Short- and Long-Term Outcomes of Laparoscopic Segmental Left Colectomy for Splenic Flexure Colon Cancer: A Multicenter Propensity Score-Matched Analysis from the Catholic Colorectal Group
Abstract
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Horsey, M.L.; Sparks, A.D.; Lai, D.; Herur-Raman, A.; Ng, M.; Obias, V. Surgical management of splenic flexure colon cancer: A retrospective propensity-matched study comparing open and minimally invasive approaches using the national cancer database. Int. J. Color. Dis. 2021, 36, 2739–2747. [Google Scholar] [CrossRef] [PubMed]
- Wang, X.; Zheng, Z.; Chen, M.; Lu, X.; Huang, S.; Huang, Y.; Chi, P. Subtotal colectomy, extended right hemicolectomy, left hemicolectomy, or splenic flexure colectomy for splenic flexure tumors: A network meta-analysis. Int. J. Color. Dis. 2021, 36, 311–322. [Google Scholar] [CrossRef] [PubMed]
- ELezoehe, F.F.; AMPaganini, M.; Guerrieri, A.; De Sanctis, S.; Minervini, R. Campagnacei: Laparosc. Vs Open Hemicolectomy Colon. Cancer Long-Term. Outcome Surg. Endosc. 2002, 16, 596–602. [Google Scholar]
- Wu, J.; Li, B.; Tu, S.; Zheng, B.; Chen, B. Comparison of laparoscopic and open colectomy for splenic flexure colon cancer: A systematic review and meta-analysis. Int. J. Color. Dis. 2022, 37, 757–767. [Google Scholar] [CrossRef] [PubMed]
- de’Angelis, N.; Hain, E.; Disabato, M.; Cordun, C.; Carra, M.C.; Azoulay, D.; Brunetti, F. Laparoscopic extended right colectomy versus laparoscopic left colectomy for carcinoma of the splenic flexure: A matched case-control study. Int. J. Color. Dis. 2016, 31, 623–630. [Google Scholar] [CrossRef] [PubMed]
- De’aNgelis, N.; Martínez-Pérez, A.; Winter, D.C.; Landi, F.; Vitali, G.C.; Le Roy, B.; Coccolini, F.; Brunetti, F.; Celentano, V.; Di Saverio, S.; et al. Extended right colectomy, left colectomy, or segmental left colectomy for splenic flexure carcinomas: A European multicenter propensity score matching analysis. Surg. Endosc. 2020, 35, 661–672. [Google Scholar] [CrossRef] [PubMed]
- Thungathurthi, K.; Antoniou, E.; Arachchi, A.; Tay, Y.; Nguyen, T.C.; Lim, J.; Chouhan, H.; Narasimhan, V.; Teoh, W. Surgical management of splenic flexure cancer: Is there an optimal technique? A bi-national registry analysis. ANZ J. Surg. 2023, 93, 1854–1860. [Google Scholar] [CrossRef] [PubMed]
- Bademci, R.; Bollo, J.; Sanchez, C.M.; Hernadez, P.; Targarona, E.M. Is Segmental Colon Resection an Alternative Treatment for Splenic Flexure Cancer? J. Laparoendosc. Adv. Surg. Tech. A 2019, 29, 621–626. [Google Scholar] [CrossRef] [PubMed]
