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Review
. 2024 Dec;56(1):2352022.
doi: 10.1080/07853890.2024.2352022. Epub 2024 May 16.

Management of hypertension addressing hyperuricaemia: introduction of nano-based approaches

Affiliations
Review

Management of hypertension addressing hyperuricaemia: introduction of nano-based approaches

Koyeli Girigoswami et al. Ann Med. 2024 Dec.

Abstract

Uric acid (UA) levels in blood serum have been associated with hypertension, indicating a potential causal relationship between high serum UA levels and the progression of hypertension. Therefore, the reduction of serum UA level is considered a potential strategy for lowering and mitigating blood pressure. If an individual is at risk of developing or already manifesting elevated blood pressure, this intervention could be an integral part of a comprehensive treatment plan. By addressing hyperuricaemia, practitioners may subsidize the optimization of blood pressure regulation, which illustrates the importance of addressing UA levels as a valuable strategy within the broader context of hypertension management. In this analysis, we outlined the operational principles of effective xanthine oxidase inhibitors for the treatment of hyperuricaemia and hypertension, along with an exploration of the contribution of nanotechnology to this field.

Keywords: Xanthine oxidase; allopurinol; blood pressure; febuxostat; uric acid.

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Conflict of interest statement

The authors do not have any competing interests to declare.

Figures

Figure 1.
Figure 1.
Role and mechanism of XO to convert HPX to UA.
Figure 2.
Figure 2.
Chemical structures of HPX, XAN, allopurinol, oxypurinol and febuxostat.
Figure 3.
Figure 3.
Important metabolic pathways that relate hypertension and serum UA level.
Figure 4.
Figure 4.
The way XO inhibitors affect hypertension.
Figure 5.
Figure 5.
Nanostructures involved in the formulations of allopurinol and febuxostat.

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The authors reported there is no funding associated with this research work.