Impact of Remaining Teeth Number on Prognostic Nutritional Index in Patients Undergoing Gastrointestinal Tumor Surgery
Abstract
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| BMI | Body mass index |
| CAR | CRP–albumin ratio |
| ERAS | Enhanced recovery after surgery |
| HBP | Hepato-biliary-pancreatic |
| PNI | Prognostic nutritional index |
| SMI | Skeletal muscle mass index |
References
- Ho, J.W.; Wu, A.H.; Lee, M.W.; Lau, S.Y.; Lam, P.S.; Lau, W.S.; Kwok, S.S.; Kwan, R.Y.; Lam, C.F.; Tam, C.K.; et al. Malnutrition risk predicts surgical outcomes in patients undergoing gastrointestinal operations: Results of a prospective study. Clin. Nutr. 2015, 34, 679–684. [Google Scholar] [CrossRef]
- Karanikki, E.; Frountzas, M.; Lidoriki, I.; Kozadinos, A.; Mylonakis, A.; Tsikrikou, I.; Kyriakidou, M.; Toutouza, O.; Koniaris, E.; Theodoropoulos, G.E.; et al. The predictive role of preoperative malnutrition assessment in postoperative outcomes of patients undergoing surgery due to gastrointestinal cancer: A cross-sectional observational study. J. Clin. Med. 2024, 13, 7479. [Google Scholar] [CrossRef]
- Lobo, D.N.; Gianotti, L.; Adiamah, A.; Barazzoni, R.; Deutz, N.E.P.; Dhatariya, K.; Greenhaff, P.L.; Hiesmayr, M.; Jakobsen, D.H.; Klek, S.; et al. Perioperative nutrition: Recommendations from the ESPEN expert group. Clin. Nutr. 2020, 39, 3211–3227. [Google Scholar] [CrossRef]
- Ljungqvist, O. ERAS--enhanced recovery after surgery: Moving evidence-based perioperative care to practice. JPEN J. Parenter. Enteral. Nutr. 2014, 38, 559–566. [Google Scholar] [CrossRef]
- Lee, J.Y.; Kim, H.I.; Kim, Y.N.; Hong, J.H.; Alshomimi, S.; An, J.Y.; Cheong, J.H.; Hyung, W.J.; Noh, S.H.; Kim, C.B. Clinical significance of the Prognostic Nutritional Index for predicting short- and long-term surgical outcomes after gastrectomy: A retrospective analysis of 7781 gastric cancer patients. Medicine 2016, 95, e3539. [Google Scholar] [CrossRef] [PubMed]
- Yoshida, M.; Suzuki, R.; Kikutani, T. Nutrition and oral status in elderly people. Jpn. Dent. Sci. Rev. 2014, 50, 9–14. [Google Scholar] [CrossRef]
- Nitsuwat, S.; Webster, J.; Sarkar, A.; Cade, J. The association of oral processing factors and nutrient intake in community-dwelling older adults: A systematic review and meta-analysis. Nutrients 2025, 83, e762–e777. [Google Scholar] [CrossRef]
- Lee, S.; Sabbah, W. Association between number of teeth, use of dentures and musculoskeletal frailty among older adults. Geriatr. Gerontol. Int. 2018, 18, 592–598. [Google Scholar] [CrossRef]
- Shiota, C.; Kusama, T.; Takeuchi, K.; Kiuchi, S.; Osaka, K. Oral Hypofunction and Risk of Weight Change among Independent Older Adults. Nutrients 2023, 15, 4370. [Google Scholar] [CrossRef] [PubMed]
