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Updated: Feb 20, 2026

Preparation, Procedures and Evaluation of Platelet-Rich Plasma Injection in the Treatment of Knee Osteoarthritis
Published on: January 4, 2019
Phlpp inhibitors block pain and cartilage degradation associated with osteoarthritis
Soyun M Hwang1, Marina Feigenson2, Dana L Begun2
1Mayo Clinic School of Medicine, Mayo Clinic, Rochester, MN 55905.
Abstract:
Phlpp protein phosphatases are abnormally abundant within human osteoarthritic articular chondrocytes and may contribute to the development of osteoarthritis. Mice lacking Phlpp1 were previously shown to be resistant to post-traumatic osteoarthritis. Here a small molecule with therapeutic properties that inhibits Phlpp1 and Phlpp2 was tested for its ability to slow post-traumatic OA in mice and to stimulate anabolic pathways in human articular cartilage from OA joints. PTOA was induced in male C57Bl/6 mice by surgically destabilizing the meniscus. Seven weeks after surgery, mice received a single intra-articular injection of the Phlpp inhibitor NSC117079 or saline. Mechanical allodynia was measured with von Frey assays, mobility was tracked in an open field system, and cartilage damage was assessed histologically. A single intra-articular injection of the Phlpp inhibitor NSC117079 attenuated mechanical allodynia and slowed articular cartilage degradation in joints with a destabilized meniscus. Animals treated with the Phlpp inhibitor 7 weeks after injury maintained normal activity levels, while those in the control group traveled shorter distances and were less active 3 months after the joint injury. NSC117079 also increased production of cartilage extracellular matrix components (glycosaminoglycans and aggrecan) in over 90% of human articular cartilage explants from OA patients and increased phosphorylation of Phlpp1 substrates (AKT2, ERK1/2, and PKC) in human articular chondrocytes. Our results indicate that Phlpp inhibitor NSC117079 is a novel osteoarthritis disease modifying drug candidate that may have palliative affects. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1487-1497, 2018.
Insights
A novel Phlpp inhibitor, NSC117079, shows promise in treating post-traumatic osteoarthritis (PTOA). This drug candidate slowed cartilage degradation and improved mobility in mice, also stimulating anabolic pathways in human osteoarthritic cartilage.
Area of Science:
- Orthopaedic Research
- Molecular Biology
- Pharmacology
Background:
- Phlpp protein phosphatases are elevated in osteoarthritic chondrocytes, potentially driving osteoarthritis development.
- Phlpp1 deficiency confers resistance to post-traumatic osteoarthritis (PTOA) in mice.
- A Phlpp inhibitor, NSC117079, was investigated for therapeutic potential in PTOA.
Purpose of the Study:
- To evaluate the efficacy of the Phlpp inhibitor NSC117079 in slowing PTOA progression in mice.
- To assess the impact of NSC117079 on anabolic pathways in human osteoarthritic cartilage.
- To determine if NSC117079 can alleviate pain and improve mobility in a PTOA mouse model.
Main Methods:
- PTOA was induced in mice via surgical destabilization of the meniscus.
- Mice received a single intra-articular injection of NSC117079 or saline 7 weeks post-surgery.
- Outcomes measured included mechanical allodynia, mobility, cartilage degradation, and extracellular matrix production in human chondrocytes.
Main Results:
- NSC117079 treatment attenuated mechanical allodynia and reduced cartilage degradation in PTOA mice.
- Treated mice maintained normal activity levels, unlike controls, 3 months post-injury.
- NSC117079 increased extracellular matrix production in human OA cartilage explants and phosphorylated key Phlpp1 substrates in chondrocytes.
Conclusions:
- The Phlpp inhibitor NSC117079 demonstrates potential as a disease-modifying osteoarthritis drug.
- NSC117079 may offer palliative effects for osteoarthritis by targeting Phlpp1 and Phlpp2.
- This study highlights Phlpp inhibition as a promising therapeutic strategy for osteoarthritis.
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