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Enterovirus 71 (EV71) is a significant pathogen responsible for hand, foot, and mouth disease (HFMD), which poses a substantial public health concern, particularly in the Asia-Pacific region. The virus is transmitted primarily through the fecal-oral route and via respiratory droplets, entering the host via the gastrointestinal tract where it replicates before spreading to the central nervous system. The virus predominantly affects children under five years of age, often resulting in severe neurological complications, including aseptic meningitis, acute flaccid paralysis, and, in some cases, death. Despite the development of vaccines, global control of EV71 remains challenging due to its high genetic variability. The PI3K/Akt signaling pathway plays a critical role in regulating various cellular processes, such as cell survival, proliferation, and differentiation. This pathway is frequently exploited by viruses to facilitate infection and replication. Consequently, therapeutic interventions that target the PI3K/Akt pathway emerge as a promising strategy to combat viral infections, including EV71. Notably, the PI3K inhibitor Pilaralisib has demonstrated efficacy in reducing EV71-induced mortality by 50-80% in animal models. However, its low cellular safety profile poses limitations to its therapeutic potential. This study sought to investigate the role of the PI3K/Akt pathway in EV71 infection and the potential of its inhibitors as a therapeutic strategy. We examined the effects of PI3K inhibition on EV71 replication both in vitro and in vivo, exploring the underlying mechanisms. Our findings suggest that the PI3K/Akt signaling pathway is involved in the replication of EV71 and that its inhibition could offer a promising approach to preventing or alleviating the severity of HFMD.
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http://dx.doi.org/10.1186/s12985-025-02881-w | DOI Listing |
Virchows Arch
September 2025
Department of Public Health, University Federico II of Naples, Naples, Italy.
The PTEN tumor suppressor regulates the PIK3CA/AKT1 pathway, and its inactivation significantly contributes to tumorigenesis and progression in hormone receptor-positive/HER2-negative (HR + /HER2 -) metastatic breast cancer (MBC). In ~ 5% of these patients, PTEN loss, primarily due to gene deletions, leads to aberrant PI3K signaling and enhanced oncogenic potential. Findings from the CAPItello-291 study further establish PTEN together with PIK3CA and AKT1 as a predictive biomarker for Capivasertib, a pan-AKT inhibitor, in these patients.
View Article and Find Full Text PDFCell Signal
September 2025
Department of Gastroenterology, The Second Affiliated Hospital of Guilin Medical University, Guilin 541199, China; Guangxi Health Commission Key Laboratory of Glucose and Lipid Metabolism Disorders, The Second Affiliated Hospital of Guilin Medical University, Guilin 541199, China; Guangxi Key Labora
Intestinal dysmotility is a major complication that significantly impacts the prognosis of acute pancreatitis (AP). The neuronal nitric oxide synthase (nNOS) -expressing neurons within the enteric nervous system promote intestinal relaxation via the release of nitric oxide (NO). As the rate-limiting enzyme of NO synthesis, nNOS directly regulates NO production, thereby modulating intestinal motility.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Shaanxi Key Laboratory of Natural Products and Chemical Biology, College of Chemistry and Pharmacy, Northwest A&F University, Xianyang, China. Electronic address:
Pancreatic adenocarcinoma (PAAD) lacks effective therapies due to complex macromolecular signaling networks. Here, we identified the natural compound Trienomycin A (TA) as a potent binder and degrader of the key signaling adaptor protein Insulin Receptor Substrate 1 (IRS1), disrupting its macromolecular assembly in insulin-like growth pathways. Through integrated biochemical, cellular, and in vivo analyses, we demonstrated that TA directly bound the phosphotyrosine-binding (PTB) domain of IRS1, inducing proteasomal degradation of this critical macromolecular hub mediated by the E3 ubiquitin ligase FBXW8.
View Article and Find Full Text PDFReprod Toxicol
September 2025
School of Public Health, Beihua University, Jilin 132013, China. Electronic address:
This study aimed to investigate the protective mechanism of Ginsenoside Rg3 (Rg3) against Di-n-butyl phthalate (DBP) induced spermatogenic damage, focusing on the Src/PI3K/Akt pathway. In vivo experiments demonstrated that Rg3 restored DBP-induced dysregulation of gap junction (GJ) protein connexin 43 (Cx43), improved testicular structure, enhanced sperm parameters (count and motility), and upregulated phosphorylation of Src, PI3K, and Akt (p-Src, p-PI3K, p-Akt) in mice. In vitro studies, using the metabolite of DBP, monobutyl phthalate (MBP), and pathway inhibitors (PP2 for Src and LY294002 for PI3K), further confirmed these effects.
View Article and Find Full Text PDFEcotoxicol Environ Saf
September 2025
College of Environment and Climate, Guangdong Key Laboratory of Environmental Pollution and Health, Jinan University, Guangzhou, Guangdong 510632, China.
Synthetic antioxidants and plasticizers have emerged as environmental contaminants to which prenatal exposure is widespread, raising concerns about adverse pregnancy outcomes. This study aimed to investigate the association between prenatal exposure to a mixture of synthetic antioxidants and plasticizers and the risk of spontaneous preterm birth (SPB), alongside underlying molecular responses. A nested case-control design was established, including 80 SPB cases and 170 matched healthy controls.
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