- Chenevas-Paule, Q.; Trilling, B.; Sage, P.Y.; Girard, E.; Faucheron, J.L. Laparoscopic segmental left colectomy for splenic flexure carcinoma: A single institution experience. Tech. Coloproctol. 2020, 24, 41–48. [Google Scholar] [CrossRef] [PubMed]
- Rega, D.; Pace, U.; Scala, D.; Chiodini, P.; Granata, V.; Bucci, A.F.; Pecori, B.; Delrio, P. Treatment of splenic flexure colon cancer: A comparison of three different surgical procedures: Experience of a high volume cancer center. Sci. Rep. 2019, 9, 10953. [Google Scholar] [CrossRef]
- Rouffet, F.; Hay, J.M.; Vacher, B.; Fingerhut, A.; Elhadad, A.; Flamant, Y.; Mathon, C.; Gainant, A. Curative resection for left colonic carcinoma: Hemicolectomy vs. segmental colectomy. A prospective, controlled, multicenter trial. French Association for Surgical Research. Dis. Colon Rectum 1994, 37, 651–659. [Google Scholar] [CrossRef] [PubMed]
- Imperial, R.; Ahmed, Z.; Toor, O.M.; Erdoğan, C.; Khaliq, A.; Case, P.; Case, J.; Kennedy, K.; Cummings, L.S.; Melton, N.; et al. Comparative proteogenomic analysis of right-sided colon cancer, left-sided colon cancer and rectal cancer reveals distinct mutational profiles. Mol. Cancer 2018, 17, 177. [Google Scholar] [CrossRef]
- Kim, M.J.; Kim, J.H.; Lee, Y.S.; Kye, B.H.; Cho, H.M.; Kim, H.J.; Kang, W.K. Short- and long-term outcomes of laparoscopic segmental left colectomy for splenic flexure colon cancer: Comparison with propensity score matching. ASTR 2021, 101, 274–280. [Google Scholar] [CrossRef]
- Nakagoe, T.; Sawa, T.; Tsuji, T.; Jibiki, M.; Nanashima, A.; Yamaguchi, H.; Yasutake, T.; Ayabe, H.; Ishikawa, H. Carcinoma of the splenic flexure: Multivariate analysis of predictive factors for clinicopathological characteristics outcome after surgery. J. Gastroenterol. 2000, 35, 528–535. [Google Scholar] [CrossRef] [PubMed]
- Austin, P.C. Optimal caliper widths for propensity-score matching when estimating differences in means and differences in proportions in observational studies. Pharm. Stat. 2011, 10, 150–161. [Google Scholar] [CrossRef] [PubMed]
- Sakamoto, T.; Mukai, T.; Noguchi, T.; Matsui, S.; Yamaguchi, T.; Akiyoshi, T.; Kawachi, H.; Fukunaga, Y. Patterns of lymph node metastasis and long-term outcomes of splenic flexure colon cancer: A descriptive study from a Japanese high-volume center. Surg. Today 2025, 55, 1079–1087. [Google Scholar] [CrossRef] [PubMed]
- Ueda, K.; Daito, K.; Ushijima, H.; Yane, Y.; Yoshioka, Y.; Tokoro, T.; Iwamoto, M.; Wada, T.; Makutani, Y.; Kawamura, J. Laparoscopic complete mesocolic excision with central vascular ligation for splenic flexure colon cancer: Short- and long-term outcomes. Surg. Endosc. 2022, 36, 2661–2670. [Google Scholar] [CrossRef] [PubMed]
