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Serotonin-2 Receptor Agonists as Novel Ocular Hypotensive Agents and their Cellular and Molecular Mechanisms of Action: Novel Drug Targets for Glaucoma Treatment

机译:5-羟色胺2受体激动剂作为新型降压药及其作用的细胞和分子机制:青光眼治疗的新型药物靶点

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The eye is innervated by numerous serotonergic nerves and serotonin (5-hydroxytryptamine; 5HT) is present in the aqueous humor of animal and human eyes. In an effort to delineate the role of the serotonergic system in modulating intraocular pressure (IOP) within the anterior segment of the eye, extensive topical ocular dosing studies were conducted with a variety of 5HT ligands and in various animal species. Even though certain 5HT1A agonists decreased IOP in rabbits, these compounds failed to affect IOP in normotensive or ocular hypertensive monkey eyes. In contrast, while 5HT2 agonists induced significant IOP reductions in normotensive rat eyes and in eyes of ocular hypertensive Cynomolgus monkeys, these agents were inactive in ocular normotensive cats and rabbits. Additional studies indicated a strong involvement of 5HT2A receptors in mediating IOP-lowering in conscious ocular hypertensive Cynomolgus monkeys. As a result of further structure-activity investigations, AL-34662, a selective 5HT2 agonist (relative to other 5HT receptor types and sub-types) with high affinity, potency and efficacy at 5HT2A, 5HT2B and 5HT2C receptors was discovered that efficaciously lowered IOP in the monkey model of ocular hypertension (33 ± 3 % reduction out to 6 hrs post with a 300 μg topical ocular dose). Due to unavailability of monkey ocular cells, extensive in vitro studies were conducted using relevant human ocular cells in order to correlate with and support the in vivo observations in the monkeys. RT-PCR and in situ hybridization studies revealed the presence of mRNAs for 5HT2A-C receptor subtypes in human ocular tissues involved in IOP modulation. The relative distribution and density of these mRNAs were as follows: ciliary body (CB) (5HT2A > 5HT2B > 5HT2C), ciliary epithelium (CE) (5HT2A > 5HT2B = 5HT2C) and trabecular meshwork (TM) (5HT2A= 5HT2B > > 5HT2C). Furthermore, quantitative autoradiography revealed a relatively high specific binding of [3H]-5HT and [3H]-ketanserin to 5HT2 receptors in human CE and longitudinal ciliary muscle (CM). Second messenger studies revealed the presence of phospholipase C-coupled 5HT2A receptors in h-CM and h-TM cells where they stimulated phosphoinositide (PI) hydrolysis and mobilized intracellular Ca2+ when challenged with a variety of 5HT2A-C receptor agonists (e.g. α-methyl-5HT, (R)-DOI, α-methyl-5HT, BW-723C86, MK-212, mCPP, cabergoline, AL-34662). These functional responses were blocked by selective 5HT2 receptor antagonists with the 5HT2A antagonist, M-100970, exhibiting the highest potency. Thus, functional 5HT2A receptors are present in human ocular cells involved in IOP reduction and this correlates with the ability of 5HT2A agonists to lower IOP in Cynomolgus monkeys, a surrogate for human subjects.
机译:眼睛被众多血清素能神经支配,动物和人眼的房水中都存在5-羟色胺(5-羟色胺; 5HT)。为了描述5-羟色胺能系统在调节眼前段内眼内压(IOP)中的作用,对多种5HT配体和各种动物进行了广泛的局部眼用药研究。即使某些5HT1A激动剂可降低兔子的IOP,但这些化合物仍无法影响正常血压或高眼压猴眼的IOP。相比之下,虽然5HT2激动剂在血压正常的大鼠眼睛和眼高压食蟹猴的眼睛中导致IOP显着降低,但这些试剂在眼血压正常的猫和兔子中却没有作用。其他研究表明5HT2A受体在介导有意识的眼高压食蟹猕猴的眼压降低中起着重要作用。作为进一步的结构活性研究的结果,发现了对5HT2A,5HT2B和5HT2C受体具有高亲和力,效力和功效的选择性5HT2激动剂AL-34662(相对于其他5HT受体类型和亚型),其有效降低了IOP在高眼压猴子模型中(局部用300μg眼用药,术后6小时减少33±3%)。由于无法获得猴眼细胞,因此使用相关的人眼细胞进行了广泛的体外研究,以便与猴体内的观察结果相关并提供支持。 RT-PCR和原位杂交研究揭示了参与IOP调节的人眼组织中5HT2A-C受体亚型的mRNA的存在。这些mRNA的相对分布和密度如下:睫状体(CB)(5HT2A> 5HT2B> 5HT2C),睫状上皮(CE)(5HT2A> 5HT2B = 5HT2C)和小梁网(TM)(5HT2A = 5HT2B 5HT2C )。此外,定量放射自显影显示[3H] -5HT和[3H]-酮色林与人CE和纵向睫状肌(CM)中的5HT2受体具有较高的特异性结合。第二项信使研究表明,磷脂酶C偶联的5HT2A受体存在于h-CM和h-TM细胞中,它们在受到多种5HT2A-C受体激动剂(例如α-甲基-5HT,(R)-DOI,α-甲基-5HT,BW-723C86,MK-212,mCPP,卡麦角林,AL-34662)。这些功能性反应被具有最高效能的5HT2A拮抗剂M-100970选择性的5HT2受体拮抗剂所阻断。因此,功能性5HT2A受体存在于与眼压降低有关的人眼细胞中,这与5HT2A激动剂降低食蟹猴(人类对象的替代物)降低眼压的能力有关。

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