Ophthalmology Clinic, Bossan Hospital, Gaziantep, Turkey.
Ophthalmology Clinic, Netgoz Medical Center, 27080, Gaziantep, Turkey.
Int Ophthalmol. 2024 Feb 12;44(1):63. doi: 10.1007/s10792-024-02938-9.
Pterygium is a hyaline degenerative disease of the conjunctiva characterized by the progression of fibrovascular connective tissue from the bulbar conjunctiva to the cornea. The mechanism of pterygium formation is still not fully understood. Transient receptor potential (TRP) channels are a group of ion channels with distinct characteristics. Recent indications suggest TRP channels may play a significant regulatory role in pterygium development, but previous studies have mainly focused on in silico analysis. Accordingly, in the present study, we aimed to decipher the expression signatures and role of TRP channels in pterygium development.
The study encompassed a cohort of 45 patients matched for age and gender distribution, comprising 30 individuals with primary pterygium (PP) and 15 individuals with recurrent pterygium (RP). The control group consisted of unaffected conjunctival tissue obtained from the same set of patients. High-throughput screening of differentially expressed TRP channels in pterygium tissues was achieved with the help of Fluidigm 96.96 Dynamic Array Expression Chip and reactions were held in BioMark™ HD System Real-Time PCR platform.
Statistically significant increases were found in the expression of 21 genes, mainly TRPA1 (p = 0.021), TRPC2 (p = 0.001), and TRPM8 (p = 0.003), in patients with PP, and in TRPC5 (p = 0.05), TRPM2 (p = 0.029), TRPM4 (p = 0.03), TRPM6 (p = 0.045), TRPM8 (p = 0.038), TRPV1 (p = 0.01) and TRPV4 (p = 0.025) genes in RP tissues.
Collectively, TRP channel proteins appear to play pivotal roles in both the development and progression of pterygium, making them promising candidates for future therapeutic interventions in patients afflicted by this condition.
翼状胬肉是一种结膜的透明变性疾病,其特征是纤维血管结缔组织从球结膜向角膜进展。翼状胬肉形成的机制尚未完全了解。瞬时受体电位 (TRP) 通道是一组具有独特特征的离子通道。最近的迹象表明,TRP 通道可能在翼状胬肉的发展中发挥重要的调节作用,但以前的研究主要集中在计算机模拟分析上。因此,在本研究中,我们旨在破译 TRP 通道在翼状胬肉发展中的表达特征和作用。
该研究纳入了一组 45 名年龄和性别分布相匹配的患者,其中 30 名患者为原发性翼状胬肉(PP),15 名患者为复发性翼状胬肉(RP)。对照组为同一组患者的未受影响的结膜组织。通过 Fluidigm 96.96 动态阵列表达芯片对翼状胬肉组织中差异表达的 TRP 通道进行高通量筛选,并在 BioMark™ HD System 实时 PCR 平台上进行反应。
在 PP 患者中,21 个基因的表达明显增加,主要是 TRPA1(p=0.021)、TRPC2(p=0.001)和 TRPM8(p=0.003),而在 RP 组织中,TRPC5(p=0.05)、TRPM2(p=0.029)、TRPM4(p=0.03)、TRPM6(p=0.045)、TRPM8(p=0.038)、TRPV1(p=0.01)和 TRPV4(p=0.025)基因的表达也明显增加。
总的来说,TRP 通道蛋白似乎在翼状胬肉的发展和进展中都起着关键作用,使它们成为未来治疗这种疾病患者的有希望的候选药物。