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Risk of Bowel Obstruction in Patients Undergoing Neoadjuvant Chemotherapy for High-risk Colon Cancer

Title: Risk of Bowel Obstruction in Patients Undergoing Neoadjuvant Chemotherapy for High-risk Colon Cancer
Authors: Group, F.C.; Glasbey, J.; Beggs, A.; Glimelius, B.; Gray, R.; Handley, K.; Laurberg, S.; Magill, L.; Murakami, K.; Palmer, A.; Quirke, P.; Seligman, J.; Seymour, M.; Sinha, Y.; West, N.; Morton, D.; Crosby, T.; Olliff, J.; Peto, R.; Brown, G.; Ferry, D.; Ismail, T.; Oliver, A.; Scott, N.; Swift, I.; Warren, B.; Northover, J.; Parmar, M.; Slevin, M.; Wilcockson, A.; Gray, Z.; Lancaster, D.; Brown, J.; Adie, L.; Kennedy, G.; Eld, M.; Holt, G.; Yilmaz, M.; Spendler, K.G.; Hansen, F.; Rosenkilde, M.; Ahlstrom, H.; Abgamu, D.; Day, N.; Walsh, C.; Bannister, J.; Furniss, D.; Morgan, S.; Walkington, L.; Yates, S.; Branagan, G.; Mustajab, A.; O’Neil, H.; Rees, C.; Geh, I.; Hendrickse, C.; Langman, G.; Pallan, A.; Conn, A.; Lowe, A.; Ostrowski, J.; Steward, M.; Callaway, M.; Falk, S.; Thomas, M.; Wong, N.; Cast, J.; Hartley, J.; Roy, R.; Tiam, R.; Blunt, D.; Cleator, S.; Dawson, P.; Goldin, R.; Gujral, D.; Lowdell, C.; Ziprin, P.; Clenton, S.; Dewdney, A.; Euinton, H.; Gupta, R.; Tarapowewalla, D.; Wilshaw, V.; Braun, M.; Chakrabarty, B.; Hill, J.; Laasch, H.; Saunders, M.; Cruickshank, N.; Davies, M.; Muzaffar, S.; Orme, A.; Punia, P.; Rea, D.; Campbell, F.; Hughes, M.; Palmer, D.; Rooney, P.; Abbott, G.; Hamid, B.; Vimalachandran, D.; Berry, J.; Hinson, F.; Maarouf, Z.; Nicoll, J.; Adams, C.; Denson, J.; Jackson, S.; Sherriff, D.; Kweka, E.; McAdam, G.; Peters, M.; Khaira, M.; Kurien, G.; Robinson, J.; Wadsley, J.; White, D.; Young, R.; Dega, R.; Lamparelli, M.; Orbell, J.; Osborne, R.; Taylor, P.; Thomas, T.; Gopalakrishnan, K.; Jadhav, V.; Scott-Brown, M.; Baijal, S.; Chapman, M.; Glaholm, J.; Nelson, C.; Singh, R.; Harrison, J.; Last, K.; Scott, D.; Scullion, D.; Lind, P.; Milosavljevic, Z.; Dent, J.; Ilsley, D.; Littleford, S.; Roberts, C.; Crabtree, M.; Orrell, J.; Sherwin, E.; Smith, S.; Soomal, R.; De, A.; Khan, A.; Khan, U.; Lavin, V.; McBain, C.; Radharkrishna, G.; Sil, R.; Weerasinghe, S.; Lee, S.; Wright, P.; Church, R.; Holland, C.; Kunene, V.; Thompson, A.; Glynne-Jones, R.; Goh, V.; Livingstone, J.; Richman, P.; Barlow, C.; Burn, P.; Geraghty, J.; Walther, J.; Grumett, S.; Mangalika, S.; Qaiyum, M.; Williams, G.; Borgstein, R.; Bridgewater, J.; Melville, D.; Rees, J.; Coxon, F.; Hainsworth, P.; Needham, S.; Scott, J.; Asmussen, J.; Hansen, T.; Jensen, K.; Pfeiffer, P.; Alkhaldi, A.; Brittenden, J.; Jackson, A.; Kamposioras, K.; Kumaran, G.; Macklin, C.; Alexander, J.; Harle, A.; Hickish, T.; Talbot, R.; Tarver, D.; Partridge, W.; Sundaresan, V.; Vivekanandan, S.; Agrawal, N.; Higginson, A.; Muthuramalingam, S.; O’Leary, D.; Devarajan, G.; Gulati, M.; Kerwat, R.; Maisey, N.; Mikhaeel, G.; Middleton, G.; Page, A.; Steven, N.; Taniere, P.; Gutmann, J.; Huang, J.; Raouf, S.; Dunn, W.; Escola, C.L.; Potter, V.; Scholefield, J.; Walker, G.; Zaitoun, A.; Eason, D.; McPhail, N.; Mmeka, W.; Stenhouse, G.; Watson, A.; Fozard, B.; Snape, S.; Ellis, R.; Faux, W.; Jenkins, R.; Maskell, G.; Kulkarni, R.; Lund, J.; Menon, S.; Chandler, I.; Daniels, I.; Harries, S.; Osborne, M.; Bell, J.; Krell, D.; Mayer, A.; Ogunbiyi, O.; Watkins, J.; Bronder, C.; Eaton, D.; Taylor, A.; Cunningham, D.; Tekkis, P.; Wotherspoon, A.; Dobson, M.; Mitchell, P.; Pitt, M.; Susnerwala, S.; Adab, F.; Britton, I.; Ghiridaran, S.; Howitt, C.; Kirby, R.; Biddlestone, L.; Dalton, S.; De