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Small Molecule-Based Enzyme Inhibitors in the Treatment of Primary Hyperoxalurias
Maria Dolores Moya-Garzon1,2,3, Jose Antonio Gomez-Vidal1, Alfonso Alejo-Armijo4
1Departamento de Química Farmacéutica y Orgánica, Facultad de Farmacia, Campus de Cartuja s/n, 18071 Granada, Spain.
Abstract:
Primary hyperoxalurias (PHs) are a group of inherited alterations of the hepatic glyoxylate metabolism. PHs classification based on gene mutations parallel a variety of enzymatic defects, and all involve the harmful accumulation of calcium oxalate crystals that produce systemic damage. These geographically widespread rare diseases have a deep impact in the life quality of the patients. Until recently, treatments were limited to palliative measures and kidney/liver transplants in the most severe forms. Efforts made to develop pharmacological treatments succeeded with the biotechnological agent lumasiran, a siRNA product against glycolate oxidase, which has become the first effective therapy to treat PH1. However, small molecule drugs have classically been preferred since they benefit from experience and have better pharmacological properties. The development of small molecule inhibitors designed against key enzymes of glyoxylate metabolism is on the focus of research. Enzyme inhibitors are successful and widely used in several diseases and their pharmacokinetic advantages are well known. In PHs, effective enzymatic targets have been determined and characterized for drug design and interesting inhibitory activities have been achieved both in vitro and in vivo. This review describes the most recent advances towards the development of small molecule enzyme inhibitors in the treatment of PHs, introducing the multi-target approach as a more effective and safe therapeutic option.
Insights
Primary hyperoxalurias (PHs) are rare genetic diseases causing oxalate crystal buildup. New small molecule enzyme inhibitors offer a promising therapeutic approach, potentially improving patient quality of life.
Area of Science:
- Biochemistry
- Genetics
- Pharmacology
Background:
- Primary hyperoxalurias (PHs) are inherited metabolic disorders characterized by excessive oxalate production.
- Accumulation of calcium oxalate crystals leads to systemic damage and significantly impacts patient quality of life.
- Current treatments are limited, with liver/kidney transplants reserved for severe cases, and lumasiran as the first targeted therapy for PH1.
Purpose of the Study:
- To review recent advancements in developing small molecule enzyme inhibitors for PH treatment.
- To explore the potential of a multi-target approach for enhanced efficacy and safety in PH therapy.
Main Methods:
- Focus on the development of small molecule inhibitors targeting key enzymes in glyoxylate metabolism.
- Review of in vitro and in vivo studies demonstrating inhibitory activities.
- Discussion of the advantages of small molecule drugs, including pharmacokinetic properties.
Main Results:
- Identification of effective enzymatic targets for drug design in PH.
- Demonstration of promising inhibitory activities of small molecules against PH-related enzymes.
- Exploration of a multi-target strategy for improved therapeutic outcomes.
Conclusions:
- Small molecule enzyme inhibitors represent a significant advancement in PH treatment.
- The multi-target approach holds potential for more effective and safer therapeutic options for PH.
- Continued research in this area is crucial for developing novel treatments for these rare diseases.
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