INTRODUCTION
Depression is a common and complex mental health condition. It is shaped by many genetic, environmental, and social factors that influence when it starts and how it progresses. The main biological changes behind depression are still not well understood. Current treatments help some patients, but many only experience partial or unstable benefits. There is a clear need for treatments that are both more effective and more precise for depression. In this study, up-to-date genetic and pharmacogenomic data were used to identify genes targeted by drugs and potential therapy targets for depression. Information from several independent resources was brought together, and these datasets were combined in a stepwise way. With this strategy, the aim was to provide a practical starting point for the development of more targeted antidepressant therapies.
METHODS
Cross-tissue expression quantitative trait loci (eQTL) were first used to analyze data, and these data were combined with Genome-Wide Association Study (GWAS) summary statistics for depression. Then Mendelian Randomization (MR) was applied to identify candidate druggable genes. Colocalization analyses were also performed to check whether the eQTL and depression signals were likely to share the same causal variants. To further assess biological and therapeutic relevance, Phenome-Wide Association Studies (PheWAS), functional enrichment analyses, computational drug prediction, molecular docking, and molecular dynamics simulations were carried out.
RESULTS
Using Mendelian randomization, 34 blood-derived genes and 25 brain-derived genes were identified that showed evidence of association with depression. Colocalization further supported causal roles for 23 blood-and 14 brain-derived genes, with SNRK, MANF, and P4HTM showing significant signals in both tissues. Enrichment analyses implicated immune-related pathways. Docking and dynamics confirmed stable binding between key targets and compounds such as quercetagetin and myricetin.
DISCUSSION
In this study, 34 potential druggable targets for depression were found, with SNRK, MANF, and P4HTM showing consistent importance across tissues. In addition, quercetagetin and myricetin emerged as promising candidates for depression therapy.
CONCLUSION
These findings provide new therapeutic candidates and help establish a mechanistic framework for the development of targeted antidepressants.
Ze-Hua Luo, Jiaqian Ma, Fan Wu et al.· Current Medicinal Chemistry· 0 citations
Abstract Sepsis is a life-threatening organ dysfunction driven by a dysregulated host response to infection, yet targeted pharmacological therapies remain severely limited. Emerging evidence highlights ferroptosis, an iron-dependent form of regulated cell death driven by lipid peroxidation, as a pivotal mechanism underlying sepsis pathogenesis and subsequent multiple organ dysfunction syndrome (MODS). While the pathological relevance of ferroptosis is well-established, comprehensive reviews exploring the potential of Traditional Chinese Medicine (TCM) and natural bioactive compounds to therapeutically modulate this pathway in sepsis remain scarce. This review systematically evaluates diverse TCM-derived phytochemicals, including flavonoids, terpenoids, alkaloids, and polyphenols, elucidating their molecular mechanisms in attenuating sepsis-induced ferroptosis. Specifically, we detail how these natural products mitigate multi-organ injury by restoring iron homeostasis, quenching lipid peroxidation cascades, and upregulating core antioxidant axes, notably the Nrf2/SLC7A11/GPX4 signaling pathway. By synthesizing current preclinical evidence encompassing isolated bioactive compounds and classical TCM formulae, this review aims to clarify the pharmacological rationale of TCM in sepsis management, offering novel insights for the discovery of innovative therapeutic targets and the development of precision medicine strategies.
Fan Wu, Changlan Gao, Xiangru Zheng et al.· Journal of Inflammation Rese...· 0 citations
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