A study of the influence of lead pollution on the anticoagulant activity of Whitmania pigra based on pharmacodynamics and metabolomics research
Quality control study published in Journal of Chromatography B (2021)
Abstract
Whitmania pigra Whitman (leech, also called Shuizhi in China, abbreviated as SZ), which has been used as a traditional Chinese medicine in the treatment of blood stasis syndrome (BSS) for a long time, is vulnerable to lead pollution in aquaculture environments. SZ has good anticoagulant activity. However, there are few studies on the influence of lead pollution on it. Therefore, we carried out the following researches to explore the influence of lead pollution on the anticoagulant activity of SZ and its mechanism. Firstly, the acute blood stasis model of rats was established by subcutaneous injection of adrenaline hydrochloride and ice water bath. Then unpolluted SZ (UPS) and lead-polluted SZ (LPS) were extracted. Next, the blood stasis model rats were administrated by gavage and the rats in normal control (NC) group and blood stasis model (BM) group were given the same amount of normal saline. Finally, the blood of the rats was collected to detect the coagulation function and hemorheology indexes. The metabolomics of rat plasma was studied by ultra-high-performance liquid chromatography coupled with orbitrap mass spectrometry (UPLC-Orbitrap-MS) technology. Principal component analysis (PCA), orthogonal partial least squares discriminant analysis (OPLS-DA) and Hierarchical clustering analysis (HCA) were used to perform metabolomics analysis. MetPA analysis was used to search for related metabolic pathways. The results of coagulation function and hemorheology showed that lead pollution could decrease the anticoagulant activity of SZ. The OPLS-DA score plots indicated that the plasma metabolites of rats in LPS group were close to BM group, while UPS group tended to be close to NC group both in the positive and negative ion mode. Hierarchical cluster analysis (HCA) suggested that UPS group and NC group were clustered into a branch, while LPS group and BM group were clustered into a branch. To sum up, lead pollution will reduce the anticoagulant activity of SZ. And lead pollution reduces the anticoagulant activity of SZ probably by influencing the metabolic pathways such as sphingolipid metabolism, amino acid metabolism and energy metabolism in rats.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
UPLC-Orbitrap-MS metabolomics in blood stasis model rats showed that lead pollution of aquaculture-grown Whitmania pigra significantly reduces its anticoagulant activity by altering sphingolipid metabolism, amino acid metabolism, and energy metabolism pathways.
Por qué esto importa para la hirudoterapia
Este estudio examinó cómo la contaminación por plomo afecta la actividad anticoagulante de Whitmania pigra (Shuizhi), una sanguijuela utilizada en la medicina tradicional china para el síndrome de estasis sanguínea, utilizando un modelo de rata con estasis sanguínea aguda inducida por adrenalina/agua-hielo y metabolómica plasmática mediante UPLC-Orbitrap-MS. Los resultados de la función de coagulación y la hemorreología mostraron que W. pigra contaminada con plomo presentó una actividad anticoagulante reducida en comparación con la sanguijuela no contaminada, y los análisis metabolómicos (PCA, OPLS-DA, HCA) sugirieron que el grupo contaminado con plomo se agrupó cerca del modelo de enfermedad mientras que la sanguijuela no contaminada se agrupó cerca de los controles normales, lo que implica vías del metabolismo de esfingolípidos, aminoácidos y energético. Para ASH, esto resalta cómo la contaminación ambiental de las sanguijuelas medicinales cultivadas puede comprometer la calidad anticoagulante terapéutica. Advertencia: los hallazgos se limitan a un modelo de estasis sanguínea en rata, no incluyen caracterización del secretoma salival de la sanguijuela y no abordan directamente la hirudoterapia en vivo.
Citación
A study of the influence of lead pollution on the anticoagulant activity of Whitmania pigra based on pharmacodynamics and metabolomics research.
Chen X et al. · Journal of Chromatography B, 2021
Contexto clínico relacionado
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Añadido a la biblioteca ASH: May 27, 2026 · Última actualización del sitio: 18 de junio de 2026