Nutrition
Volume 22, Issue 6 , Pages 609-615 , June 2006

Resting energy expenditure in patients with solid tumors undergoing anticancer therapy

  • Marina M. Reeves, Ph.D.

      Affiliations

    • Centre for Health Research, School of Public Health, Queensland University of Technology, Brisbane, Queensland, Australia
    • Corresponding Author InformationCorresponding author: Tel.: +61-7-3258-2322; fax: +61-7-3258-2310
  • ,
  • Diana Battistutta, Ph.D.

      Affiliations

    • Centre for Health Research, School of Public Health, Queensland University of Technology, Brisbane, Queensland, Australia
  • ,
  • Sandra Capra, Ph.D.

      Affiliations

    • School of Health Sciences, University of Newcastle, Callaghan, New South Wales, Australia
  • ,
  • Judy Bauer, Ph.D.

      Affiliations

    • The Wesley Research Institute, Auchenflower, Brisbane, Queensland, Australia
  • ,
  • Peter S.W. Davies, Ph.D.

      Affiliations

    • Children’s Nutrition Research Centre, Royal Children’s Hospital, University of Queensland, Herston, Brisbane, Queensland, Australia

Received 29 April 2005 ,Accepted 17 March 2006.

References 

  1. Kern KA , Norton JA . Cancer cachexia . JPEN . 1988;12:286–298
  2. DeWys WD, Begg C, Lavin PT, Band PR, Bennett JM, Bertino JR, et al  Prognostic effect of weight loss prior to chemotherapy in cancer patients . Am J Med . 1980;69:491–497
  3. Fearon KCH , Barber MD , Moses AGW . The cancer cachexia syndrome . Surg Oncol Clin North Am . 2001;10:109–126
  4. Lindmark L, Bennegard K, Eden E, Ekman L, Schersten T, Svaninger G, et al. Resting energy expenditure in malnourished patients with and without cancer . Gastroenterology . 1984;87:402–408
  5. Hansell DT , Davies JW , Burns HJ . The relationship between resting energy expenditure and weight loss in benign and malignant disease . Ann Surg . 1986;203:240–245
  6. Fredrix EW , Soeters PB , Rouflart MJ , von Meyenfeldt MF , Saris WH . Resting energy expenditure in patients with newly detected gastric and colorectal cancers . Am J Clin Nutr . 1991;53:1318–1322
  7. Jatoi A , Daly BD , Hughes VA , Dallal GE , Kehayias J , Roubenoff R . Do patients with nonmetastatic non–small cell lung cancer demonstrate altered resting energy expenditure? . Ann Thorac Surg . 2001;72:348–351
  8. Staal-van den Brekel AJ , Schols AM , Dentener MA , ten Velde GP , Buurman WA , Wouters EF . Metabolism in patients with small cell lung carcinoma compared with patients with non–small cell lung carcinoma and healthy controls . Thorax . 1997;52:338–341
  9. Harris JA , Benedict FG . A biometric study of basal metabolism in man . Washington, DC: Carnegie Institution of Washington; 1919;
  10. Bosaeus I , Daneryd P , Svanberg E , Lundholm K . Dietary intake and resting energy expenditure in relation to weight loss in unselected cancer patients . Int J Cancer . 2001;93:380–383
  11. Dempsey DT , Feurer ID , Knox LS , Crosby LO , Buzby GP , Mullen JL . Energy expenditure in malnourished gastrointestinal cancer patients . Cancer . 1984;53:1265–1273
  12. Knox LS , Crosby LO , Feurer ID , Buzby GP , Miller CL , Mullen JL . Energy expenditure in malnourished cancer patients . Ann Surg . 1983;197:152–162
  13. Bauer J , Reeves MM , Capra S . The agreement between measured and predicted resting energy expenditure in patients with pancreatic cancer - a pilot study (JOP) . J Pancreas (Online) . 2004;5:32–40
  14. Reeves MM , Capra S , Bauer J , Davies PSW , Battistutta D . Clinical accuracy of the MedGem™indirect calorimeter for measuring resting energy expenditure in cancer patients . Eur J Clin Nutr . 2005;59:603–610
  15. Demark-Wahnefried W , Peterson BL , Winer EP , Marks L , Aziz N , Marcom PK , et al.   Changes in weight, body composition, and factors influencing energy balance among premenopausal breast cancer patients receiving adjuvant chemotherapy . J Clin Oncol . 2001;19:2381–2389
  16. Leenders KL . PET (blood flow and oxygen consumption in brain tumors) . J Neurooncol . 1994;22:269–273
  17. Platz EA . Energy imbalance and prostate cancer . J Nutr . 2002;132:3471S–3481S
  18. Reeves MM , Davies PSW , Bauer J , Battistutta D . Reducing the time period of steady state does not affect the accuracy of energy expenditure measurements by indirect calorimetry . J Appl Physiol . 2004;97:130–134
  19. Weir JB DeV . New methods for calculating metabolic rate with special reference to protein metabolism . J Physiol . 1949;109:1–9
  20. Isenring E , Bauer J , Capra S , Davies PSW . Evaluation of foot-to-foot bioelectrical impedance analysis for the prediction of total body water in oncology outpatients receiving radiotherapy . Eur J Clin Nutr . 2004;58:46–51
