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Rudagi, B. M.

Publications and source records attributed to Rudagi, B. M..

2 recordsLinked to original sources

Integrative Transcriptomics and Phytochemical Screening Reveal Pratenol B, Eriodictyol, Losbanine, and Isookanin, as Potential EGFR and HRAS Inhibitors in Indian Oral Squamous Cell Carcinoma Patients

Oral squamous cell carcinoma (OSCC) is the most common head and neck cancer, with India contributing nearly one-third of the global cases. Management of OSCC remains difficult due to increasing risk factors, limited therapeutic options, severe side effects, and rising drug resistance. Therefore, novel and safer treatment strategies are urgently needed. This study explores the potential of phytochemicals as targeted inhibitors of key dysregulated biomarkers in Indian OSCC patients. RNA sequencing and pathway analysis revealed significant alterations in the MAPK signaling pathway, highlighting EGFR and HRAS as crucial therapeutic targets. Given the limited clinical success of existing EGFR-targeted therapies and the scarcity of HRAS inhibitors, a natural product-based approach was adopted. Molecular docking of 17,000 phytochemicals identified Pratenol B, Eriodictyol, Losbanine, and Isookanin as promising inhibitors, with Pratenol B showing dual inhibition of EGFR and HRAS. These compounds exhibited strong binding affinities, favorable pharmacokinetic profiles, high bioavailability, and low toxicity. Molecular dynamics simulations confirmed the stability of Pratenol B with both target proteins, surpassing reference inhibitors. Utilizing vast medicinal plant diversity presents a cost-effective and low-toxicity avenue for OSCC therapy. Further in vitro, in vivo, and clinical studies are warranted to validate these phytochemicals as potential therapeutics.

cancer biology↗

Upregulation of a novel lncRNA KLHDC7B-DT in Head and Neck Cancers: Implications for Prognosis and Molecular Mechanisms

Head and neck cancer (HNC), the seventh most frequent malignancy globally, is a serious health concern. Despite advancements in treatment, the overall survival rate for HNC remains around 50%, with even poorer outcomes in metastatic cases. This highlights the urgent need to explore the molecular mechanisms underlying HNC for improved diagnostics and therapies. The importance of non-coding RNAs, especially long non-coding RNAs (lncRNAs), in a variety of malignancies, including HNC, has been highlighted in recent researches. Although lncRNAs and mRNA are very similar, lncRNAs do not encode proteins and they are longer than 200 nucleotides. While studies have implicated lncRNAs in several cancers, including HNC, their exact role in HNC remains unclear, and there are currently no clinically established lncRNA biomarkers for diagnosis or therapy. Thus, this study aims to identify novel lncRNAs and investigate their significance in HNC. For this, we looked over recent research and discovered a new lncRNA called KLHDC7B-DT. The KLHDC7B-DT is significantly upregulated in HNC patient samples, and this result is corroborated by TCGA HNC data and cell lines. Further investigation suggests that KLHDC7B-DT may be linked with cancer stage, grade, age, and worse patient survival. We identified potential miRNAs that interact with KLHDC7B-DT and presented mRNA targets of these miRNAs, along with their possible functions. We propose that KLHDC7B-DT may regulate IL-6 expression in HNC, either through miRNAs or alternative mechanisms. Additionally, we found a significant positive correlation between the neighboring protein-coding gene KLHDC7B and the KLHDC7B-DT in HNC, both of which are significantly upregulated in HNC. In conclusion, KLHDC7B-DT is upregulated in HNC and holds promise as a prognostic and therapeutic biomarker. This study marks the first report highlighting the significance of KLHDC7B-DT in HNC.

cancer biology↗