- Suzuki, H.; Matsuo, K.; Okamoto, M.; Nakata, H.; Sakamoto, H.; Fujita, M. Preoperative periodontal treatment and its effects on postoperative infection in cardiac valve surgery. Clin. Exp. Dent. Res. 2019, 5, 485–490. [Google Scholar] [CrossRef]
- Sakai, H.; Kurita, H.; Kondo, E.; Tanaka, H.; Shimane, T.; Hashidume, M.; Yamada, S.-I. Dental and oral management in the perioperative period of surgery: A scoping review. Jpn. Dent. Sci. Rev. 2024, 60, 148–153. [Google Scholar] [CrossRef]
- Kawata, N.; Yoshida, M.; Sakai, A.; Tanaka, T.; Inaguma, G.; Suda, K.; Ohuchi, A. Relationship between the number of remaining teeth and postoperative delirium in patients after gastrointestinal surgery. Geriatr. Gerontol. Int. 2025, 25, 90–95. [Google Scholar] [CrossRef] [PubMed]
- Yamanaka-Kohno, R.; Shirakawa, Y.; Inoue-Minakuchi, M.; Yokoi, A.; Muro, M.; Kosaki, H.; Tanabe, S.; Fujiwara, T.; Morita, M. Association of dental occlusal support with the Prognostic Nutritional Index in patients with esophageal cancer who underwent esophagectomy. Esophagus 2021, 18, 49–55. [Google Scholar] [CrossRef]
- Yoshihara, A.; Iwasaki, M.; Ogawa, H.; Miyazaki, H. Serum albumin levels and 10-year tooth loss in a 70-year-old population. J. Oral Rehabil. 2013, 40, 678–685. [Google Scholar] [CrossRef]
- Ukegjini, K.; Vetter, D.; Fehr, R.; Dirr, V.; Gubler, C.; Gutschow, C.A. Functional syndromes and symptom-orientated aftercare after esophagectomy. Langenbeck’s Arch. Surg. 2021, 406, 2249–2261. [Google Scholar] [CrossRef]
- Kiela, P.R.; Ghishan, F.K. Physiology of Intestinal Absorption and Secretion. Best Pract. Res. Clin. Gastroenterol. 2016, 30, 145–159. [Google Scholar] [CrossRef]
- Nadia, J.; Bronlund, J.; Singh, R.P.; Singh, H.; Bornhorst, G.M. Structural breakdown of starch-based foods during gastric digestion and its link to glycemic response: In vivo and in vitro considerations. Compr. Rev. Food Sci. Food Saf. 2021, 20, 2660–2698. [Google Scholar] [CrossRef] [PubMed]
- Gaewkhiew, P.; Sabbah, W.; Bernabé, E. Does tooth loss affect dietary intake and nutritional status? A systematic review of longitudinal studies. J. Dent. 2017, 67, 1–8. [Google Scholar] [CrossRef]
- Layton, D.M.; Morgano, S.M.; Att, W.; Freilich, M.A.; Ferro, K.J.; Kelly, J.A.; Muller, F.; Nguyen, C.T.; Salinas, T.J.; Shah, K.C.; et al. Glossary of prosthodontic terms 2023: Tenth edition. J. Prosthet. Dent. 2023, 130, e7–e126. [Google Scholar]
- Chen, F.I.; Chen, J.H.; Jeng, J.H.; Akifusa, S.; Liu, H.Y. Association and relevant factors between objective masticatory performance and subjective masticatory ability among community-dwelling older adults. J. Dent. Sci. 2025, 20, 69–76. [Google Scholar] [CrossRef]
- Preoteasa, E.; Oncescu Moraru, A.M.; Meghea, D.; Murariu Magureanu, C.; Preoteasa, C.T. Food Bolus Properties in Relation to Dentate and Prosthetic Status. Healthcare 2022, 10, 1596. [Google Scholar] [CrossRef] [PubMed]
