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Updated: Jun 21, 2026

Visualization of Estrogen Receptors in Colons of Mice with TNBS-Induced Crohn's Disease using Immunofluorescence
Published on: March 12, 2020
Estrogen altered visceromotor reflex and P2X(3) mRNA expression in a rat model of colitis
Juan Fan1, Li-Hua Yu, Yanmin Zhang
1Department of Physiology, Second Military Medical University, 800, Xiangyin Road, Shanghai, 200433, PR China.
Abstract:
P2X(3) and P2X(2/3) receptors are expressed in peripheral tissues and dorsal root ganglia (DRG) and participate in peripheral pain. However, the mechanisms underlying P2X receptor-mediated nociception at different ovarial hormone levels has not been examined. In this study, 24 female rats were randomly divided into sham-operated (sham), ovariectomized (OVX), estrogen-treated, and estrogen-progesterone-treated groups with colitis. In each group, the visceromotor reflex (VMR) to colorectal distension was tested and the DRG were harvested for a real-time PCR analysis of P2X(3) and P2X(2) receptor mRNA. In OVX rats with colitis we found that the VMR to colorectal distension and P2X(3) receptor mRNA in DRG were both significantly decreased. Estrogen replacement reversed the decrease. However, neither the VMR nor the P2X(3) mRNA level in DRG from OVX colitis rats was reversed by the complex of estrogen and progesterone. Patch-clamp recording showed that in colitis rats, estradiol rapidly potentiated the sustained and transient currents evoked by ATP to 336+/-49% and 122+/-12% of controls, respectively, in a subpopulation of DRG neurons, which were blocked by ICI 182, 780, an antagonist of the estrogen receptor. Whereas progesterone rapidly inhibited the transient currents induced by ATP to 67+/-10% of control and had no effect on the sustained currents evoked by the same agonist. These results indicate that P2X(3) receptors are likely to be an important contributor to the altered colonic functions in colitis rats, where the underlying mechanisms are closely related to endogenous estrogen modulation.
Insights
Estrogen significantly influences pain signaling in colitis by modulating P2X(3) receptors in dorsal root ganglia. Progesterone had no significant effect, indicating estrogen
Area of Science:
- Neuroscience
- Endocrinology
- Gastroenterology
Background:
- P2X(3) and P2X(2/3) receptors in dorsal root ganglia (DRG) contribute to peripheral pain.
- The role of ovarian hormones in P2X receptor-mediated pain pathways remains unclear.
Purpose of the Study:
- To investigate the impact of varying ovarian hormone levels on P2X receptor expression and function in a rat colitis model.
- To elucidate the mechanisms of P2X receptor-mediated nociception in the context of colitis and hormonal changes.
Main Methods:
- Rats were divided into sham-operated, ovariectomized (OVX), estrogen-treated, and estrogen-progesterone-treated groups with induced colitis.
- Visceromotor reflex (VMR) to colorectal distension was measured.
- Real-time PCR analyzed P2X(3) and P2X(2) receptor mRNA levels in DRG.
- Patch-clamp electrophysiology recorded ATP-evoked currents in DRG neurons.
Main Results:
- Ovariectomized rats with colitis showed decreased VMR and P2X(3) receptor mRNA in DRG, which estrogen replacement reversed.
- Estrogen rapidly potentiated ATP-evoked currents in DRG neurons, an effect blocked by an estrogen receptor antagonist.
- Progesterone did not reverse the decreased VMR or P2X(3) mRNA levels and only inhibited transient ATP-evoked currents.
Conclusions:
- P2X(3) receptors are crucial in altered colonic function in colitis, modulated by endogenous estrogen.
- Estrogen, but not progesterone, plays a significant role in regulating P2X(3) receptor-mediated pain signaling in this model.

