Plasticity in Uterine Innervation: State of the Art

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This review highlights how sex hormones induce remarkable plasticity in uterine innervation, influencing critical reproductive functions and potentially playing a role in gynecological diseases.

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This review examines the physiological plasticity of uterine innervation, highlighting how autonomic and sensory nerves regulate critical reproductive functions in response to hormonal fluctuations during pregnancy, puberty, and the menstrual cycle. The authors discuss mechanisms by which sex hormones, particularly estrogen, influence neural structures and note that these changes can be mimicked by exogenous hormone administration. Recent findings emphasize the role of uterine innervation in gynecological diseases associated with pain and infertility, listing both uterine fibroids and endometriosis as key conditions of interest. This paper is centrally about endometriosis — specifically listed as a relevant gynecological disease where uterine innervation contributes to pathology, alongside other conditions like fibroids.

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Abstract

Early studies often claimed that autonomic nerves were unimportant for uterine function, since denervation of the uterus had little effects on reproductive success. In 1979, Thorbert wrote, "It seems unlikely that Nature has equipped the uterus with a complex innervation merely as a structural ornament. Our ignorance in this area may be rather due to defects in methods of study". Investigations carried out over the last four decades proved that Thorbert's words were correct, because it is now clear that autonomic and sensory nerves regulate many critical uterine functions. However, the most remarkable aspect of uterine innervation is its capacity to change in response to physiological fluctuations in levels of sex hormones, as those accompanying pregnancy, the sex cycle and puberty. The present review provides an overview about how sex hormones influence uterine innervation. Data are presented about how this physiological plasticity is mimicked by exogenous administration of sex hormones, particularly estrogen. We will review recent developments illustrating the complex multifactorial mechanisms regulating uterine neural plasticity and the nature of molecular signals involved. Finally, we will go through recent findings pointing to the relevance of uterine innervation in gynecological diseases leading to pain and infertility.
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Abstract

Early studies often claimed that autonomic nerves were unimportant for uterine function, since denervation of the uterus had little effects on reproductive success. In 1979, Thorbert wrote, “It seems unlikely that Nature has equipped the uterus with a complex innervation merely as a structural ornament. Our ignorance in this area may be rather due to defects in methods of study”. Investigations carried out over the last four decades proved that Thorbert’s words were correct, because it is now clear that autonomic and sensory nerves regulate many critical uterine functions. However, the most remarkable aspect of uterine innervation is its capacity to change in response to physiological fluctuations in levels of sex hormones, as those accompanying pregnancy, the sex cycle and puberty. The present review provides an overview about how sex hormones influence uterine innervation. Data are presented about how this physiological plasticity is mimicked by exogenous administration of sex hormones, particularly estrogen. We will review recent developments illustrating the complex multifactorial mechanisms regulating uterine neural plasticity and the nature of molecular signals involved. Finally, we will go through recent findings pointing to the relevance of uterine innervation in gynecological diseases leading to pain and infertility.

Keywords

Estrogen, pregnancy, sympathetic nerves, parasympathetic nerves, sensory nerves, neuroplasticity, uterine fibroids, endometriosis. 78 6 1 1

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Condition tags

endometriosisinfertility

MeSH descriptors

Autonomic Pathways Endometriosis Estrogens Neuronal Plasticity Animals Autonomic Pathways Autonomic Pathways Endometriosis Endometriosis Endometriosis Estrogens Estrogens Female Leiomyoma Leiomyoma Neuronal Plasticity Pregnancy Signal Transduction Uterus Uterus

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SciLite annotations

chemicals 1
estrogen

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europepmc
last seen: 2026-09-13T09:25:22.628771+00:00
pubmed
last seen: 2026-05-13T22:21:07.355239+00:00
scilite
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