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P21-Activated Kinase Inhibitors FRAX486 and IPA3: Inhibition of Prostate Stromal Cell Growth and Effects on Smooth Muscle Contraction in the Human Prostate

机译:P21激活的激酶抑制剂FRAX486和IPA3:前列腺基质细胞生长的抑制和对人前列腺平滑肌收缩的影响

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摘要

Prostate smooth muscle tone and hyperplastic growth are involved in the pathophysiology and treatment of male lower urinary tract symptoms (LUTS). Available drugs are characterized by limited efficacy. Patients’ adherence is particularly low to combination therapies of 5α-reductase inhibitors and α1-adrenoceptor antagonists, which are supposed to target contraction and growth simultaneously. Consequently, molecular etiology of benign prostatic hyperplasia (BPH) and new compounds interfering with smooth muscle contraction or growth in the prostate are of high interest. Here, we studied effects of p21-activated kinase (PAK) inhibitors (FRAX486, IPA3) in hyperplastic human prostate tissues, and in stromal cells (WPMY-1). In hyperplastic prostate tissues, PAK1, -2, -4, and -6 may be constitutively expressed in catecholaminergic neurons, while PAK1 was detected in smooth muscle and WPMY-1 cells. Neurogenic contractions of prostate strips by electric field stimulation were significantly inhibited by high concentrations of FRAX486 (30 μM) or IPA3 (300 μM), while noradrenaline- and phenylephrine-induced contractions were not affected. FRAX486 (30 μM) inhibited endothelin-1- and -2-induced contractions. In WPMY-1 cells, FRAX486 or IPA3 (24 h) induced concentration-dependent (1–10 μM) degeneration of actin filaments. This was paralleled by attenuation of proliferation rate, being observed from 1 to 10 μM FRAX486 or IPA3. Cytotoxicity of FRAX486 and IPA3 in WPMY-1 cells was time- and concentration-dependent. Stimulation of WPMY-1 cells with endothelin-1 or dihydrotestosterone, but not noradrenaline induced PAK phosphorylation, indicating PAK activation by endothelin-1. Thus, PAK inhibitors may inhibit neurogenic and endothelin-induced smooth muscle contractions in the hyperplastic human prostate, and growth of stromal cells. Targeting prostate smooth muscle contraction and stromal growth at once by a single compound is principally possible, at least under experimental conditions.
机译:前列腺平滑肌张力和增生性生长与男性下尿路症状(LUTS)的病理生理和治疗有关。现有药物的特征在于功效有限。患者对5α-还原酶抑制剂和α1-肾上腺素受体拮抗剂的联合治疗的依从性特别低,这些疗法应同时针对收缩和生长。因此,良性前列腺增生(BPH)的分子病因学和干扰前列腺平滑肌收缩或生长的新化合物引起了人们的极大兴趣。在这里,我们研究了增生性人类前列腺组织和基质细胞(WPMY-1)中p21激活激酶(PAK)抑制剂(FRAX486,IPA3)的作用。在增生性前列腺组织中,儿茶酚胺能神经元可能组成性表达PAK1,-2,-4和-6,而在平滑肌和WPMY-1细胞中检测到PAK1。高浓度的FRAX486(30μM)或IPA3(300μM)显着抑制了电场刺激引起的前列腺条的神经源性收缩,而去甲肾上腺素和去氧肾上腺素引起的收缩则没有受到影响。 FRAX486(30μM)抑制了内皮素-1和-2-诱导的收缩。在WPMY-1细胞中,FRAX486或IPA3(24 h)诱导了肌动蛋白丝的浓度依赖性(1-10μM)变性。与之相对应的是从1到10μMFRAX486或IPA3观察到的增殖速率降低。 FRAX486和IPA3在WPMY-1细胞中的细胞毒性是时间和浓度依赖性的。用内皮素-1或二氢睾丸酮而不是去甲肾上腺素刺激WPMY-1细胞可诱导PAK磷酸化,表明内皮素-1可激活PAK。因此,PAK抑制剂可以抑制增生性人类前列腺中神经源性和内皮素诱导的平滑肌收缩,以及基质细胞的生长。至少在实验条件下,基本上可以通过单一化合物同时靶向前列腺平滑肌收缩和基质生长。

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