Effect of Xylitol and Maltitol Chewing Gums on Plaque Reduction and Salivary pH Modulation: A Retrospective Study in Pediatric Patients
Abstract
1. Introduction
2. Materials and Methods
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- Xylitol gum group (n = 50): Children who had chewed a sugar-free gum containing xylitol as the primary sweetener.
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- Maltitol gum group (n = 50): Children who had chewed a sugar-free gum containing maltitol as the primary sweetener.
- Participants refrained from eating or drinking for at least 30 min before sample collection.
- Unstimulated saliva was collected in a sterile container by having the child passively drool for 30 s.
- A pH strip was immersed in the saliva sample for 10 s, and the pH value was recorded.
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- Intragroup comparisons (pre- and post-intervention for each group) were performed using the Wilcoxon signed-rank test, given the non-parametric nature of the data.
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- Intergroup comparisons (between xylitol and maltitol groups) were conducted using the Mann–Whitney U test.
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- A p-value < 0.05 was considered statistically significant.
3. Results
3.1. PCR Index
3.1.1. Xylitol Group
3.1.2. Maltitol Group
3.2. pH
3.2.1. Xylitol Group
3.2.2. Maltitol Group
3.3. Plaque Assesment
3.3.1. PCR Index
3.3.2. pH
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Valm, A.M. The Structure of Dental Plaque Microbial Communities in the Transition from Health to Dental Caries and Periodontal Disease. J. Mol. Biol. 2019, 431, 2957–2969. [Google Scholar] [CrossRef]
- Marsh, P.D. Dental plaque: Biological significance of a biofilm and community life-style. J. Clin. Periodontol. 2005, 32 (Suppl. 6), 7–15. [Google Scholar] [CrossRef]
- Gränicher, K.A.; Karygianni, L.; Attin, T.; Thurnheer, T. Low Concentrations of Chlorhexidine Inhibit the Formation and Structural Integrity of Enzyme-Treated Multispecies Oral Biofilms. Front. Microbiol. 2021, 12, 741863. [Google Scholar] [CrossRef] [PubMed]
- Rosan, B.; Lamont, R.J. Dental plaque formation. Microbes Infect. 2000, 2, 1599–1607. [Google Scholar] [CrossRef] [PubMed]
- Soheili, F.; Delfan, N.; Masoudifar, N.; Ebrahimni, S.; Moshiri, B.; Glogauer, M.; Ghafar-Zadeh, E. Toward Digital Periodontal Health: Recent Advances and Future Perspectives. Bioengineering 2024, 11, 937. [Google Scholar] [CrossRef]
- Sangavi, R.; Malligarjunan, N.; Satish, L.; Raja, V.; Pandian, S.K.; Gowrishankar, S. Anticariogenic activity of marine brown algae Padina boergesenii and its active components towards Streptococcus mutans. Front. Cell Infect. Microbiol. 2024, 14, 1458825. [Google Scholar] [CrossRef] [PubMed]
- Lynge Pedersen, A.M.; Belstrøm, D. The role of natural salivary defences in maintaining a healthy oral microbiota. J. Dent. 2019, 80 (Suppl. 1), S3–S12. [Google Scholar] [CrossRef]
- Checchi, V.; Montagno Cappuccinello, C.; Montevecchi, M.; Checchi, L. The use of a plaque disclosing agent in the dental hygiene practice: A literature review. Dent. Cadmos 2020, 88, 361–376. [Google Scholar]
