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Santiago Raj, P. V.

Publications and source records attributed to Santiago Raj, P. V..

2 recordsLinked to original sources

Integrative analysis reveals therapeutic potential of pyrvinium pamoate in Merkel cell carcinoma

Merkel Cell Carcinoma (MCC) is an aggressive neuroendocrine cutaneous malignancy arising from either ultraviolet-induced mutagenesis or Merkel cell polyomavirus (MCPyV) integration. Despite extensive research, our understanding of the molecular mechanisms driving the transition from normal cells to MCC remains limited. To address this knowledge gap, we assessed the impact of inducible MCPyV T antigens on normal human fibroblasts by performing RNA sequencing. Our data uncovered changes in expression and regulation of Wnt signaling pathway members. Building on this observation, we bioinformatically evaluated various Wnt pathway perturbagens for their ability to reverse the MCC gene expression signature and identified pyrvinium pamoate, an FDA-approved anthelminthic drug known for its anti-tumor activity in other cancers. Leveraging transcriptomic, network, and molecular analyses, we found that pyrvinium targets multiple MCC vulnerabilities. Pyrvinium not only reverses the neuroendocrine features of MCC by modulating canonical and non-canonical Wnt signaling but also inhibits cancer cell growth by activating p53-mediated apoptosis, disrupting mitochondrial function, and inducing endoplasmic reticulum stress. Finally, we demonstrated that pyrvinium reduces tumor growth in an MCC mouse xenograft model. These findings offer a new understanding of the role of Wnt signaling in MCC and highlight the utility of pyrvinium as a potential treatment for MCC.

cancer biology↗

Oral Streptococci S. anginosus and S. mitis induce distinct morphological, inflammatory, and metabolic signatures in macrophages

Oral streptococci are the pioneer colonizer and structural architect of the complex oral biofilm. Disruption of this architectural framework causes oral dysbiosis associated with various clinical conditions, including dental caries, gingivitis, and oral cancer. Among the genus Streptococcus, S. anginosus is associated with esophageal, gastric, and pharyngeal cancer tissues, while S. mitis is correlated with oral cancer. However, no study has investigated mechanistic links between these Streptococcus species and cancer-related inflammatory responses. To explore the underlying involvement of S. anginosus and S. mitis in inflammation-associated cancer development, we investigated the innate immune response elicited by S. anginosus versus S. mitis using the RAW264.7 macrophage cell line. Compared to untreated or S. mitis infected macrophages, S. anginosus infected macrophages exhibited a robust proinflammatory response characterized by significantly increased levels of inflammatory cytokines and mediators, including TNF, IL-6, IL-1{beta}, NOS2, and COX2, accompanied by enhanced NF-{kappa}B activation. Mitostress analysis revealed an increased extracellular acidification rate in macrophages infected with S. anginosus compared to S. mitis. Further, macrophages infected with S. anginosus for 6h displayed upregulated aconitate decarboxylase, which catalyzes itaconate production. In contrast, no significant alterations were observed in succinate dehydrogenase that converts succinate to fumarate. At 24h, S. anginosus induced significant shifts in succinate and itaconate, emphasizing a unique macrophage metabolic profile, and an augmented inflammatory response in response to S. anginosus. This study underscores the capacity of S. anginosus to elicit a robust proinflammatory response in macrophages and opens new avenues of secretory immune metabolites in response to oral streptococci. ImportanceThe surge in head and neck cancer cases among individuals devoid of typical risk factors such as HPV infection, tobacco and alcohol use sparks an argumentative discussion around the emerging role of oral microbiota as a novel risk factor in oral squamous cell carcinoma (OSCC). While substantial research has dissected the gut microbiomes influence on physiology, the oral microbiome, notably oral streptococci, a gatekeeper of systemic health, has been underappreciated in mucosal immunopathogenesis. S. anginosus, a viridans streptococci group, has been linked to abscess formation and an elevated presence in esophageal cancer and OSCC. The current study aims to probe the innate immune response to S. anginosus compared to the early colonizer S. mitis as an initial ride towards understanding the impact of distinct oral Streptococcus species on the host immune response in the progression of OSCC.

microbiology↗