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Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
Published on: September 8, 2021
Changes in tumor morphology and cyclin-dependent kinase inhibitor expression in metastatic melanoma treated with
Jonathan L Curry1, Gerald S Falchook, Wen-Jen Hwu
1Department of Pathology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA. jlcurry@mdanderson.org
Abstract:
Dermatologic toxicities associated with anticancer-targeted therapy include hand-foot skin reactions, vasculitis, cutaneous epithelial proliferations, such as keratosis, keratoacanthoma, and invasive squamous cell carcinoma. In this case report, we describe alterations of tumor morphology and patterns of cyclin-dependent kinase inhibitor (CDKI) expression in a patient who received GSK2118436, a second-generation RAF inhibitor, for stage IV (M1c) metastatic melanoma. To explore the effects of GSK2118436 on the expression patterns of CDKI (p16, p21, p27, p57), we immunohistochemically evaluated in vivo melanoma cells pre- and posttreated with GSK2118436. After GSK2118436 treatment, the melanoma cells decreased in size and demonstrated hyperchromatic nuclei and indistinct nucleoli. p16 was strongly expressed in the cytoplasm of pretreated melanoma cells and in the nucleus and cytoplasm in posttreated melanoma cells. Expression of both p27 (nucleus) and p57 (cytoplasm) was increased in posttreated melanoma cells and no significant difference in p21 expression was noted in either pre- or posttreated tumor cells. These findings may help explain the molecular mechanisms by which tumor cells retain the ability to proliferate. The persistent activation of pro-oncogenic activities of CDKI (eg, p27 and p57) and/or compartmentalization of p16 in cytoplasm or nucleus may allow tumor cells to bypass BRAF-induced senescence mechanisms. Furthermore, awareness of changes in tumor morphology after treatment with RAF inhibitors may be helpful in histologic evaluation of the spectrum of dermatologic toxicity, which may occur on targeted therapy.
Insights
This study examined cyclin-dependent kinase inhibitor (CDKI) expression in melanoma cells treated with a RAF inhibitor. Increased p27 and p57, along with altered p16 expression, may explain tumor cell proliferation despite targeted therapy.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Anticancer targeted therapies can cause dermatologic toxicities.
- RAF inhibitors are used for metastatic melanoma.
- Understanding treatment effects on tumor biology is crucial.
Observation:
- Melanoma cells treated with GSK2118436 (a RAF inhibitor) showed altered morphology.
- Immunohistochemistry revealed changes in cyclin-dependent kinase inhibitor (CDKI) expression.
- p16, p21, p27, and p57 expression patterns were analyzed pre- and post-treatment.
Findings:
- Post-treatment, melanoma cells decreased in size with hyperchromatic nuclei.
- p16 expression shifted to both nucleus and cytoplasm.
- Increased nuclear p27 and cytoplasmic p57 expression were observed; p21 showed no significant change.
Implications:
- Altered CDKI expression (p27, p57) may facilitate tumor cell proliferation.
- p16 compartmentalization might contribute to bypassing senescence.
- Recognizing morphological changes aids in evaluating RAF inhibitor-induced dermatologic toxicity.
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