- Seo, S.H.B.; Carson, D.A.; Bhat, S.; Varghese, C.; Wells, C.I.; Bissett, I.P.; O’Grady, G. Prolonged postoperative ileus following right- versus left-sided colectomy: A systematic review and meta-analysis. Color. Dis. 2021, 23, 3113–3122. [Google Scholar] [CrossRef] [PubMed]




| Before Propensity Score Matching | After Propensity Score Matching | ||||||
|---|---|---|---|---|---|---|---|
| AR | LC | p Value | AR | LC | p Value | Standardized Difference | |
| (N = 1889) | (N = 271) | (N = 542) | (N = 271) | ||||
| Gender | 0.538 | 0.126 | 0.121 | ||||
| Male | 1116 (59.1%) | 166 (61.3%) | 300 (55.4%) | 166 (61.3%) | |||
| Female | 773 (40.9%) | 105 (38.7%) | 242 (44.6%) | 105 (38.7%) | |||
| Age (years) | 64.6 ± 11.7 | 62.3 ± 13.4 | 0.008 | 62.8 ± 12.2 | 62.3 ± 13.4 | 0.595 | 0.037 |
| Body mass index (kg/m2) | 24.0 ± 3.4 | 23.5 ± 3.3 | 0.008 | 23.8 ± 3.3 | 23.5 ± 3.3 | 0.118 | 0.117 |
| ASA score | 0.111 | 0.733 | 0.035 | ||||
| 1–2 | 1732 (91.7%) | 240 (88.6%) | 474 (87.5%) | 240 (88.6%) | |||
| 3 | 157 (8.3%) | 31 (11.4%) | 68 (12.5%) | 31 (11.4%) | |||
| CEA (ng/mL) | 7.7 ± 30.5 | 7.2 ± 16.8 | 0.730 | 9.8 ± 49.2 | 7.2 ± 16.8 | 0.280 | 0.151 |
| CEA > 5 ng/mL | 529 (28.0%) | 72 (26.6%) | 0.674 | 141 (26.0%) | 72 (26.6%) | 0.933 | 0.013 |
| Previous abdominal surgery | 403 (21.3%) | 62 (22.9%) | 0.618 | 117 (21.6%) | 62 (22.9%) | 0.742 | 0.031 |
| Stent insertion | 197 (10.4%) | 67 (24.7%) | <0.001 | 113 (20.8%) | 67 (24.7%) | 0.244 | 0.09 |
| En bloc resection | 140 (7.4%) | 16 (5.9%) | 0.441 | 35 (6.5%) | 16 (5.9%) | 0.878 | 0.023 |
| R0 resection | 1678 (88.8%) | 237 (87.5%) | 0.572 | 457 (84.3%) | 237 (87.5%) | 0.277 | 0.095 |
| Tumor size (cm) | 4.2 ± 2.2 | 4.7 ± 2.5 | 0.003 | 4.4 ± 2.3 | 4.7 ± 2.5 | 0.075 | 0.125 |
| T stage | 0.001 | 0.386 | |||||
| 1–2 | 532 (28.1%) | 51 (18.8%) | 111 (20.4%) | 51 (18.8%) | 0.042 | ||
| 3 | 1125 (59.6%) | 170 (62.7%) | 351 (64.8%) | 170 (62.7%) | 0.042 | ||
| 4 | 232 (12.3%) | 50 (18.5%) | 80 (14.8%) | 50 (18.5%) | 0.099 | ||
| N stage | 0.055 | 0.953 | |||||
| 0 | 1114 (59.0%) | 145 (53.5%) | 293 (54.1%) | 145 (53.5%) | 0.011 | ||
| 1 | 489 (25.9%) | 70 (25.8%) | 142 (26.2%) | 70 (25.8%) | 0.008 | ||
| 2 | 286 (15.1%) | 56 (20.7%) | 107 (19.7%) | 56 (20.7%) | 0.023 | ||
| TNM stage | 0.036 | 1.000 | |||||
| 1 | 442 (23.4%) | 45 (16.6%) | 95 (17.5%) | 45 (16.6%) | 0.025 | ||
| 2 | 672 (35.6%) | 100 (36.9%) | 198 (36.5%) | 100 (36.9%) | 0.008 | ||
| 3 | 775 (41.0%) | 126 (46.5%) | 249 (46.0%) | 126 (46.5%) | 0.011 | ||