  21. Hoffer EC , Meador CK , Simpson DC . Correlation of whole-body impedance with total body water volume . J Appl Physiol . 1969;27:531–534
  22. Bauer J  Centre for Health Research . New insights into medical nutrition therapy for cancer cachexia . Brisbane: Queensland University of Technology; 2003;
  23. Detsky AS, McLaughlin JR, Baker JP, Johnston N, Whittaker S, Mendelson RA, et al. What is subjective global assessment of nutritional status? . JPEN . 1987;11:8–13
  24. Cunningham JJ . Body composition as a determinant of energy expenditure (a synthetic review and a proposed general prediction equation) . Am J Clin Nutr . 1991;54:963–969
  25. Mifflin MD , St Jeor ST , Hill LA , Scott BJ , Daugherty SA , Koh YO . A new predictive equation for resting energy expenditure in healthy individuals . Am J Clin Nutr . 1990;51:241–247
  26. Owen OE , Holup JL , D’Alessio DA , Craig ES , Polansky M , Smalley KJ , et al.   A reappraisal of the caloric requirements of men . Am J Clin Nutr . 1987;46:875–885
  27. Owen OE , Kavle E , Owen RS , Polansky M , Caprio S , Mozzoli MA , et al.   A reappraisal of caloric requirements in healthy women . Am J Clin Nutr . 1986;44:1–19
  28. Schofield WN . Predicting basal metabolic rate, new standards and review of previous work . Hum Nutr Clin Nutr . 1985;39:5–41
  29. Wang Z , Heshka S , Gallagher D , Boozer CN , Kotler DP , Heymsfield SB . Resting energy expenditure–fat-free mass relationship (new insights provided by body composition modeling) . Am J Physiol Endocrinol Metab . 2000;279:E539–E545
  30. Bloch AS . Cancer . In:  Matarese LE ,  Gottschlich MM editor. Contemporary nutrition support practice (a clinical guide) . Philadelphia: WB Saunders; 1998;
  31. A.S.P.E.N. Board of Directors and the Clinical Guidelines Task Force . Guidelines for the use of parenteral and enteral nutrition in adult and pediatric patients . JPEN . 2002;26:1–138
  32. Alpers D , Stenson W , Bier D . Manual of nutritional therapeutics . 4th ed.. Philadelphia: Lippincott Williams & Wilkins; 2002;
  33. Dietitians’ pocket book . Perth: Curtin University of Technology; 1999;
  34. Barak N , Wall-Alonso E , Sitrin MD . Evaluation of stress factors and body weight adjustments currently used to estimate energy expenditure in hospitalized patients . JPEN . 2002;26:231–238
  35. Glynn CC , Greene GW , Winkler MF , Albina JE . Predictive versus measured energy expenditure using limits-of-agreement analysis in hospitalized, obese patients . JPEN . 1999;23:147–154
  36. Heymsfield SB . Heat and life (the ongoing scientific odyssey) . JPEN . 2002;26:319–332
  37. Davies PSW , Cole TJ . The adjustment of measures of energy expenditure for body weight and body composition . Int J Body Comp Res . 2003;1:45–50
  38. Ravussin E , Bogardus C . Relationship of genetics, age, and physical fitness to daily energy expenditure and fuel utilization . Am J Clin Nutr . 1989;49:968–975
  39. Bland JM , Altman DG . Statistical methods for assessing agreement between two methods of clinical measurement . Lancet . 1986;1:307–310
  40. Fredrix EW , Soeters PB , Wouters EF , Deerenberg IM , von Meyenfeldt MF , Saris WH . Effect of different tumor types on resting energy expenditure . Cancer Res . 1991;51:6138–6141
  41. Arbeit JM , Lees DE , Corsey R , Brennan MF . Resting energy expenditure in controls and cancer patients with localized and diffuse disease . Ann Surg . 1984;199:292–298
  42. Hansell DT , Davies JW , Burns HJ . Effects of hepatic metastases on resting energy expenditure in patients with colorectal cancer . Br J Surg . 1986;73:659–662
  43. Macfie J , Burkinshaw L , Oxby C , Holmfield JH , Hill GL . The effect of gastrointestinal malignancy on resting metabolic expenditure . Br J Surg . 1982;69:443–446
  44. Luketich JD , Mullen JL , Feurer ID , Sternlieb J , Fried RC . Ablation of abnormal energy expenditure by curative tumor resection . Arch Surg . 1990;125:337–341
  45. Duke JH , Jorgensen SB , Broell JR , Long CL , Kinney JM . Contribution of protein to caloric expenditure following injury . Surgery . 1970;68:168–174
  46. Taaffe DR , Thompson J , Butterfield G , Marcus R . Accuracy of equations to predict basal metabolic rate in older women . J Am Diet Assoc . 1995;95:1387–1392
  47. Siervo M , Boschi V , Falconi C . Which REE prediction equation should we use in normal-weight, overweight and obese women? . Clin Nutr . 2003;22:193–204

PII: S0899-9007(06)00152-3

doi: 10.1016/j.nut.2006.03.006

Nutrition
Volume 22, Issue 6 , Pages 609-615 , June 2006