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Updated: May 4, 2026

Identification of the Source of Secreted Proteins in the Kidney by Brefeldin A Injection
Published on: November 10, 2021
CDK4/6 inhibition induces epithelial cell cycle arrest and ameliorates acute kidney injury
Derek P DiRocco1, John Bisi, Patrick Roberts
1Brigham and Women's Hospital, Harvard Institutes of Medicine, Rm. 550, 4 Blackfan Circle, Boston, MA 02115. bhumphreys@partners.org.
Abstract:
Acute kidney injury (AKI) is common and urgently requires new preventative therapies. Expression of a cyclin-dependent kinase (CDK) inhibitor transgene protects against AKI, suggesting that manipulating the tubular epithelial cell cycle may be a viable therapeutic strategy. Broad spectrum small molecule CDK inhibitors are protective in some kidney injury models, but these have toxicities and epithelial proliferation is eventually required for renal repair. Here, we tested a well-tolerated, novel and specific small molecule inhibitor of CDK4 and CDK6, PD 0332991, to investigate the effects of transient cell cycle inhibition on epithelial survival in vitro and kidney injury in vivo. We report that CDK4/6 inhibition induced G0/G1 cycle arrest in cultured human renal proximal tubule cells (hRPTC) at baseline and after injury. Induction of transient G0/G1 cycle arrest through CDK4/6 inhibition protected hRPTC from DNA damage and caspase 3/7 activation following exposure to the nephrotoxins cisplatin, etoposide, and antimycin A. In vivo, mice treated with PD 0332991 before ischemia-reperfusion injury (IRI) exhibited dramatically reduced epithelial progression through S phase 24 h after IRI. Despite reduced epithelial proliferation, PD 0332991 ameliorated kidney injury as reflected by improved serum creatinine and blood urea nitrogen levels 24 h after injury. Inflammatory markers and macrophage infiltration were significantly decreased in injured kidneys 3 days following IRI. These results indicate that induction of proximal tubule cell cycle arrest with specific CDK4/6 inhibitors, or "pharmacological quiescence," represents a novel strategy to prevent AKI.
Insights
Targeting the cell cycle with CDK4/6 inhibitors like PD 0332991 offers a novel strategy to prevent acute kidney injury (AKI). This approach induces cell cycle arrest, protecting kidney cells and reducing inflammation during injury.
Area of Science:
- Nephrology
- Cell Biology
- Pharmacology
Background:
- Acute kidney injury (AKI) is a prevalent condition lacking effective preventative therapies.
- Manipulating the tubular epithelial cell cycle is a potential therapeutic avenue for AKI.
- Existing broad-spectrum cyclin-dependent kinase (CDK) inhibitors have toxicities and hinder necessary renal repair.
Purpose of the Study:
- To investigate the effects of a specific CDK4/6 inhibitor, PD 0332991, on epithelial survival and kidney injury.
- To evaluate the therapeutic potential of transient cell cycle inhibition in preventing AKI.
Main Methods:
- Utilized in vitro studies with human renal proximal tubule cells (hRPTC) exposed to nephrotoxins.
- Administered PD 0332991 to mice before inducing ischemia-reperfusion injury (IRI).
- Assessed cell cycle arrest, DNA damage, apoptosis, kidney function markers, and inflammatory responses.
Main Results:
- CDK4/6 inhibition with PD 0332991 induced G0/G1 cell cycle arrest in hRPTC.
- This arrest protected hRPTC from toxin-induced DNA damage and apoptosis.
- In vivo, PD 0332991 reduced epithelial cell proliferation post-IRI but ameliorated kidney injury and inflammation.
Conclusions:
- Transient cell cycle arrest via specific CDK4/6 inhibition, termed 'pharmacological quiescence,' is a promising strategy for AKI prevention.
- PD 0332991 demonstrates efficacy in protecting against kidney injury and associated inflammation.
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