| Lymphatic invasion | 736 (39.0%) | 112 (41.3%) | 0.497 | 223 (41.1%) | 112 (41.3%) | 1.000 | 0.004 |
| Vascular invasion | 239 (12.7%) | 42 (15.5%) | 0.228 | 91 (16.8%) | 42 (15.5%) | 0.712 | 0.035 |
| Perineural invasion | 364 (19.3%) | 73 (26.9%) | 0.004 | 149 (27.5%) | 73 (26.9%) | 0.933 | 0.012 |
| Tumor differentiation | <0.001 | 0.662 | 0.043 | ||||
| Well or moderately differentiated | 1835 (97.1%) | 250 (92.3%) | 506 (93.4%) | 250 (92.3%) | |||
| Poorly or undifferentiated | 54 (2.9%) | 21 (7.7%) | 36 (6.6%) | 21 (7.7%) | |||
| Adjuvant chemotherapy | 1034 (54.7%) | 178 (65.7%) | 0.001 | 366 (67.5%) | 178 (65.7%) | 0.654 | 0.039 |
| Before Propensity Score Matching | After Propensity Score Matching | ||||||
|---|---|---|---|---|---|---|---|
| AR | LC | p Value | AR | LC | p Value | Standardized Difference | |
| (N = 1889) | (N = 271) | (N = 542) | (N = 271) | ||||
| Operation time (minutes) | 175.9 ± 70.8 | 201.8 ± 73.3 | <0.001 | 188.0 ± 80.2 | 201.8 ± 73.3 | 0.017 | 0.18 |
| Diversion | 21 (1.1%) | 2 (0.7%) | 0.807 | 3 (0.6%) | 2 (0.7%) | 1.000 | 0.023 |
| Anastomosis | <0.001 | <0.001 | 0.580 | ||||
| Stapled | 1872 (99.1%) | 213 (78.6%) | 525 (96.1%) | 213 (78.6%) | |||
| Hand-sewn | 17 (0.9%) | 58 (21.4%) | 17 (3.1%) | 58 (21.4%) | |||
| Conversion | 112 (5.9%) | 32 (11.8%) | <0.001 | 42 (7.7%) | 32 (11.8%) | 0.077 | 0.137 |
| Blood loss (mL) | 77.1 ± 112.7 | 85.3 ± 99.3 | 0.215 | 74.4 ± 116.6 | 85.3 ± 99.3 | 0.167 | 0.1 |
| Transfusion | 32 (1.7%) | 9 (3.3%) | 0.110 | 14 (2.6%) | 9 (3.3%) | 0.708 | 0.044 |
| Intraoperative complication | 67 (3.5%) | 12 (4.4%) | 0.583 | 23 (4.2%) | 12 (4.4%) | 1.000 | 0.009 |
| Before Propensity Score Matching | After Propensity Score Matching | ||||||
|---|---|---|---|---|---|---|---|
| AR | LC | p Value | AR | LC | p Value | Standardized Difference | |
| (N = 1889) | (N = 271) | (N = 542) | (N = 271) | ||||
| Harvested lymph nodes | 21.9 ± 11.0 | 21.5 ± 9.9 | 0.510 | 21.2 ± 9.6 | 21.5 ± 9.9 | 0.697 | 0.029 |
| Distal resection margin (cm) | 8.8 ± 4.1 | 12.1 ± 6.0 | <0.001 | 11.2 ± 4.9 | 12.1 ± 6.0 | 0.042 | 0.157 |
| Proximal resection margin (cm) | 8.9 ± 4.2 | 11.8 ± 6.2 | <0.001 | 10.5 ± 5.2 | 11.8 ± 6.2 | 0.002 | 0.237 |
| Morbidity (within 30 days) | 269 (14.2%) | 67 (24.7%) | <0.001 | 111 (20.5%) | 67 (24.7%) | 0.197 | 0.102 |
| Mortality (within 30 days) | 7 (0.4%) | 2 (0.7%) | 0.708 | 0 (0.0%) | 2 (0.7%) | 0.211 | 0.122 |
| CDC | <0.001 | 0.322 | |||||
| I | 124 (6.6%) | 19 (7.0%) | 37 (6.8%) | 19 (7.0%) | 0.007 | ||
| II | 93 (4.9%) | 35 (12.9%) | 57 (10.5%) | 35 (12.9%) | 0.075 | ||
| III | 45 (2.4%) | 11 (4.0%) | 17 (3.1%) | 11 (4.0%) | 0.026 | ||
