Completed Pregnancy, Children & Inherited Conditions Cancer

Maternal NK cell recognition of the placenta determines reproductive outcome

In plain English

AI plain-English summary

A woman’s uterine immune cells read the genetic signature of her placenta—and that conversation can determine whether her pregnancy succeeds or fails. This matters because pregnancy complications like pre-eclampsia, recurrent miscarriage, and stillbirth remain poorly understood and difficult to prevent. The researchers have identified specific combinations of immune genes—KIR on uterine natural killer cells and HLA-C on fetal placental cells—that are linked to poor reproductive outcomes. But the underlying biology is unknown, and no treatments exist. If this research succeeds, it could change how fertility clinics screen egg and sperm donors. Donors could be genotyped for their KIR and HLA-C genes, reducing the risk of dangerous immune mismatches in women undergoing IVF with donated eggs or sperm. It could also lead to antibody-based therapies that block harmful immune interactions in the womb. The work in sub-Saharan Africa may explain why Black women face higher rates of pregnancy disorders, pointing toward population-specific prevention strategies. This is fundamental science with clear translational potential. The researchers are not yet testing a treatment in humans, but they are building the genetic and cellular understanding needed to design one.

View original technical description
Our aim is to understand how the uterine immune system regulates placentation and reproductive success in humans. We described a new mechanism of maternal allogeneic recognition that depends on KIR expressed by uterine NK (uNK) cells and their ligands, HLA-C, on fetal trophoblast. KIR and HLA-C genes are highly polymorphic and we find reproducible and specific KIR/HLA-C genetic combinations associated with reproductive disorders. We will: 1) use high throughput typing to allele level of KIR and HLA-C genes to describe how this variation affects pregnancy success. 2) translate these genetic findings into how NK cells affect trophoblast functions exploiting our new techniques, mass cytometry and long term trophoblast cell culture. 3) use transgenic mouse models to mimic the KIR/HLA-C combinations with poor outcome to study placentation in vivo and to test therapeutic anti-KIR mAbs. From a translational perspective we will: 4) investigate whether disorders such as pre-eclampsia that are common in women undergoing assisted reproductive technology with oocyte or sperm donation can be prevented by genotyping donors for KIR/HLA-C and 5) use the extraordinary variability of KIR genes in sub-Saharan Africa to study differences that can explain the increased frequency of pregnancy disorders in African women.

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Researchers

Francesco Colucci (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

How do uterine NK cells regulate placentation?
How do KIR on uterine Natural Killer cells (uNK) regulate human pregnancy success?
Functional immunogenetics of fetal and placental development: the regulation of placentation by NK cell receptors and their trophoblast ligands
The role of KIR and HLA-C in reproductive success.
Uterine natural killer cells, their expression and function through peptides and impact on reproductive success.

Original classification

Investigator Award in Science

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