Verica Stankovic Popovic, Aleksandar Sic, Selena Gajic, Dusan Vicentijevic, Ana Bontic, Jelena Pavlovic, Aleksandra Kezic, Marko Baralic
MicroRNA-21 (miR-21) has long been regarded as one of the most promising molecular targets in chronic kidney disease (CKD) because of its consistent upregulation across diverse renal disorders and its involvement in fibrosis, inflammation, oxidative stress, and metabolic dysfunction. Strong preclinical evidence demonstrated that inhibition of miR-21 reduced kidney injury, preserved renal function, and improved survival in multiple experimental models, particularly Alport syndrome, leading to the clinical development of the antisense oligonucleotide lademirsen. However, despite a compelling biological rationale and encouraging animal data, the phase 2 HERA trial failed to demonstrate a clinically meaningful effect on the rate of kidney function decline, resulting in discontinuation of the program. This review examines the biological functions of miR-21 in CKD, summarizes the experimental and clinical evidence that supported its therapeutic development, and critically analyzes the factors that may explain the discrepancy between preclinical success and clinical failure. Particular attention is given to the distinction between disease-associated biomarkers and true therapeutic drivers, the limitations of animal models, disease heterogeneity, timing of intervention, and the complex regulatory networks underlying progressive kidney fibrosis. Rather than representing the end of miR-21 research, the experience with lademirsen provides valuable insights into the challenges of translating RNA-based therapies into clinical practice. Future therapeutic strategies will likely require earlier intervention, improved patient selection, robust biomarkers of target engagement, and combination approaches that address the multifactorial nature of CKD. The lessons learned from the lademirsen program may help guide the development of the next generation of RNA therapeutics for kidney disease.