| IV | 3 (0.2%) | 0 (0.0%) | 0 (0.0%) | 0 (0.0%) | 0.045 | ||
| V | 3 (0.2%) | 2 (0.7%) | 0 (0.0%) | 2 (0.7%) | 0.122 | ||
| Time to flatus (days) | 2.1 ± 0.9 | 2.3 ± 1.0 | 0.002 | 2.2 ± 0.9 | 2.3 ± 1.0 | 0.077 | 0.135 |
| Time to diet (days) | 2.4 ± 1.6 | 2.5 ± 1.7 | 0.556 | 2.2 ± 1.4 | 2.5 ± 1.7 | 0.022 | 0.177 |
| Hospital stay (days) | 7.4 ± 3.7 | 9.8 ± 13.1 | 0.002 | 8.1 ± 4.7 | 9.8 ± 13.1 | 0.036 | 0.176 |
| Before Propensity Score Matching | After Propensity Score Matching | ||||||
|---|---|---|---|---|---|---|---|
| AR | LC | p Value | AR | LC | p Value | Standardized Difference | |
| (N = 1889) | (N = 271) | (N = 542) | (N = 271) | ||||
| Anastomotic leak | 16 (0.8%) | 1 (0.4%) | 0.642 | 2 (0.4%) | 1 (0.4%) | 1.000 | 0.000 |
| Ileus | 75 (4.0%) | 38 (14.0%) | <0.001 | 46 (8.5%) | 38 (14.0%) | 0.020 | 0.176 |
| Incisional SSI * | 30 (1.6%) | 10 (3.7%) | 0.031 | 19 (3.5%) | 10 (3.7%) | 1.000 | 0.01 |
| Organ space SSI * | 9 (0.5%) | 4 (1.5%) | 0.117 | 6 (1.1%) | 4 (1.5%) | 0.910 | 0.033 |
| Major bleeding | 5 (0.3%) | 0 (0.0%) | 0.863 | 0 (0.0%) | 0 (0.0%) | 1.000 | 0.000 |
| Minor bleeding | 23 (1.2%) | 2 (0.7%) | 0.699 | 4 (0.7%) | 2 (0.7%) | 1.000 | 0.000 |
| Anastomotic bleeding | 10 (0.5%) | 1 (0.4%) | 1.000 | 7 (1.3%) | 1 (0.4%) | 0.379 | 0.102 |
| Other complications | 106 (5.6%) | 17 (6.3%) | 0.765 | 35 (6.5%) | 17 (6.3%) | 1.000 | 0.008 |
| Before Propensity Score Matching | After Propensity Score Matching | |||||
|---|---|---|---|---|---|---|
| AR | LC | p Value | AR | LC | p Value | |
| (N = 1889) | (N = 271) | (N = 542) | (N = 271) | |||
| Recurrence | 273 (14.5%) | 42 (15.5%) | 0.716 | 87 (16.1%) | 42 (15.5%) | 0.919 |
| Type of recurrence | 0.778 | 0.598 | ||||
| Local | 20 (1.1%) | 3 (1.1%) | 10 (1.8%) | 3 (1.1%) | ||
| Systemic | 238 (12.6%) | 38 (14.0%) | 71 (13.1%) | 38 (14.0%) | ||
| Local and systemic | 16 (0.8%) | 1 (0.4%) | 6 (1.1%) | 1 (0.4%) | ||
| Expire | 201 (10.6%) | 40 (14.8%) | 0.056 | 69 (12.7%) | 40 (14.8%) | 0.489 |
| Variable | Univariate HR (95% CI) | p-Value | Multivariate HR (95% CI) | p-Value |
|---|---|---|---|---|
| (A) | ||||
| Operative procedure (AR or LC) | 0.992 (0.686–1.434) | 0.966 | - | - |
| CEA > 5 ng/mL | 2.484 (1.754–3.516) | <0.001 | 2.074 (1.446–2.973) | <0.001 |
| Anastomosis | 0.554 (0.259–1.187) | 0.129 | 0.712 (0.329–1.541) | 0.388 |
| N stage | 1.674 (1.366–2.052) | <0.001 | 1.324 (1.011–1.733) | 0.041 |
| Lymphatic invasion | 2.127 (1.499–3.018) | <0.001 | 1.233 (0.785–1.936) | 0.363 |
| Vascular invasion | 2.100 (1.424–3.095) | <0.001 | 1.374 (0.898–2.102) | 0.143 |
| Perineural invasion | 2.308 (1.631–3.268) | <0.001 | 1.587 (1.066–2.365) | 0.023 |