- Takehara, S.; Karawekpanyawong, R.; Okubo, H.; Tun, T.Z.; Ramadhani, A.; Chairunisa, F.; Tanaka, A.; Wright, F.A.C.; Ogawa, H. Oral Health Promotion under the 8020 Campaign in Japan-A Systematic Review. Int. J. Environ. Res. Public Health 2023, 20, 1883. [Google Scholar] [CrossRef]
- Hayashi, M.; Morino, K.; Harada, K.; Miyazawa, I.; Ishikawa, M.; Yasuda, T.; Iwakuma, Y.; Yamamoto, K.; Matsumoto, M.; Maegawa, H.; et al. Real-world evidence of the impact of obesity on residual teeth in the Japanese population: A cross-sectional study. PLoS ONE 2022, 17, e0274465. [Google Scholar] [CrossRef]
- Kang, J.; Larvin, H.; Pavitt, S.; Wu, J. Higher prevalence of tooth loss in people with abdominal obesity but normal weight: Findings from the United States and Scottish populations. Clin. Exp. Dent. Res. 2024, 10, e70047. [Google Scholar] [CrossRef] [PubMed]
- Nakamura, M.; Ojima, T.; Nagahata, T.; Kondo, I.; Ninomiya, T.; Yoshita, K.; Arai, Y.; Ohkubo, T.; Murakami, K.; Nishi, N.; et al. Having few remaining teeth is associated with a low nutrient intake and low serum albumin levels in middle-aged and older Japanese individuals: Findings from the NIPPON DATA2010. Environ. Health Prev. Med. 2019, 24, 1. [Google Scholar] [CrossRef] [PubMed]
- Nascimento, G.G.; Leite, F.R.; Conceição, D.A.; Ferrúa, C.P.; Singh, A.; Demarco, F.F. Is there a relationship between obesity and tooth loss and edentulism? A systematic review and meta-analysis. Obes. Rev. 2016, 17, 587–598. [Google Scholar] [CrossRef]
- Rawla, P.; Thandra, K.C.; Sunkara, T. Pancreatic cancer and obesity: Epidemiology, mechanism, and preventive strategies. Clin. J. Gastroenterol. 2019, 12, 285–291. [Google Scholar] [CrossRef]
- Ishikawa, S.; Konta, T.; Susa, S.; Ishizawa, K.; Makino, N.; Ueno, Y.; Okuyama, N.; Iino, M. Association of health behaviors, dietary habits, and oral health with weight gain after 20 years of age in community-dwelling Japanese individuals aged 40 years and older: A cross-sectional study. Clin. Oral Investig. 2023, 27, 7345–7358. [Google Scholar] [CrossRef]
- Xu, R.; Chen, X.D.; Ding, Z. Perioperative nutrition management for gastric cancer. Nutrition 2022, 93, 111492. [Google Scholar] [CrossRef]
| Upper GI | HBP | Lower GI | ||
|---|---|---|---|---|
| Number of participants (n) | 53 | 41 | 84 | |
| Sex (n) | Male | 40 | 29 | 47 |
| Female | 13 | 12 | 37 | |
| Mean age (years) | 75.8 ± 6.0 | 76.3 ± 4.8 | 75.8 ± 6.8 | |
| Number of remaining teeth | 16.2 ± 9.1 | 17.3 ± 7.9 | 14.9 ± 8.9 | |
| SMI (kg/m2) | 6.8 ± 0.8 | 7.3 ± 0.7 | 5.5 ± 1.7 | |
| BMI (kg/m2) | 22.3 ± 3.8 | 23.1 ± 3.6 | 22.8 ± 4.2 | |
| WBC (/μL) | 6.22 ± 2.1 | 5.5 ± 1.5 | 6.8 ± 3.4 | |
| TLC (/μL) | 1371.7 ± 556.1 | 1486.4 ± 688.7 | 1517.2 ± 556.1 | |
| ALB (g/dL) | 3.7 ± 0.6 | 3.6 ± 0.6 | 3.6 ± 0.5 | |
