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Updated: Oct 9, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Targeting the replication of adenovirus to p53-defective thyroid carcinoma with a p53-regulated Cre/loxP system
Y Nagayama1, E Nishihara, H Namba
1Department of Pharmacology 1, Nagasaki University School of Medicine, Japan. nagayama@net.nagasaki-u.ac.jp
Abstract:
In this article, we evaluated the feasibility of the restricted replication-competent adenoviruses for treatment of anaplastic thyroid carcinomas (ATCs), which are very aggressive and difficult to treat. Because ATCs very often harbor p53 mutations, we used wt-p53 as a regulatory factor to restrict virus replication and cytopathic effect to p53-mutated cells. The recently reported "gene inactivation strategy" using p53-regulated Cre/loxP system was employed; this system consists of two recombinant adenoviruses. One has an expression unit of the synthetic p53 - responsive promoter and the Cre recombinase gene (Axyp53RECre), and another contains two expression units; the first consists of E1A gene flanked by a pair of loxP sites downstream of the constitutive CAG promoter and the second E1B19K gene under the control of the CMV promoter (AdCALE1AL). We expected that coinfection of these two adenoviruses into the cells with wt-p53 would lead to expression of the Cre, which excises E1A gene and switches off E1A expression resulting in no virus replication, whereas in the cells with mutant p53 E1A could be expressed that leads to virus replication and cell lysis. Our in vitro data demonstrate that although infection of AdCALE1AL alone led to E1A expression, viral replication and cytolysis in all the thyroid cells examined irrespective of their p53 status, the double infection did so in FRO cells (p53-null ATC) but not in FRO cells stably expressing wt-p53 and normal thyroid cells with wt-p53. These data indicate that our double infection method may have a potential for treatment of ATC and probably also other p53-defective cancer cells.
Insights
This study explored using modified adenoviruses to treat anaplastic thyroid carcinomas (ATCs). The novel approach restricts virus replication to cancer cells with p53 mutations, offering a targeted therapy for aggressive ATCs.
Area of Science:
- Oncolytic virology
- Gene therapy
- Cancer research
Background:
- Anaplastic thyroid carcinomas (ATCs) are aggressive and difficult to treat.
- Many ATCs harbor p53 mutations, presenting a therapeutic vulnerability.
- Targeted viral replication offers a promising strategy for cancer treatment.
Purpose of the Study:
- To evaluate the feasibility of restricted replication-competent adenoviruses for ATC treatment.
- To develop a p53-regulated gene inactivation strategy for selective viral replication.
- To assess the efficacy of a dual-adenovirus system in p53-mutated and wild-type p53 cells.
Main Methods:
- Employed a p53-regulated Cre/loxP gene inactivation system with two recombinant adenoviruses: Axyp53RECre and AdCALE1AL.
- Axyp53RECre expresses Cre recombinase under a p53-responsive promoter.
- AdCALE1AL contains a loxP-flanked E1A gene and an E1B19K gene.
Main Results:
- Single AdCALE1AL infection caused E1A expression, viral replication, and cytolysis in all thyroid cells, regardless of p53 status.
- Double infection with Axyp53RECre and AdCALE1AL resulted in selective viral replication and cytolysis in p53-null ATC cells (FRO).
- This double infection strategy did not lead to significant viral replication or cell lysis in normal thyroid cells or FRO cells expressing wild-type p53.
Conclusions:
- The dual-adenovirus infection method demonstrates potential for targeted treatment of anaplastic thyroid carcinomas.
- This strategy selectively targets cancer cells with p53 mutations, sparing normal cells.
- The p53-regulated gene inactivation system offers a promising approach for treating p53-defective cancers.
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