- Hanno, A.G.; Alamoudi, N.M.; Almushayt, A.S.; Masoud, M.I.; Sabbagh, H.J.; Farsi, N.M. Effect of xylitol on dental caries and salivary Streptococcus mutans levels among a group of mother-child pairs. J. Clin. Pediatr. Dent. 2011, 36, 25–30. [Google Scholar] [CrossRef]
- Jain, R.L.; Tandon, S.; Rai, T.S.; Mathur, R.; Soni, K.K.; Rawat, M. A Comparative Evaluation of Xylitol Chewing Gum and a Combination of IgY + Xylitol Chewable Tablet on Salivary Streptococcus mutans Count in Children: A Double-blind Randomized Controlled Trial. Int. J. Clin. Pediatr. Dent. 2022, 15 (Suppl. 2), S212–S220. [Google Scholar]
- Keijser, B.J.F.; van den Broek, T.J.; Slot, D.E.; van Twillert, L.; Kool, J.; Thabuis, C.; Ossendrijver, M.; van der Weijden, F.A.; Montijn, R.C. The Impact of Maltitol-Sweetened Chewing Gum on the Dental Plaque Biofilm Microbiota Composition. Front. Microbiol. 2018, 9, 381. [Google Scholar] [CrossRef] [PubMed]
- Keukenmeester, R.S.; Slot, D.E.; Putt, M.S.; Van der Weijden, G.A. The effect of sugar-free chewing gum on plaque and clinical parameters of gingival inflammation: A systematic review. Int. J. Dent. Hyg. 2013, 11, 2–14. [Google Scholar] [CrossRef] [PubMed]
- Hanham, A.; Addy, M. The effect of chewing sugar-free gum on plaque regrowth at smooth and occlusal surfaces. J. Clin. Periodontol. 2001, 28, 255–257. [Google Scholar] [CrossRef] [PubMed]
- Dodds, M.W. The oral health benefits of chewing gum. J. Ir. Dent. Assoc. 2012, 58, 253–261. [Google Scholar]
- Nasseripour, M.; Newton, J.T.; Warburton, F.; Awojobi, O.; Di Giorgio, S.; Gallagher, J.E.; Banerjee, A. A systematic review and meta-analysis of the role of sugar-free chewing gum on Streptococcus mutans. BMC Oral. Health. 2021, 21, 217. [Google Scholar] [CrossRef]
- Suyama, E.; Tamura, T.; Ozawa, T.; Suzuki, A.; Iijima, Y.; Saito, T. Remineralization and acid resistance of enamel lesions after chewing gum containing fluoride extracted from green tea. Aust. Dent. J. 2011, 56, 394–400. [Google Scholar] [CrossRef]
- Maguire, A.; Rugg-Gunn, A.J.; Wright, W.G. Adaptation of dental plaque to metabolise maltitol compared with other sweeteners. J. Dent. 2000, 28, 51–59, Erratum in J. Dent. 2000, 28, 537. [Google Scholar] [CrossRef]
- Thabuis, C.; Cheng, C.Y.; Wang, X.; Pochat, M.; Han, A.; Miller, L.; Wils, D.; Guerin-Deremaux, L. Effects of maltitol and xylitol chewing-gums on parameters involved in dental caries development. Eur. J. Paediatr. Dent. 2013, 14, 303–308. [Google Scholar]
- Haghgoo, R.; Afshari, E.; Ghanaat, T.; Aghazadeh, S. Comparing the efficacy of xylitol-containing and conventional chewing gums in reducing salivary counts of Streptococcus mutans: An in vivo study. J. Int. Soc. Prev. Community Dent. 2015, 5 (Suppl. 2), S112–S117. [Google Scholar]
- Aluckal, E.; Ankola, A.V. Effectiveness of xylitol and polyol chewing gum on salivary streptococcus mutans in children: A randomized controlled trial. Indian. J. Dent. Res. 2018, 29, 445–449. [Google Scholar] [CrossRef]
