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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Treatment for a B-cell acute lymphoblastic leukemia patient carrying a rare TP53 c.C275T mutation: A case report
Runan Wang1, Wenliang Wang2, Xuan Liu3
1Department of Pediatrics, Shengjing Hospital of China Medical University, Shengyang, Liangning, China.
Insights
A rare TP53 mutation in pediatric B-cell acute lymphoblastic leukemia (B-ALL) led to chemotherapy resistance. Bortezomib-based therapy effectively eliminated leukemia, suggesting a new treatment approach for this aggressive cancer.
Area of Science:
- Oncology
- Genetics
- Hematology
Background:
- TP53 mutations are linked to poor outcomes in most cancers.
- Pediatric B-cell acute lymphoblastic leukemia (B-ALL) is the most common childhood cancer.
- The TP53 gene is a critical tumor suppressor, and its mutations often confer treatment resistance.
Observation:
- A pediatric B-ALL patient presented with a rare TP53 c.C275T mutation.
- Leukemic cells showed resistance to conventional chemotherapy, remaining minimal residual disease (MRD)-positive.
- In vitro drug sensitivity assays identified bortezomib as highly effective against the patient's leukemic cells.
Findings:
- The patient received a combination therapy including bortezomib, vindesine, cytarabine, and fludarabine.
- After one treatment course, the patient achieved MRD-negative status.
- No recurrence was observed during a 9-month follow-up period.
Implications:
- The TP53 c.C275T mutation may indicate a poor prognosis in B-ALL.
- Bortezomib combined with chemotherapy offers a promising alternative to conventional regimens for B-ALL with this mutation.
- This case highlights the importance of personalized medicine in treating refractory pediatric leukemias.
Abstract:
TP53 mutations are associated with poor prognosis in the vast majority of cancers. In this study, we present a pediatric B-cell acute lymphoblastic leukemia (B-ALL) patient carrying a rare TP53 c.C275T mutation. This extremely rare mutation affects an amino acid residue located between the TAD domain and the DNA-binding domain of p53. The patient was resistant to most conventional chemotherapy regimens and remained minimal residual disease (MRD)-positive after five rounds of such regimens. We tested the sensitivity of the patient's leukemic cells to 21 anti-cancer drugs by performing in vitro drug sensitivity assays. The results showed that bortezomib had a very strong killing effect on the patient's leukemic cells. Therefore, we subsequently treated the patient with bortezomib combined with vindesine, cytarabine, and fludarabine. After one course of treatment, the patient became MRD-negative, and there was no recurrence during a 9-month follow-up. In conclusion, our report suggests that the TP53 c.C275T mutation is associated with poor prognosis in B-ALL. Fortunately, bortezomib combined with chemotherapy could achieve a better therapeutic effect than conventional regimens in this type of ALL.
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