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Updated: Mar 20, 2026

Acupoint Application Combined with Acupressure as an Adjunctive Therapy for Chemotherapy-Induced Nausea and Vomiting
Published on: June 21, 2024
[Salivation in children during anticancer chemotherapy]
1Belarusian State Medical University, Minsk, Belarus', National Research Center for Pediatric Oncology, Hematology and Immunology, Minsk, Belarus'.
Insights
High-dose methotrexate chemotherapy in children causes salivation dysfunction, marked by increased saliva viscosity and flow rate. Acetylcysteine treatment effectively normalizes saliva viscosity and improves children's performance during chemotherapy.
Area of Science:
- Oncology
- Pediatrics
- Pharmacology
Context:
- Leukemic children undergoing antileukemic chemotherapy often experience salivation management issues.
- Methotrexate chemotherapy, particularly high-dose regimens, can significantly alter saliva properties.
Purpose:
- To assess salivation needs and management options in children receiving antileukemic chemotherapy.
- To evaluate the impact of acetylcysteine on saliva parameters and performance in children undergoing high-dose methotrexate therapy.
Summary:
- A cross-sectional study evaluated saliva flow rate and viscosity in 75 leukemic children on low-dose or high-dose methotrexate, and 25 healthy children.
- High-dose methotrexate therapy was associated with increased saliva viscosity and elevated flow rate, indicating salivation dysfunction.
- A randomized trial showed acetylcysteine normalized saliva viscosity and improved the Lansky Performance Score compared to standard oral management.
Impact:
- Salivation dysfunction is a significant complication of high-dose methotrexate chemotherapy in children.
- Acetylcysteine emerges as a promising agent for managing chemotherapy-induced salivation abnormalities.
- Improved saliva management can enhance children's quality of life and treatment adherence during chemotherapy.
Abstract:
The study aimed to assess the needs and options for salivation management in children treated with antileukemic chemotherapy. In a preliminary cross-sectional study the saliva flow rate and viscosity were evaluated in 75 leukemic children that received chemotherapy with methotrexate in low dose (44 people, 44 episode, group 1), or in high-dose (31 people, 42 episode, group 2), and in 25 healthy children (group 3). Then, 26 children were randomly divided into two groups in the 70 episodes course of high-dosed chemotherapy, and received acetylcysteine (A) or only standard oral management (S) for 1-10 day of treatment. Parameters of salivation and children performance (Lansky et al.) were evaluated. Mann-Whitney U-test was used for analysis. In group 1, 2 and 3 the flow rate (Me [LQ/HQ]) was 0.5 [0.3; 0.8]; 0.9 [0.6; 1.2] and 0.5 [0.3; 0.6] ml/min respectively (p1-3>0.05; p<0.01; p1-2<0.05). Viscosity levels in group 1, 2 and 3 were 2.75 [3.67; 3.67], 10.05 [5.3; 26.0] and 3.9 [2.7; 6.5] unites respectively (p1-3>0.05; p2, 3<0.01; p1, 2<0.01). In group A and S the flow rate was 2.7 [0.5; 4.1] and 0.4 [0.1; 2.2] ml/min (р<0.05); viscosity was 1.5 [1.2; 4.1] and 6.4 [5.3; 8.1] unites (р<0.001), performance Lansky index was 80 [65; 90] and 70 [60; 80] (р<0.01) respectively. Salivation dysfunction complicates the chemotherapy with high-dosed methotrexate in children: it is indicated by high viscosity combined with elevated flow rate. Acetylcysteine normalizes saliva viscosity and improves children's performance.
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