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CTLA4-Ig in B7-1-positive diabetic and non-diabetic kidney disease
Roberto Bassi1,2, Alessia Fornoni3, Alessandro Doria4
1Division of Nephrology, Boston Children's Hospital, Harvard Medical School, 300 Longwood Ave., Enders Building, Boston, MA, 02115, USA.
Abstract:
Diabetic kidney disease (DKD) is the leading cause of end-stage renal disease in the Western world. Standard treatments have ultimately proven ineffective in blocking DKD progression, thus necessitating the design of new therapies to complement glycaemic and blood pressure control. High glucose levels upregulate the immune-related molecule B7-1 in podocytes, and such an event may play a relevant role in DKD onset, suggesting that B7-1 is a suitable therapeutic target for DKD. CTLA4-Ig is a clinically available fusion protein, approved for the treatment of some autoimmune diseases, which binds B7-1 and blocks its signalling. We have previously demonstrated that CTLA4-Ig restores the physiological structure and cellular motility of podocytes challenged with high glucose in vitro and abrogates the onset of proteinuria in murine models of DKD in vivo. Notably, these beneficial effects occurred independently of any systemic immunological effects of CTLA4-Ig. While the expression of B7-1 on podocytes raises questions regarding the very nature of the podocyte as we know it, the preliminary positive effect of CTLA4-Ig on proteinuria in preclinical models and the evidence of B7-1 expression in kidney biopsies of diabetic individuals suggest a potential novel indication for CTLA4-Ig in DKD. Nonetheless, recent reports of problems with detecting podocyte B7-1 and of inconsistent therapeutic efficacy of CTLA4-Ig in proteinuric patients highlight the necessity to establish uniformly accepted protocols for the detection of B7-1 and underline the need for randomised trials with CTLA4-Ig in kidney diseases.
Insights
Diabetic kidney disease (DKD) treatments are insufficient. CTLA4-Ig shows promise by targeting B7-1 in podocytes, potentially offering a new therapy for DKD by reducing proteinuria.
Area of Science:
- Nephrology
- Immunology
- Diabetology
Background:
- Diabetic kidney disease (DKD) is a primary cause of end-stage renal disease, with current treatments lacking efficacy in halting progression.
- High glucose levels increase B7-1 expression in podocytes, implicating it as a potential therapeutic target in DKD.
- CTLA4-Ig, an approved autoimmune disease treatment, blocks B7-1 signaling and may offer a novel therapeutic strategy for DKD.
Purpose of the Study:
- To investigate the therapeutic potential of CTLA4-Ig in diabetic kidney disease (DKD).
- To evaluate the effects of CTLA4-Ig on podocyte function and proteinuria in preclinical DKD models.
Main Methods:
- In vitro studies assessed CTLA4-Ig's effect on high glucose-challenged podocytes.
- In vivo studies utilized murine models of DKD to evaluate CTLA4-Ig's impact on proteinuria.
- Analysis of B7-1 expression in kidney biopsies from diabetic individuals.
Main Results:
- CTLA4-Ig restored podocyte structure and motility in high glucose conditions in vitro.
- CTLA4-Ig treatment abrogated proteinuria in murine DKD models, independent of systemic immunosuppression.
- B7-1 expression was observed in kidney biopsies of diabetic patients, supporting its role in DKD.
Conclusions:
- CTLA4-Ig demonstrates potential as a novel therapeutic agent for diabetic kidney disease (DKD).
- Targeting B7-1 on podocytes with CTLA4-Ig offers a promising strategy to combat DKD progression.
- Further research, including randomized trials and standardized B7-1 detection protocols, is necessary to confirm CTLA4-Ig efficacy in proteinuric patients.
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