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CD40 Generation 2.5 Antisense Oligonucleotide Treatment Attenuates Doxorubicin-induced Nephropathy and Kidney
Aaron J Donner1, Steve T Yeh1, Gene Hung1
1Antisense Drug Discovery, Isis Pharmaceuticals, Inc., Carlsbad, California, USA.
Abstract:
Preclinical and clinical data suggest CD40 activation contributes to renal inflammation and injury. We sought to test whether upregulation of CD40 in the kidney is a causative factor of renal pathology and if reduction of renal CD40 expression, using antisense oligonucleotides (ASOs) targeting CD40, would be beneficial in mouse models of glomerular injury and unilateral ureter obstruction. Administration of a Generation 2.5 CD40 ASO reduced CD40 mRNA and protein levels 75-90% in the kidney. CD40 ASO treatment mitigated functional, transcriptional, and pathological endpoints of doxorubicin-induced nephropathy. Experiments using an activating CD40 antibody revealed CD40 is primed in kidneys following doxorubicin injury or unilateral ureter obstruction and CD40 ASO treatment blunted CD40-dependent renal inflammation. Suborgan fractionation and imaging studies demonstrated CD40 in glomeruli before and after doxorubicin administration that becomes highly enriched within interstitial and glomerular foci following CD40 activation. Such foci were also sites of ASO distribution and activity and may be predominately comprised from myeloid cells as bone marrow CD40 deficiency sharply attenuated CD40 antibody responses. These studies suggest an important role of interstitial renal and/or glomerular CD40 to augment kidney injury and inflammation and demonstrate that ASO treatment could be an effective therapy in such disorders.
Insights
Targeting CD40, a key driver of kidney inflammation and injury, with antisense oligonucleotides (ASOs) significantly reduced kidney damage in mouse models. This CD40 ASO therapy shows promise for treating kidney diseases.
Area of Science:
- Nephrology
- Immunology
- Molecular Medicine
Background:
- Clinical and preclinical data link CD40 activation to renal inflammation and injury.
- The role of kidney CD40 upregulation as a cause of renal pathology requires further investigation.
Purpose of the Study:
- To determine if increased CD40 in the kidney causes renal pathology.
- To evaluate the therapeutic potential of CD40 antisense oligonucleotides (ASOs) in mouse models of kidney injury.
Main Methods:
- Administration of a Generation 2.5 CD40 ASO to reduce CD40 mRNA and protein levels in mouse kidneys.
- Assessment of CD40 ASO efficacy in mouse models of doxorubicin-induced nephropathy and unilateral ureter obstruction.
- Utilized activating CD40 antibody, suborgan fractionation, and imaging to study CD40 localization and activation.
Main Results:
- CD40 ASO treatment achieved 75-90% reduction in kidney CD40 mRNA and protein.
- CD40 ASO mitigated functional, transcriptional, and pathological aspects of doxorubicin-induced nephropathy.
- CD40 ASO treatment reduced CD40-dependent renal inflammation in injury models, with ASO activity observed in CD40-enriched foci.
Conclusions:
- Interstitial and/or glomerular CD40 plays a significant role in augmenting kidney injury and inflammation.
- CD40 ASO treatment represents a potentially effective therapeutic strategy for kidney disorders involving CD40.
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