| Harvested lymph nodes > 12 | 1.442 (0.284–2.471) | 0.182 | 0.934 (0.532–1.640) | 0.813 |
| Tumor grade | 2.026 (1.183–3.472) | 0.010 | 1.998 (1.151–3.468) | 0.014 |
| Adjuvant chemotherapy | 1.418 (0.947–2.123) | 0.090 | 0.813 (0.518–1.277) | 0.369 |
| (B) | ||||
| Operative procedure (AR or LC) | 1.154 (0.782–1.704) | 0.471 | - | - |
| BMI | 0.929 (0.875–0.986) | 0.015 | 0.938 (0.885–0.994) | 0.031 |
| ASA | 2.244 (1.416–3.556) | 0.001 | 2.770 (1.707–4.496) | <0.001 |
| CEA > 5 ng/mL | 1.476 (0.987–2.206) | 0.058 | 1.110 (0.732–1.681) | 0.624 |
| R0 resection | 0.433 (0.211–0.889) | 0.023 | 0.310 (0.145–0.661) | 0.002 |
| T stage | 0.799 (0.621–1.028) | 0.081 | 0.910 (0.693–1.195) | 0.499 |
| N stage | 1.555 (1.244–1.944) | 0.000 | 1.154 (0.866–1.540) | 0.329 |
| Lymphatic invasion | 2.472 (1.678–3.642) | <0.001 | 1.665 (1.021–2.715) | 0.041 |
| Vascular invasion | 1.574 (1.007–2.460) | 0.046 | 1.032 (0.629–1.692) | 0.902 |
| Perineural invasion | 1.926 (1.313–2.824) | 0.001 | 1.535 (0.998–2.362) | 0.051 |
| Tumor grade | 2.059 (1.130–3.752) | 0.018 | 2.135 (1.153–3.952) | 0.016 |
| Morbidity | 1.531 (1.010–2.322) | 0.045 | 1.708 (1.122–2.601) | 0.013 |
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Kim, M.J.; Kim, J.H.; Lee, K.-y.; Moon, J.Y.; Kim, I.K. Short- and Long-Term Outcomes of Laparoscopic Segmental Left Colectomy for Splenic Flexure Colon Cancer: A Multicenter Propensity Score-Matched Analysis from the Catholic Colorectal Group. J. Clin. Med. 2026, 15, 4457. https://doi.org/10.3390/jcm15124457
Kim MJ, Kim JH, Lee K-y, Moon JY, Kim IK. Short- and Long-Term Outcomes of Laparoscopic Segmental Left Colectomy for Splenic Flexure Colon Cancer: A Multicenter Propensity Score-Matched Analysis from the Catholic Colorectal Group. Journal of Clinical Medicine. 2026; 15(12):4457. https://doi.org/10.3390/jcm15124457
Chicago/Turabian StyleKim, Moon Jin, Ji Hoon Kim, Kil-yong Lee, Ji Yeon Moon, and In Kyeong Kim. 2026. "Short- and Long-Term Outcomes of Laparoscopic Segmental Left Colectomy for Splenic Flexure Colon Cancer: A Multicenter Propensity Score-Matched Analysis from the Catholic Colorectal Group" Journal of Clinical Medicine 15, no. 12: 4457. https://doi.org/10.3390/jcm15124457
APA StyleKim, M. J., Kim, J. H., Lee, K.-y., Moon, J. Y., & Kim, I. K. (2026). Short- and Long-Term Outcomes of Laparoscopic Segmental Left Colectomy for Splenic Flexure Colon Cancer: A Multicenter Propensity Score-Matched Analysis from the Catholic Colorectal Group. Journal of Clinical Medicine, 15(12), 4457. https://doi.org/10.3390/jcm15124457