Winton, E.; Phillips, A.; Kawesha, A.; Maleki, K.; Momtahan, N.; Burnett, H.; Hayes, S.; Soop, M.; Cook, I.; Cook, S.; Iveson, T.; Shablak, A.; Coup, A.; Hamid, A.; Moore, P.; O’Toole, L.; Pai, D.; Bateman, A.; Blaquiere, R.; Nichols, P.; Chappell, M.; Dworkin, M.; Jain, S.; Tsang, D.; Hopkins, K.; Loveday, E.; Lyons, A.; Rooney, N.; Ali, N.; Chatterjee, M.; Chiphang, A.; Dundas, S.; Myint, A.S.; Zeiderman, M.; Beharry, N.; Chong, H.; Lofts, F.; Finan, P.; Tolan, D.; Anyamene, N.; Burling, D.; Kennedy, R.; Moorghen, M.; Agrawal, S.; Hasan, J.; Mehta, S.; Saeed, M.; Burgess, P.; John, L.; Lowndes, S.; Planner, A.; Smith, D.; Hochhauser, D.; Obichere, A.; Rodriguez-Justo, M.; Shiu, K.; Taylor, S.; Correa, P.; James, S.; Shatwell, W.; Williams, N.; Brady, J.; Lanaspre, E.; Ahmad, M.; Gill, T.; Wilson, D.; Adams, R.; Beehen, R.; Morgan, M.; Lindh, B.; Ford, A.; Gopal, K.; Pranesh, N.; Shareef, D.; Tighe, M.; Busby, K.; Sanders, S.; Sinha, R.; Ahmad, R.; Desai, S.; Ramesh, S.; Hilman, S.; Lott, M.; O’Brien, J.; Radstone, D.; West, D.; Amin, S.; Hampton, J.; Hornbuckle, J.; Kitsanta, P.; Ali, M.; Desai, A.; Hadaki, M.; Hall, M.; Arul, D.; Leonard, P.; Mukhtar, H.; Murray, D.; Baxter, A.; Churn, M.; Farrugia, D.; Lake, S.; Smith, G.; Bansal, A.; Chandran, P.; Corr, C.; Gollins, S.; Davenport, A.; Sukumar, S.; Bathurst, N.; Beaumont, E.; Cooper, E.; Francis, N.; Sephton, M.; Sparrow, G.; Clarke, A.; Haselden, J.; Woodcock, N.; Atkinson, M.; Gupta, M.; Maw, A.; Abdullah, N.; Bale, C.; Lord, M.
Publisher Information: Lippincott, Williams & Wilkins
Publication Year: 2024
Collection: White Rose Research Online (Universities of Leeds, Sheffield & York)
Description: Objective: This study aimed to identify risk criteria available before the point of treatment initiation that can be used to stratify the risk of obstruction in patients undergoing neoadjuvant chemotherapy (NAC) for high-risk colon cancer. Background: Global implementation of NAC for colon cancer, informed by the FOxTROT trial, may increase the risk of bowel obstruction. Methods: A case-control study, nested within an international randomized controlled trial (FOxTROT; ClinicalTrials.gov: NCT00647530). Patients with high-risk operable colon cancer (radiologically staged T3-4 N0-2 M0) that were randomized to NAC and developed large bowel obstruction were identified. First, clinical outcomes were compared between patients receiving NAC in FOxTROT who did and did not develop obstruction. Second, obstructed patients (cases) were age-matched and sex-matched with patients who did not develop obstruction (controls) in a 1:3 ratio using random sampling. Bayesian conditional mixed-effects logistic regression modeling was used to explore clinical, radiologic, and pathologic features associated with obstruction. The absolute risk of obstruction based on the presence or absence of risk criteria was estimated for all patients receiving NAC. Results: Of 1053 patients randomized in FOxTROT, 699 received NAC, of whom 30 (4.3%) developed obstruction. Patients underwent care in European hospitals including 88 UK, 7 Danish, and 3 Swedish centers. There was more open surgery (65.4% vs 38.0%, P=0.01) and a higher pR1 rate in obstructed patients (12.0% vs 3.8%, P=0.004), but otherwise comparable postoperative outcomes. In the case-control–matched Bayesian model, 2 independent risk criteria were identified: (1) obstructing disease on endoscopy and/or being unable to pass through the tumor [adjusted odds ratio: 9.09, 95% credible interval: 2.34–39.66] and stricturing disease on radiology or endoscopy (odds ratio: 7.18, 95% CI: 1.84–32.34). Three risk groups were defined according to the presence or absence of these criteria: 63.4% ...
Document Type: article in journal/newspaper
File Description: text
Language: English
ISSN: 0003-4932
Relation: https://eprints.whiterose.ac.uk/id/eprint/217167/1/risk_of_bowel_obstruction_in_patients_undergoing.17.pdf; Group, F.C., Glasbey, J., Beggs, A. et al. (430 more authors) (2024) Risk of Bowel Obstruction in Patients Undergoing Neoadjuvant Chemotherapy for High-risk Colon Cancer. Annals of Surgery, 280 (2). pp. 283-293. ISSN: 0003-4932
Availability: https://eprints.whiterose.ac.uk/id/eprint/217167/; https://eprints.whiterose.ac.uk/id/eprint/217167/1/risk_of_bowel_obstruction_in_patients_undergoing.17.pdf
Rights: cc_by_4
Accession Number: edsbas.CBBDA959
Database: BASE