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探索当前和新兴的卟啉症治疗方法。

Exploring current and emerging therapies for porphyrias.

机构信息

Solid Tumors Program, Hepatology: Porphyrias & Carcinogenesis Laboratory, CIMA-University of Navarra, Pamplona, Spain.

Department of Internal Medicine, Reference Center for Inherited Metabolic Disease-MetabERN, University Hospital 12 de Octubre, UCM, Madrid, Spain.

出版信息

Liver Int. 2024 Sep;44(9):2174-2190. doi: 10.1111/liv.15979. Epub 2024 May 30.

Abstract

Porphyrias are rare, mostly inherited disorders resulting from altered activity of specific enzymes in the haem synthesis pathway that lead to accumulation of pathway intermediates. Photocutaneous symptoms occur when excess amounts of photoreactive porphyrins circulate in the blood to the skin, whereas increases in potentially neurotoxic porphyrin precursors are associated with neurovisceral symptoms. Current therapies are suboptimal and their mechanisms are not well established. As described here, emerging therapies address underlying disease mechanisms by introducing a gene, RNA or other specific molecule with the potential to cure or slow progression of the disease. Recent progress in nanotechnology and nanoscience, particularly regarding particle design and formulation, is expanding disease targets. More secure and efficient drug delivery systems have extended our toolbox for transferring specific molecules, especially into hepatocytes, and led to proof-of-concept studies in animal models. Repurposing existing drugs as molecular chaperones or haem synthesis inhibitors is also promising. This review summarizes key examples of these emerging therapeutic approaches and their application for hepatic and erythropoietic porphyrias.

摘要

卟啉病是罕见的遗传性疾病,主要是由于血红素合成途径中特定酶的活性改变,导致途径中间产物积累所致。当过量的光反应性卟啉在血液中循环到皮肤时,会出现光感性皮肤症状,而潜在的神经毒性卟啉前体的增加则与神经内脏症状有关。目前的治疗方法并不理想,其机制也尚未得到很好的建立。如本文所述,新兴的治疗方法通过引入基因、RNA 或其他具有潜在治愈或减缓疾病进展能力的特定分子来针对潜在的疾病机制。纳米技术和纳米科学的最新进展,特别是在颗粒设计和配方方面,正在扩大疾病靶点。更安全、更有效的药物输送系统扩展了我们的工具包,用于将特定分子,特别是递送到肝细胞中,并在动物模型中进行了概念验证研究。将现有药物重新用作分子伴侣或血红素合成抑制剂也很有前途。本文综述了这些新兴治疗方法的关键实例及其在肝性和红细胞生成性卟啉病中的应用。

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