| CRP (mg/dL) | 0.9 ± 2.4 | 0.6 ± 1.1 | 1.3 ± 3.9 | |
| PNI | 37.2 ± 5.6 | 36.0 ± 6.1 | 35.7 ± 5.5 | |
| CAR | 0.3 ± 0.9 | 0.2 ± 0.4 | 0.5 ± 1.8 |
| Control Variable | Variable | Group | Partial Correlation Coefficient | SMI | BMI | PNI | CAR |
|---|---|---|---|---|---|---|---|
| Age | Number of remaining teeth | Upper GI | r | −0.200 | 0.160 | 0.336 | −0.134 |
| p-value | 0.556 | 0.262 | 0.015 * | 0.360 | |||
| HBP | r | −0.456 | −0.519 | 0.023 | 0.029 | ||
| p-value | 0.544 | 0.001 * | 0.886 | 0.879 | |||
| Lower GI | r | 0.601 | −0.007 | 0.058 | −0.090 | ||
| p-value | 0.207 | 0.959 | 0.648 | 0.504 |
| A. Upper GI | |||
| ≥20 Teeth | <20 Teeth | p-value | |
| Number of participants (n) | 28 | 25 | |
| Mean age (years) | 73.6 ± 5.8 | 78.2 ± 5.6 | 0.006 * |
| SMI | 6.7 ± 0.5 | 7.1 ± 1.6 | 0.864 |
| BMI | 22.5 ± 3.1 | 22.0 ± 4.5 | 0509 |
| PNI | 39.0 ± 4.4 | 35.1 ± 6.1 | 0.012 * |
| CAR | 0.2 ± 0.6 | 0.5 ± 1.2 | 0.043 * |
| B. HBP | |||
| ≥20 Teeth | <20 Teeth | p-value | |
| Number of participants (n) | 23 | 18 | |
| Mean age (years) | 76.7 ± 5.1 | 75.9 ± 4.5 | 0.683 |
| SMI | 6.8 ± 0.6 | 7.6 ± 0.7 | 0.400 |
| BMI | 21.9 ± 2.8 | 24.9 ± 3.8 | 0.006 * |
| PNI | 35.2 ± 6.2 | 37.0 ± 6.9 | 0.546 |
| CAR | 0.2 ± 0.4 | 0.2 ± 0.2 | 0.722 |
| C. Lower GI | |||
| ≥20 Teeth | <20 Teeth | p-value | |
| Number of participants (n) | 30 | 54 | |
| Mean age (years) | 74.2 ± 6.2 | 76.7 ± 7.0 | 0.140 |
| SMI | 6.1 ± 0.8 | 5.2 ± 2.0 | 0.527 |
| BMI | 22.8 ± 4.1 | 22.7 ± 4.3 | 0.842 |
| PNI | 36.0 ± 5.9 | 35.5 ± 5.3 | 0.661 |
| CAR | 0.3 ± 0.7 | 0.6 ± 2.1 | 0.492 |
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Yoshida, M.; Igashira, R.; Okamoto, M.; Yokoi, M.; Kobayashi, Y.; Hase-Kawata, N.; Tanaka, T.; Suda, K. Impact of Remaining Teeth Number on Prognostic Nutritional Index in Patients Undergoing Gastrointestinal Tumor Surgery. Nutrients 2026, 18, 514. https://doi.org/10.3390/nu18030514
Yoshida M, Igashira R, Okamoto M, Yokoi M, Kobayashi Y, Hase-Kawata N, Tanaka T, Suda K. Impact of Remaining Teeth Number on Prognostic Nutritional Index in Patients Undergoing Gastrointestinal Tumor Surgery. Nutrients. 2026; 18(3):514. https://doi.org/10.3390/nu18030514
Chicago/Turabian StyleYoshida, Mitsuyoshi, Ryoko Igashira, Mieko Okamoto, Miyuki Yokoi, Yoshikazu Kobayashi, Nanako Hase-Kawata, Tsuyoshi Tanaka, and Koichi Suda. 2026. "Impact of Remaining Teeth Number on Prognostic Nutritional Index in Patients Undergoing Gastrointestinal Tumor Surgery" Nutrients 18, no. 3: 514. https://doi.org/10.3390/nu18030514
APA StyleYoshida, M., Igashira, R., Okamoto, M., Yokoi, M., Kobayashi, Y., Hase-Kawata, N., Tanaka, T., & Suda, K. (2026). Impact of Remaining Teeth Number on Prognostic Nutritional Index in Patients Undergoing Gastrointestinal Tumor Surgery. Nutrients, 18(3), 514. https://doi.org/10.3390/nu18030514

