1.Expression studies of the mechanosensitive ion channel Piezo1 in conjunctivochalasis
Chenglong YI ; Nixia TAO ; Can YANG ; Yi ZHAO ; Minhong XIANG
Acta Universitatis Medicinalis Anhui 2026;61(7):1200-1207
ObjectiveTo investigate whether the expression of Piezo1 in bulbar conjunctival fibroblasts contributes to the development of conjunctivochalasis (CCH). MethodsPrimary bulbar conjunctival fibroblasts were obtained from CCH patients and normal control (NC) group by tissue block applanation. The cells were then purified and subjected to fibroblast identification. Immunohistochemical analysis was performed to assess Piezo1 expression in the bulbar conjunctival tissue of the NC and CCH groups. Immunofluorescence was used to detect the expression of Piezo1 in bulbar conjunctival fibroblasts in the CCH and NC groups, as well as the expression of matrix metalloproteinase-9(MMP-9) after the intervention of the Piezo1 agonist, Yoda1. qRT-PCR was used to detect the expression of mRNA of Piezo1 and MMP-9 in the CCH and NC groups, as well as the expression of mRNA of MMP-9 after the intervention of Yoda1. In addition, confocal microscopy was used to detect Ca²⁺influx in bulbar conjunctival fibroblasts in the NC group after Yoda1 intervention. Membrane clamp was used to detect the current amplitude of NC bulbar conjunctival fibroblasts after Yoda1 intervention to verify the functional expression of Piezo1. ResultsPrimary bulbar conjunctival fibroblasts were successfully cultured. Immunohistochemical analysis revealed elevated Piezo1 protein expression in the CCH group (P<0.01). qRT-PCR analysis showed that Piezo1 mRNA expression was higher in the CCH group than in the NC group (P<0.01), as was MMP-9 mRNA expression (P<0.01). Furthermore, MMP-9 mRNA expression was higher in the CCH+Yoda1 group than in the CCH group (P<0.01). Immunofluorescence staining for Piezo1 revealed enhanced fluorescence on the cell membranes of the CCH group compared with the NC group (P<0.05), and the fluorescence of MMP-9 was enhanced by the addition of Yoda1 stimulation compared with that of the CCH group (P<0.05). Confocal microscopy of NC group bulbar conjunctival fibroblasts after the addition of Yoda1 showed enhanced fluorescence of Piezo1 (P<0.05). The addition of Yoda1 activated enhanced current amplitude, showed by membrane clamp detection of NC group bulbar conjunctival fibroblasts (P<0.000 1). ConclusionMechanical damage produced by conjunctival tissues in conjunctivochalasis upregulates Piezo1 expression, and Piezo1 activation may amplify the mechanical damage caused by CCH.
2.Effect of Qi Jing Mingmu decoction combined with artificial tears on Th17 related cytokines in tears of conjunctivochalasis with liver-kidney yin deficiency
Yongyi SHA ; Yi ZHAO ; Shaohua TU ; Xueqing KONG ; Chenglong YI ; Nixia TAO ; Minhong XIANG
International Eye Science 2025;25(1):31-36
AIM:To observe the changes of Th17 related cytokines in tears of conjunctivochalasis(CCH)patients with liver-kidney yin deficiency treated with traditional Chinese medicine Qi Jing Mingmu decoction combined with artificial tears.METHODS:A total of 56 CCH patients(56 eyes)with liver-kidney yin deficiency of grade Ⅱ to Ⅲ were collected and randomly divided into treatment group(treated with Qi Jing Mingmu decoction combined with artificial tears)of 26 cases(26 eyes)and control group(treated with pure artificial tears)of 30 cases(30 eyes). The treatment course was 1 mo, and international ocular surface disease index(OSDI), tear film break-up time(BUT), tear meniscus height(TMH)and conjunctival congestion index of the patients were observed before and after treatment. The patients' tears were collected before and after treatment, and Th17 related cytokines in tears were detected using flow cytometry immunofluorescence luminescence method.RESULTS:After treatment, the OSDI, BUT and conjunctival congestion index of CCH patients in the treatment group and control group were significantly improved(all P<0.01). After treatment, the TMH of CCH patients in the treatment group was significantly reduced(P<0.01), while there was no statistically significant difference in TMH of the control group before and after treatment(P=0.41). After treatment, the levels of Th17 related cytokines IL-17A, IL-22, IFN-γ, IL-17F, and IL-1β in tears of CCH patients in the treatment group were significantly reduced after treatment(all P<0.01), and the changes in the treatment group were more significant(all P<0.05). There was no significant difference in the control group before and after treatment(all P>0.05). After treatment, the levels of IL-6 and TNF-α in the tears of both groups of CCH patients decreased compared to those before treatment(both P<0.05), but the changes in the treatment group were more significant(both P<0.01).CONCLUSION:Qi Jing Mingmu decoction combined with artificial tears can effectively improve the ocular surface microenvironment, enhance tear film stability, and inhibit ocular surface inflammation in CCH patients with liver-kidney yin deficiency. This may be related to its reduction in the secretion of Th17 related cytokines in tears.
3.Advances in Piezo1 ion channels in ophthalmic diseases
Chenglong YI ; Yi ZHAO ; Can YANG ; Nixia TAO ; Minhong XIANG
International Eye Science 2025;25(11):1833-1837
Piezo1, a mechanosensitive nonselective cation channel characterized by multiple transmembrane domains, plays a critical role intransducing mechanical stimuli at the cellular membrane and participates in various physiological and pathological processes. Recent studies have established a significant association between Piezo1 and the occurrence and development of multiple ophthalmic disorders. Substantial evidence demonstrates that Piezo1 contributes to ocular disease progression by regulating fundamental cellular processes including proliferation, differentiation, apoptosis, and inflammatory responses, with particular relevance to glaucoma, corneal diseases, retinal disorders, and dry eye syndrome. Piezo1 has made rapid progress in ophthalmology, and has been established as an important mechanosensor in the eye, widely involved in intraocular pressure regulation, retinal function maintenance, corneal homeostasis and repair, and ocular development, and its dysfunction is closely related to the pathological mechanisms of many important blinding eye diseases. Consequently, Piezo1 is not only a key molecule for understanding ocular mechanobiology, but also represents a highly promising therapeutic target. Its study offers new perspectives for the development of novel therapeutic strategies against ocular diseases. This review systematically summarizes current research advances regarding Piezo1 channels in ophthalmology, analyzes their mechanistic involvement in disease processes, and evaluates their potential therapeutic value, thereby offering innovative perspectives for the clinical management of ocular diseases.

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