells) have provided most of the current understanding regarding this cell lineage. These approaches identified the special angiogenic properties of uNK cells and their regulatory relationships with normal physiological changes to the uterine (endometrial) arterial tree that accompany successful pregnancy. This chapter highlights key information needed for successful dissection of the dynamically changing decidua basalis that is enriched in uNK cells and special morphological procedures used for uNK cell study. Preparation of viable mouse uNK cell suspensions is difficult but can be achieved. This chapter includes techniques for isolation of uterine leukocyte suspensions and their enrichment for uNK cells that permit immediate downstream applications such as culture, isolation of high quality RNA, or flow cytometry.
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http://dx.doi.org/10.1007/978-1-60761-362-6_31 | DOI Listing |
Reprod Med Biol
January 2025
Department of Obstetrics and Gynecology School of Medicine, Hyogo Medical University Nishinomiya Hyogo Japan.
Background: Uterine endometrial natural killer (uNK) cells represent major leukocytes in the mid-secretory phase of the cell cycle, and their number is further increased during early pregnancy. The activating and inhibitory receptors expressed on their surface mediate various functions of uNK cells, such as cytotoxicity, cytokine production, spiral artery remodeling, and self-recognition.
Methods: This study reviewed the most recent information (PubMed database, 175 articles included) regarding the activating and inhibitory receptors on uNK cells in human females with healthy pregnancies and the evidence indicating their significance in various reproductive failures.
Sci Rep
December 2024
Laboratory of Molecular and Cellular Immunology, Institute of Molecular Biology NAS RA, 7 Hasratyan Str., Yerevan, 0014, Armenia.
Antiphospholipid syndrome (APS) is associated with recurrent pregnancy morbidity, yet the underlying mechanisms remain elusive. We performed multifaceted characterization of the biological and transcriptomic signatures of mouse placenta and uterine natural killer (uNK) cells in APS. Histological analysis of APS placentas unveiled placental abnormalities, including disturbed angiogenesis, occasional necrotic areas, fibrin deposition, and nucleated red blood cell enrichment.
View Article and Find Full Text PDFMucosal Immunol
December 2024
Microbiology and Immunology Department, Loyola University Health Science Campus, Maywood, IL, United States 60153. Electronic address:
The murine uterus contains three subsets of innate lymphoid cells (ILCs). Innate lymphoid cell type 1 (ILC1) and conventional natural killer (cNK) cells seed the uterus before puberty. Tissue-resident NK (trNK) cells emerge at puberty and vary in number during the estrous cycle.
View Article and Find Full Text PDFJCI Insight
December 2024
Robinson Research Institute and School of Biomedicine, The University of Adelaide, Adelaide, South Australia, Australia.
Curr Opin Allergy Clin Immunol
February 2025
Department of Medicine and Medical Specialties, A. Cardarelli Hospital, Naples, Italy.
Purpose Of Review: We aim to explore the most recent insights into the pathogenesis of recurrent angioedema caused by different mechanisms and then focus on the management and treatment approaches available.
Recent Findings: The recently developed DANCE consensus classification identifies five types of angioedema: mast cell-mediated (AE-MC), bradykinin-mediated, because of intrinsic vascular endothelium dysfunction (AE-VE), drug-induced (AE-DI), and due to unknown mechanisms (AE-UNK). These subtypes require different management with treatment choices targeting the main pathogenetic pathways involved in each form.
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