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Updated: Jul 3, 2025

Isolation of Leukocytes from the Murine Tissues at the Maternal-Fetal Interface
Published on: May 21, 2015
AT1-AA Is Produced in Offspring in Response to Placental Ischemia and Is Lowered by B-Cell Depletion Without
Nathan Campbell1, Evangeline Deer1, Dylan Solise2
1Department of Pharmacology & Toxicology University of Mississippi Medical Center Jackson MS.
Insights
Rituximab treatment in preeclampsia models (RUPP rats) reduced maternal blood pressure and improved fetal outcomes. This B cell therapy normalized autoantibodies and improved pup health, offering a potential therapeutic strategy for pregnancy complications.
Area of Science:
- Reproductive immunology
- Maternal-fetal medicine
- Pharmacology
Background:
- Preeclampsia is a leading cause of maternal mortality and low birth weight, increasing cardiovascular risks later in life.
- Women with preeclampsia exhibit activated B cells producing autoantibodies against the angiotensin II type I receptor (AT1-AA).
- The reduced uterine perfusion pressure (RUPP) rat model mimics key aspects of preeclampsia.
Purpose of the Study:
- To investigate if rituximab, a B cell-depleting agent, can mitigate preeclampsia effects in RUPP rats.
- To assess rituximab's impact on maternal B cells, AT1-AA levels, and fetal outcomes.
Main Methods:
- RUPP procedure was performed in rats with continuous rituximab infusion.
- Maternal blood and tissues were collected; offspring birth weights and tissues were analyzed.
- Immune cells were quantified by flow cytometry; AT1-AA levels were measured via bioassay.
Main Results:
- Rituximab normalized elevated blood pressure in RUPP rats.
- Maternal rituximab treatment reduced circulating B cells, cytolytic natural killer cells, and AT1-AA in RUPP offspring.
- This study is the first to report normalization of AT1-AA in RUPP offspring following maternal rituximab administration.
Conclusions:
- Perinatal rituximab administration effectively lowers maternal blood pressure in a preeclampsia model.
- Rituximab treatment improved fetal outcomes, including birth weight and circulating AT1-AA levels.
- These findings suggest rituximab is a promising therapeutic for adverse fetal outcomes associated with placental ischemia in preeclampsia.
Background:
Preeclampsia, new-onset hypertension during pregnancy alongside other organ dysfunction, is the leading cause of mortality for the mother and low birth weight for the baby. Low birth weight contributes to high risk of cardiovascular disorders later in life. Women with preeclampsia have activated B cells producing agonistic autoantibodies to AT1-AA (angiotensin II type I receptor). We hypothesize that rituximab, a B cell-depleting chemotherapeutic, will deplete maternal B cells in reduced uterine perfusion pressure (RUPP) rats without worsening the effect of placental ischemia on pup growth and survival.
Methods And Results:
To test this hypothesis, the RUPP procedure was performed, and rituximab was continuously infused via miniosmotic pump. Maternal blood and tissues were collected. A separate group of dams were allowed to deliver, pup weights were recorded, and at 4 months of age, tissues were collected from offspring. Immune cells were measured via flow cytometry, and AT1-AA was quantified using a contraction bioassay. Blood pressure increased in RUPP rats and was normalized with rituximab treatment. RUPP offspring also had increased circulating B cells, cytolytic natural killer cells, and increased circulating AT1-AA, which were normalized with maternal rituximab treatment. This is the first study to analyze the AT1-AA in RUPP offspring, which was normalized with rituximab.
Conclusions:
Our findings indicate that perinatal rituximab lowers maternal mean arterial pressure in RUPP rats and improves birth weight, circulating AT1-AA, and circulating natural killer cells, indicating that rituximab improves adverse fetal outcomes in response to placental ischemia.
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