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Updated: Jan 5, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Pembrolizumab for anaplastic thyroid cancer: a case study
Marra Jai Aghajani1,2, Adam Cooper3,4, Helen McGuire5,6
1Ingham Institute for Applied Medical Research, 1 Campbell St, Liverpool, NSW, 2170, Australia. 17691938@student.westernsydney.edu.au.
Abstract:
Blockade of the PD-1/PD-L1 pathway with targeted monoclonal antibodies has demonstrated encouraging anti-tumour activity in multiple cancer types. We present the case of a patient with BRAF-negative stage IVC anaplastic thyroid cancer (ATC) treated with the anti-PD-1 monoclonal antibody, pembrolizumab, following radiographic progression on chemoradiation. Blood samples were collected prior to and at four time points during treatment with pembrolizumab. Mass cytometry was used to determine expression of relevant biomarkers by peripheral blood mononuclear cells. Faecal samples were collected at baseline and 4 weeks following treatment initiation; taxonomic profiling using 16S ribosomal RNA (rRNA) gene sequencing was performed. Following treatment, a marked expansion in CD20+ B cell, CD16+ CD56lo NK cell and CD45RO+ CCR7+ central memory CD4+ T-cell populations was observed in the peripheral blood. Proportions of cells expressing the co-receptors TIGIT, OX40 and CD86 also increased during treatment. A high abundance of bacteria of the order Bacteroidales, specifically from the Bacteroidaceae and Rikenellaceae families, was identified in the faecal microbiota. Moreover, the patient's microbiome was enriched in Clostridiales order members Ruminococcaceae, Veillonellaceae and Lachnospiraceae. Alpha diversity of the gut microbiome was significantly higher following initiation of checkpoint therapy as assessed by the Shannon and Simpson index. Our results suggest that treatment with pembrolizumab promotes expansion of T-, B- and NK cell populations in the peripheral blood at the time of tumour regression and have the potential to be implemented as predictive biomarkers in the context of checkpoint blockade therapy. Larger studies to confirm these findings are warranted.
Insights
Pembrolizumab treatment for anaplastic thyroid cancer expanded immune cells and altered the gut microbiome. These changes, including increased T, B, and NK cells, may serve as biomarkers for effective checkpoint blockade therapy.
Area of Science:
- Immunology
- Oncology
- Microbiome Research
Background:
- The programmed cell death protein 1 (PD-1)/programmed death-ligand 1 (PD-L1) pathway is a target for cancer immunotherapy.
- Anaplastic thyroid cancer (ATC) is an aggressive malignancy with limited treatment options.
- Checkpoint blockade therapy, such as with anti-PD-1 antibodies, shows promise in various cancers.
Purpose of the Study:
- To investigate the immunological and microbiome changes in a patient with BRAF-negative stage IVC anaplastic thyroid cancer treated with pembrolizumab.
- To identify potential peripheral blood and gut microbiome biomarkers associated with response to PD-1 blockade therapy.
Main Methods:
- Mass cytometry analysis of peripheral blood mononuclear cells (PBMCs) before and during pembrolizumab treatment.
- 16S ribosomal RNA (rRNA) gene sequencing of fecal samples to profile the gut microbiome at baseline and during treatment.
- Assessment of changes in immune cell populations and microbial composition and diversity.
Main Results:
- Pembrolizumab treatment led to significant expansion of CD20+ B cells, CD16+ CD56lo NK cells, and central memory CD4+ T cells in peripheral blood.
- Increased expression of co-receptors TIGIT, OX40, and CD86 was observed on immune cells.
- Gut microbiome analysis revealed enrichment of specific bacterial orders (Bacteroidales, Clostridiales) and increased alpha diversity (Shannon and Simpson indices).
Conclusions:
- Pembrolizumab therapy promotes expansion of key immune cell populations (T, B, NK) correlating with tumor regression.
- Alterations in the gut microbiome composition and diversity are associated with checkpoint blockade therapy.
- Peripheral blood immune cell profiles and gut microbiome characteristics may serve as predictive biomarkers for immunotherapy response.
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