Postnatal deletion of Phlpp1 in chondrocytes delays post-traumatic osteoarthritis in male mice

Samantha R. Weaver , Katherine M. Arnold , Eduardo Peralta-Herrera , Manuela Oviedo , Elizabeth L. Zars , Elizabeth W. Bradley , Jennifer J. Westendorf
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Abstract

Objective

Osteoarthritis is a chronic, debilitating disease that causes long-term pain and immobility. Germline deletion of Phlpp1 or administration of small molecules that inhibit Phlpp1 prevents post-traumatic osteoarthritis (PTOA) in mice. However, the chondrocyte-intrinsic role of Phlpp1 in PTOA progression is unknown. The objective of this study was to determine how postnatal, chondrocyte-directed deletion of Phlpp1 affects PTOA progression in the presence or absence of Phlpp inhibitors.

Design

Phlpp1fl/fl; Agc-CreERT2 and Agc-CreERT2 mice were injected with tamoxifen at 12 weeks of age to generate Phlpp1-CKOAgcERT and control (AgcERT) groups. Male mice underwent surgery to destabilize the medial meniscus (DMM) at 17 weeks of age. A separate cohort of male Phlpp1-CKOAgcERT mice were administered an intra-articular injection of NSC117079, a Phlpp1/2 inhibitor, or saline seven weeks after DMM surgery. Activity and mechanical allodynia were monitored throughout the experiment and cartilage damage was evaluated 12 weeks post-surgery.

Results

Phlpp1-CKOAgcERT mice had less cartilage damage than AgcERT littermates 12 weeks after DMM surgery but exhibited no differences in activity. Prg4 expression was also higher in articular chondrocytes of Phlpp1-CKOAgcERT mice. Intra-articular administration of NSC117079 to Phlpp1-CKOAgcERT mice improved cartilage structure, subchondral bone sclerosis, and mechanical allodynia at 12 weeks post-DMM.

Conclusions

Postnatal deletion of Phlpp1 in chondrocytes attenuates DMM-induced cartilage damage and subchondral bone sclerosis but does not prevent pain-related behaviors. Intra-articular injection of Phlpp inhibitors delays mechanical allodynia in Phlpp1-CKOAgcERT mice. These data indicate that Phlpp1 in chondrocytes affects articular cartilage structure after injury, but pain-related behaviors are controlled by Phlpp1 or Phlpp2 in other cell types.
出生后软骨细胞中Phlpp1缺失延缓雄性小鼠创伤后骨关节炎。
目的:骨关节炎是一种慢性衰弱性疾病,引起长期疼痛和不活动。种系缺失Phlpp1或给予抑制Phlpp1的小分子可预防小鼠创伤后骨关节炎(PTOA)。然而,Phlpp1在PTOA进展中的软骨细胞内在作用尚不清楚。本研究的目的是确定出生后,在Phlpp1抑制剂存在或不存在的情况下,Phlpp1的软骨细胞定向缺失如何影响pta的进展。设计:Phlpp1fl / fl;Agc-CreERT2和Agc-CreERT2小鼠在12周龄时注射他莫昔芬,形成Phlpp1-CKOAgcERT和对照(AgcERT)组。雄性小鼠在17周龄时接受手术以破坏内侧半月板(DMM)的稳定。另一组雄性Phlpp1-CKOAgcERT小鼠在DMM手术后7周接受关节内注射NSC117079 (Phlpp1/2抑制剂)或生理盐水。在整个实验过程中监测活动和机械异常痛,并在术后12周评估软骨损伤。结果:在DMM手术后12周,Phlpp1-CKOAgcERT小鼠的软骨损伤比AgcERT同龄鼠少,但活性无差异。Phlpp1-CKOAgcERT小鼠关节软骨细胞中Prg4的表达也较高。Phlpp1-CKOAgcERT小鼠关节内给药NSC117079可改善dmm后12周的软骨结构、软骨下骨硬化和机械异常性疼痛。结论:出生后软骨细胞中Phlpp1的缺失可减轻dmm诱导的软骨损伤和软骨下骨硬化,但不能阻止疼痛相关行为。关节内注射Phlpp抑制剂延缓Phlpp - ckoagcert小鼠的机械异常性痛。这些数据表明,损伤后软骨细胞中的Phlpp1影响关节软骨结构,但其他细胞类型中的Phlpp1或Phlpp2控制疼痛相关行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Osteoarthritis and cartilage open
Osteoarthritis and cartilage open Orthopedics, Sports Medicine and Rehabilitation
CiteScore
3.30
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