- Wu, Y.F.; Salamanca, E.; Chen, I.W.; Su, J.N.; Chen, Y.C.; Wang, S.Y.; Sun, Y.S.; Teng, N.C.; Chang, W.J. Xylitol-Containing Chewing Gum Reduces Cariogenic and Periodontopathic Bacteria in Dental Plaque-Microbiome Investigation. Front. Nutr. 2022, 9, 882636. [Google Scholar] [CrossRef] [PubMed]
- Mickenautsch, S.; Yengopal, V. Effect of xylitol versus sorbitol: A quantitative systematic review of clinical trials. Int. Dent. J. 2012, 62, 175–188. [Google Scholar] [CrossRef] [PubMed]
- Alanzi, A.; Soderling, E.; Varghese, A.; Honkala, E. Xylitol Chewing Gums on the Market: Do They Prevent Caries? Oral. Health Prev. Dent. 2016, 14, 459–466. [Google Scholar] [PubMed]
PI_PRE | PI_POST | |
---|---|---|
Min | 29% | 12% |
1st Qu | 51% | 36% |
Median | 62% | 44% |
Mean | 61% | 43% |
3rd Qu | 72% | 52% |
Max | 89% | 70% |
PI_PRE | PI_POST | |
---|---|---|
Min | 26% | 19% |
1st Qu | 61% | 38% |
Median | 68% | 47% |
Mean | 68% | 46% |
3rd Qu | 80% | 56% |
Max | 99% | 70% |
PI_PRE | PI_POST | |
---|---|---|
Min | 6 | 7 |
1st Qu | 6 | 8 |
Median | 7 | 8 |
Mean | 7 | 8 |
3rd Qu | 7 | 8 |
Max | 8 | 10 |
PH_PRE | PH_POST | |
---|---|---|
Min | 5 | 7 |
1st Qu | 7 | 8 |
Median | 7 | 8 |
Mean | 7 | 8 |
3rd Qu | 8 | 9 |
Max | 8 | 10 |
ANTI-PLAQUE GUM WITH XYLITOL | NON-ANTI-PLAQUE GUM WITH MALTITOL | |
---|---|---|
Mean | −0.178 | −0.214 |
Sd | 0.0992 | 0.113 |
Min | −0.481 | −0.523 |
Max | 0 | −0.0084 |
Median | 0.157 | −0.201 |
q25 | −0.217 | −0.283 |
q75 | −0.12 | −0.134 |
Skewness | −0.987 | −0.497 |
Variance | 0.00983 | 0.0128 |
ANTI-PLAQUE GUM WITH XYLITOL | ANTI-PLAQUE GUM WITH MALTITOL | |
---|---|---|
Mean | 1.14 | 1.28 |
Sd | 0.808 | 0.809 |
Min | 0 | 0 |
Max | 3 | 2 |
Median | 1 | 1.5 |
q25 | 1 | 1 |
q75 | 2 | 2 |
Skewness | 0.205 | −0.53 |
Variance | 0.653 | 0.655 |
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Ludovichetti, F.S.; Stellini, E.; Rodella, C.; Sambugaro, M.; Gaja, P.F.; Rizzato, A.; Mazzoleni, S. Effect of Xylitol and Maltitol Chewing Gums on Plaque Reduction and Salivary pH Modulation: A Retrospective Study in Pediatric Patients. Dent. J. 2025, 13, 233. https://doi.org/10.3390/dj13060233
Ludovichetti FS, Stellini E, Rodella C, Sambugaro M, Gaja PF, Rizzato A, Mazzoleni S. Effect of Xylitol and Maltitol Chewing Gums on Plaque Reduction and Salivary pH Modulation: A Retrospective Study in Pediatric Patients. Dentistry Journal. 2025; 13(6):233. https://doi.org/10.3390/dj13060233
Chicago/Turabian StyleLudovichetti, Francesco Saverio, Edoardo Stellini, Camilla Rodella, Marco Sambugaro, Pier Francesco Gaja, Alessia Rizzato, and Sergio Mazzoleni. 2025. "Effect of Xylitol and Maltitol Chewing Gums on Plaque Reduction and Salivary pH Modulation: A Retrospective Study in Pediatric Patients" Dentistry Journal 13, no. 6: 233. https://doi.org/10.3390/dj13060233
APA StyleLudovichetti, F. S., Stellini, E., Rodella, C., Sambugaro, M., Gaja, P. F., Rizzato, A., & Mazzoleni, S. (2025). Effect of Xylitol and Maltitol Chewing Gums on Plaque Reduction and Salivary pH Modulation: A Retrospective Study in Pediatric Patients. Dentistry Journal, 13(6), 233. https://doi.org/10.3390/dj13060233