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两种小分子PHLPP抑制剂促进髓核细胞健康的差异疗效。

Differential efficacy of two small molecule PHLPP inhibitors to promote nucleus Pulposus cell health.

作者信息

Zhang Changli, Gordon Madeleine D, Joseph Katherine M, Diaz-Hernandez Martha E, Drissi Hicham, Illien-Jünger Svenja

机构信息

Department of Orthopaedics Emory University School of Medicine Atlanta Georgia USA.

Atlanta VA Health Care System Decatur Georgia USA.

出版信息

JOR Spine. 2023 Dec 4;7(1):e1306. doi: 10.1002/jsp2.1306. eCollection 2024 Mar.

Abstract

BACKGROUND

Intervertebral disc (IVD) degeneration is associated with chronic back pain. We previously demonstrated that the phosphatase pleckstrin homology domain and leucine-rich repeat protein phosphatase (PHLPP) 1 was positively correlated with IVD degeneration and its deficiency decelerated IVD degeneration in both mouse IVDs and human nucleus pulposus (NP) cells. Small molecule PHLPP inhibitors may offer a translatable method to alleviate IVD degeneration. In this study, we tested the effectiveness of the two PHLPP inhibitors NSC117079 and NSC45586 in promoting a healthy NP phenotype.

METHODS

Tail IVDs of 5-month-old wildtype mice were collected and treated with NSC117079 or NSC45586 under low serum conditions ex vivo. Hematoxylin & eosin staining was performed to examine IVD structure and NP cell morphology. The expression of KRT19 was analyzed through immunohistochemistry. Cell apoptosis was assessed by TUNEL assay. Human NP cells were obtained from patients with IVD degeneration. The gene expression of KRT19, ACAN, SOX9, and MMP13 was analyzed via real time qPCR, and AKT phosphorylation and the protein expression of FOXO1 was analyzed via immunoblot.

RESULTS

In a mouse IVD organ culture model, NSC45586, but not NSC117079, preserved vacuolated notochordal cell morphology and KRT19 expression while suppressing cell apoptosis, counteracting the degenerative changes induced by serum deprivation, especially in males. Likewise, in degenerated human NP cells, NSC45586 increased cell viability and the expression of KRT19, ACAN, and SOX9 and reducing the expression of MMP13, while NSC117079 treatment only increased KRT19 expression. Mechanistically, NSC45586 treatment increased FOXO1 protein expression in NP cells, and inhibiting FOXO1 offset NSC45586-induced regenerative potential, especially in males.

CONCLUSIONS

Our study indicates that NSC45586 was effective in promoting NP cell health, especially in males, suggesting that PHLPP plays a key role in NP cell homeostasis and that NSC45586 might be a potential drug candidate in treating IVD degeneration.

摘要

背景

椎间盘(IVD)退变与慢性背痛相关。我们之前证明,磷酸酶普列克底物蛋白同源结构域富含亮氨酸重复蛋白磷酸酶(PHLPP)1与IVD退变呈正相关,其缺失可减缓小鼠IVD和人髓核(NP)细胞的IVD退变。小分子PHLPP抑制剂可能提供一种可转化的方法来减轻IVD退变。在本研究中,我们测试了两种PHLPP抑制剂NSC117079和NSC45586在促进健康NP表型方面的有效性。

方法

收集5月龄野生型小鼠的尾部IVD,在低血清条件下于体外用NSC117079或NSC45586处理。进行苏木精-伊红染色以检查IVD结构和NP细胞形态。通过免疫组织化学分析角蛋白19(KRT19)的表达。通过TUNEL测定评估细胞凋亡。从IVD退变患者中获取人NP细胞。通过实时定量PCR分析KRT19、聚集蛋白聚糖(ACAN)、性别决定区Y框蛋白9(SOX9)和基质金属蛋白酶13(MMP13)的基因表达,并通过免疫印迹分析AKT磷酸化和叉头框蛋白O1(FOXO1)的蛋白表达。

结果

在小鼠IVD器官培养模型中,NSC45586而非NSC117079保留了空泡状脊索细胞形态和KRT19表达,同时抑制细胞凋亡,抵消了血清剥夺诱导的退变变化,尤其是在雄性小鼠中。同样,在退变的人NP细胞中,NSC45586增加了细胞活力以及KRT19、ACAN和SOX9的表达,并降低了MMP13的表达,而NSC117079处理仅增加了KRT19的表达。机制上,NSC45586处理增加了NP细胞中FOXO1蛋白表达,抑制FOXO1可抵消NSC45586诱导的再生潜能,尤其是在雄性小鼠中。

结论

我们的研究表明,NSC45586在促进NP细胞健康方面有效,尤其是在雄性小鼠中,这表明PHLPP在NP细胞稳态中起关键作用,并且NSC45586可能是治疗IVD退变的潜在候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec4f/10782076/a3b583625551/JSP2-7-e1306-g005.jpg

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