Publications by authors named "Divya Srihari"

Article Synopsis
  • The study focuses on early detection of peripheral nerve sheath tumors (PNST) associated with neurofibromatosis type 1 (NF1) using a cell-free DNA (cfDNA) fragmentomic approach, which can improve clinical decision-making and treatment outcomes.
  • Researchers isolated cfDNA from plasma samples of 101 NF1 patients and 21 healthy controls, employing whole-genome sequencing and analyzing various fragmentomic signatures to differentiate between benign, premalignant, and malignant tumors.
  • Results showed that fragmentomic methods successfully distinguished atypical neurofibromas (premalignant) from benign forms and malignant PNST, offering potential for non-invasive diagnostics and better management of NF1-related tumors.*
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Article Synopsis
  • Early detection of neurofibromatosis type 1 (NF1) associated tumors can improve clinical decision-making and potentially reduce severe outcomes.
  • A new study employed a cell-free DNA (cfDNA) fragmentomic method, successfully differentiating between benign, pre-malignant, and malignant peripheral nerve sheath tumors (PNST) in NF1 patients.
  • This innovative approach allows non-invasive diagnosis and could significantly enhance the management of NF1-associated tumors, helping to differentiate conditions like atypical neurofibromas from more severe malignancies.
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Background: The leading cause of mortality for patients with the neurofibromatosis type 1 (NF1) cancer predisposition syndrome is the development of malignant peripheral nerve sheath tumor (MPNST), an aggressive soft tissue sarcoma. In the setting of NF1, this cancer type frequently arises from within its common and benign precursor, plexiform neurofibroma (PN). Transformation from PN to MPNST is challenging to diagnose due to difficulties in distinguishing cross-sectional imaging results and intralesional heterogeneity resulting in biopsy sampling errors.

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Background: Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive soft tissue sarcomas with high metastatic rates and poor overall patient survival. There are currently no effective therapies, underscoring the pressing need to define the molecular etiologies that underlie MPNST progression. The aim of this study was to examine clonal progression and identify the molecular events critical for MPNST spread.

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