Natural products targeting the immune-metabolic regulatory network in pulmonary hypertension: mechanisms, classification, and therapeutic prospects
Jianli Ma, Xiyu Cao, Xiuli Yang, Yi Zhu, Hualing Wang, Yundou Liu, Ke Chen, Xiao Liu, Chuantao Zhang

TL;DR
This paper explores how natural products can target the complex immune-metabolic network in pulmonary hypertension to improve treatment outcomes.
Contribution
The paper introduces a classification of natural products based on their immune and metabolic regulatory effects in pulmonary hypertension.
Findings
Natural products can modulate immune responses and metabolic pathways in pulmonary hypertension.
Immunomodulatory compounds inhibit inflammatory pathways and regulate immune cell infiltration.
Metabolic regulators restore mitochondrial function and correct abnormal glucose and lipid metabolism.
Abstract
Pulmonary hypertension (PH) is a clinical syndrome characterized by progressive elevation of pulmonary vascular resistance, whose pathological process is closely related to the crosstalk between immune dysregulation and metabolic remodeling, forming a complex immune-metabolic regulatory network. The abnormal activation and polarization of innate immune cells, as well as the imbalance and autoreactivity of the adaptive immune system, jointly drive the pulmonary vascular inflammatory response. Metabolic reprogramming of pulmonary artery smooth muscle cells, pulmonary artery endothelial cells, and others provides the energy and material basis for abnormal proliferation of vascular cells. Abnormal products generated by metabolic disorders can regulate energy metabolism of immune cells and inflammatory signals; abnormal activation of immune signals can remodel metabolic pathways. The two…
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Taxonomy
TopicsPulmonary Hypertension Research and Treatments · Sirtuins and Resveratrol in Medicine · Natural Compounds in Disease Treatment
