Match tier Listed
Presence Current · Arkansas
Last published 2026
Sources OpenAlex · ORCID
Refreshed 2026-08-08

Shabiha Afroj Heeamoni

Researcher

Also affiliated: University of Dhaka (2024–2025)

Unknown Researcher

1 h-index 6 pubs 7 cited

Biography and Research Information

OverviewAI-generated summary

Shabiha Afroj Heeamoni's research focuses on understanding the molecular mechanisms underlying cancer, particularly bladder cancer. Her work investigates the role of specific genes, such as TP53 and EZH2, in cancer development, gene expression, and patient survival. She has explored prognostic signatures for bladder cancer associated with epithelial-mesenchymal transition pathways, utilizing large-scale patient data from the TCGA Database. Heeamoni also studies gene splicing regulation, examining how proteins like SRSF6 and SRSF1 influence the inclusion of specific exons, as demonstrated in her work on the MUSK gene. Her recent publications address the oncogenic splicing of EZH2 and the potential for antisense correction strategies.

Heeamoni has a h-index of 1 with 6 citations across 4 publications. She collaborates with researchers at the University of Arkansas for Medical Sciences, including Preeti Nagar, Mohammad Alinoor Rahman, Md. Rafikul Islam, and Md. Mahbub Hasan, with whom she has co-authored multiple publications.

Metrics

  • h-index: 1
  • Publications: 6
  • Citations: 7

Selected Publications

  • Targeting <i>EZH2</i> oncogenic splicing: decoding the regulatory network and antisense correction (2026)
    Genes & Development DOI OpenAlex
  • CRISPR-mediated Correction of Oncogenic AS-NMD in Splicing Factor Mutant Cancer (2026)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Targeting <i>EZH2</i> Oncogenic Splicing: Decoding the Regulatory Network and Antisense Correction (2026)
    bioRxiv (Cold Spring Harbor Laboratory) 1 citation DOI OpenAlex
  • SRSF6 and SRSF1 coordinately enhance the inclusion of human <i>MUSK</i> exon 10 to generate a Wnt-sensitive MuSK isoform (2025)
    NAR Molecular Medicine 5 citations DOI OpenAlex

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Collaboration Network

13 Collaborators 9 Institutions 2 Countries

Top Collaborators

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