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Method Article

A Simplified and Robust Protocol for the Isolation and Long-term Expansion of Primary Human Endometrial Epithelial Cells

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DOI:

10.3791/70429

April 10th, 2026

* These authors contributed equally

In This Article

Summary

The primary culture of human endometrial epithelial cells (HEECs) is technically challenging. This protocol combines mixed-enzyme digestion with ROCK inhibitor (Y-27632) to improve cell survival and expansion while maintaining epithelial identity, providing a robust platform for endometrial research and regenerative applications.

Abstract

Research on endometrial disorders, including tamoxifen-associated endometrial hyperplasia, has been limited by the lack of robust in vitro epithelial models. Conventional methods for isolating human endometrial epithelial cells (HEECs) are often inefficient, technically demanding, and poorly scalable. Here, a simplified, feeder-free protocol is described that integrates mixed-enzyme digestion, erythrocyte lysis, and sustained ROCK inhibitor (Y-27632) treatment to enable efficient isolation and expansion of primary HEECs. The inclusion of Y-27632 is critical for mitigating dissociation-induced apoptosis and enhancing early-stage cell adhesion. This approach supports serial passaging while maintaining epithelial identity for at least 3 passages, with morphology preserved beyond 10 passages. Characterization by Western blot and immunofluorescence confirms high expression of Cytokeratin 18 and E-cadherin, with a progressive reduction in vimentin-positive stromal contaminants under selective culture conditions. By addressing key technical limitations, this method provides a reliable, scalable source of epithelial cells for mechanistic studies, disease modeling, drug screening, and regenerative applications in endometrial research. The standardized workflow offers an alternative to complex co-culture systems, facilitating broader access to high-quality primary cell models.

Introduction

Reliable in-vitro models are essential for advancing the study of endometrial disorders, particularly those associated with tamoxifen (TAM)1. Although TAM is widely used as endocrine therapy for breast cancer, its partial estrogen-agonist activity in the endometrium markedly increases the incidence of endometrial hyperplasia, polyps, and, in some cases, malignant transformation2. Current clinical management of tamoxifen-associated endometrial pathology relies mainly on progesterone therapy or surgical intervention, both of which have significant limitations. Progesterone treatment is frequently associated with a....

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Protocol

Fresh endometrial tissue samples were obtained from uterine polyp specimens surgically resected from patients at the First Affiliated Hospital of Zhejiang Chinese Medical University. All procedures were conducted in accordance with the guidelines approved by the Medical Ethics Committee of the First Affiliated Hospital of Zhejiang Chinese Medical University (Protocol No. 2025-KLS-569-01; approved September 14, 2025). Handling of primary human samples was performed in a Class II biological safety cabinet using appropriate personal protective equipment, including laboratory coats, gloves, and eye protection. All enzymatic reagents were handled in accordance with institu....

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Results

Successful establishment of the primary HEEC culture system was confirmed through morphological, proliferative, and molecular assessments, as outlined in Figure 1. By combining mixed-enzyme digestion, erythrocyte lysis, and a ROCK inhibitor, this protocol enabled efficient isolation and stable expansion of epithelial cells from human endometrial tissue.

Morphological observations demonstrated the essential role of Y-27632 during early culture. HEECs cultured with .......

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Discussion

Establishing a reliable in vitro model of human endometrial epithelial cells (HEECs) is essential for investigating endometrial biology and pathology11. Although several methods have been developed for HEEC isolation, most remain limited by technical complexity, low efficiency, and restricted expansion potential4,5. Many protocols also rely on feeder layers, which introduce variability and hinder scalability12

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Disclosures

The authors declare that there are no conflicts of interest regarding the publication of this paper.

Acknowledgements

This work was supported by Quzhou Science and Technology Program (No.2024ZD046), the Guizhou Provincial Science and Technology Cooperation Foundation ZK (2025) General 023, the Bingtuan Science and Technology Program (No.2024ZD059; No.2026YD026).

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
Dispase SolarbioCAS:42613-33-2For HEECs isolation
Collagenase Type IMerckSKU:SCR103For HEECs isolation
100 µm mesh filterSolarbio431752For HEECs filtration
rabbit anti CK18abcamab133263For immunofluorescence staining to check differentiation marker of HEECs
rabbit anti CDH1abcamab40772For immunofluorescence staining to check differentiation marker of HEECs
rabbit anti VIMabcamab16700For immunofluorescence staining to check differentiation marker of HEECs
4% paraformaldehydesolarbioP0099For immunofluorescence staining to check differentiation marker of HEECs
CO2 IncubatorThermo Scientific42820906For cell incubation
CentrifugeEppendorf5404HN133048Cell centrifuge
100mm Cell Culture DishCorning430167For cell culture
50 ml Centrifuge TubeCorning430829For cell centrifugation
1.5 ml microcentrifuge TubesNEST081722CK01For cell digestion
Cell StrainerSolarbio431752Cell filtration
Phosphate buffered solutionTecono20201033Washing solution
DMEMGibco8122622Component of neutralization medium
Penicillin/StreptomycinThermo Scientific15140-122Antibiotics
Fetal Bovine SerumGibco2556132PComponent of neutralization medium
0.05% TrypsinBasalmediaK431010For HEECs  dissociation
Y-27632SolarbioIY0040ROCK inhibitor
Red Blood Cell Lysis BufferSolarbioR1010Red blood cell lysis
1% Triton X-100 Thermo ScientificHFH10Membrane permeabilization
Donkey anti-Rabbit IgGThermo ScientificA32790TRSecondary antibody
DAPIThermo Scientific62248DNA staining
1 x PBSTSolarbioP1031Washing buffer
Dedicated Medium for Primary HEECsiCelliCell-f004-002hFor HEECs culture
Inverted Confocal MicroscopeZeiss LSM880Used for acquiring immunofluorescence images; equipped with 40x
MRC-5 cell lineiCelliCell-h146 Human endometrial adenocarcinoma cell line; STR profiled.
Ishikawa cell lineiCelliCell-h113 Human endometrial adenocarcinoma cell line; STR profiled.

References

  1. Gompel, A. Progesterone, progestins and the endometrium in perimenopause and in menopausal hormone therapy. Climacteric. 21 (4), 321-325 (2018).
  2. Prat, A., et al. Clinical implications of the intrinsic molecular subtypes of breast cancer.

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Tags

Cell IsolationPrimary Cell ExpansionFeeder Free CultureMixed Enzyme DigestionROCK InhibitorErythrocyte LysisSerial PassagingWestern BlotImmunofluorescence