| Literature DB >> 32366995 |
Alex F Bullock1, Sarah L Greenley2, Gordon A G McKenzie3, Lewis W Paton4, Miriam J Johnson3.
Abstract
Malnutrition predicts poorer clinical outcomes for people with cancer. Older adults with cancer are a complex, growing population at high risk of weight-losing conditions. A number of malnutrition screening tools exist, however the best screening tool for this group is unknown. The aim was to systematically review the published evidence regarding markers and measures of nutritional status in older adults with cancer (age ≥ 70). A systematic search was performed in Ovid Medline, EMBASE, Web of Science, CINAHL, British Nursing Database and Cochrane CENTRAL; search terms related to malnutrition, cancer, older adults. Titles, abstracts and papers were screened and quality-appraised. Data evaluating ability of markers of nutritional status to predict patient outcomes were subjected to meta-analysis or narrative synthesis. Forty-two studies, describing 15 markers were included. Meta-analysis found decreased food intake was associated with mortality (OR 2.15 [2.03-4.20] p = < 0.00001) in univariate analysis. Prognostic Nutritional Index (PNI) was associated with overall survival (HR 1.89 [1.03-3.48] p = 0.04). PNI markers (albumin, total lymphocyte count) could be seen as markers of inflammation rather than nutrition. There a suggested relationship between very low body mass index (BMI) (<18 kg/m2) and clinical outcomes. No tool was identified as appropriate to screen for malnutrition, as distinct from inflammatory causes of weight-loss. Risk of cancer-cachexia and sarcopenia in older adults with cancer limits the tools analysed. Measures of food intake predicted mortality and should be included in clinical enquiry. A screening tool that distinguishes between malnutrition, cachexia and sarcopenia in older adults with cancer is needed.Entities:
Mesh:
Year: 2020 PMID: 32366995 PMCID: PMC7606134 DOI: 10.1038/s41430-020-0629-0
Source DB: PubMed Journal: Eur J Clin Nutr ISSN: 0954-3007 Impact factor: 4.016
Characteristics of included studies.
| Prospective cohort studies | Age, years | Sample size, gender | Cancer diagnoses and treatment | Malnutrition proxy marker(s) and units | Patient outcome(s) | Follow up | Study results [95% CI] | Quality score |
|---|---|---|---|---|---|---|---|---|
Aaldricks, The Netherlands [ | ≥70 YO Mean 76 ± 4.8 Range 70–88 | Advanced breast cancer. Chemotherapy. | Alb (</≥ 35 g/l) Hb (</≥7.5 mmol/l) | Overall mortality | Median 16 ± 13.7 months | No association between proxy markers and outcomes. | 8.5/10 Risk of selection bias. | |
| ≥4 Vs <4 cycles of chemotherapy | Median 11 months Range 0–57. | |||||||
Aaldricks, The Netherlands [ | ≥70 YO Mean 77 | Non-Hodgkin’s Lymphoma; diffuse large-β cell lymphoma and follicular lymphoma grade III. R-CHOP treatment. | Alb (</≥35 g/l). Hb (6.8 mmol/l). | Completion of chemotherapy. Mortality. | Median 46 months (0–101). | Hb associated with early treatment withdrawal: multivariate OR 5.41 [0.99–29.8] | 9.5/10 | |
Aaldricks, The Netherlands [ | ≥70 YO Median 75 Range 70–92 | Various cancer diagnoses. Chemotherapy. | Declining food intake 3/12 (severe or moderate decrease/no decrease). Weight loss 3/12. | Feasibility of Chemotherapy ≥4 Vs <4 cycles | Median 17 months Range 1–101. | Declining food intake OR 2.00 [1.34–3.00], weight loss 3/12 OR 1.88 [1.26–2.80] associated with feasibility of chemotherapy in univariate analysis. Declining food intake, fluid intake ≤5 cups/day OR 1.76 [1.23–2.52] and weight loss 6/12 OR 1.38 [1.13–1.69] associated with mortality in univariate analysis. | 7.0/10 Missing data, unclear recruitment. | |
Declining food intake 3/12 Reduced fluid intake (≤3/3–5/≥5 cups per day). Unintentional weight loss (3 kg in 1/12 or 6 kg in 2/12). | Overall mortality | |||||||
Baitar, Belgium [ | ≥70 YO Median 77 Range 70–95 | Breast (38.4%, Colorectal 35.4%, Lung 15.5%, Prostate 6.4%, Ovarian 4.3%). 63.7% new diagnosis, 36.3% progression or recurrence. Surgery, chemotherapy, radiotherapy hormonal therapy. | Hb (</≥11.8/12 g/dl)* Alb </≥ 35/37 g/l)* CRP </>5/≥5 mg/l* Markers also analysed as continuous variables | Overall survival | Median 60.3 months [95% CI: 58.6–62.6]. | Hb, CRP and Alb associated with outcome as dichotomous variables: Hb HR 1.51 [1.16–1.96]. Alb HR 2.91 [1.44–2.52]. CRP: HR 1.82 [1.37–2.43]. CRP associated with outcome as continuous variable: HR 1.08 [1.06–1.11]. | 7.5/10 Unclear recruitment method. | |
Bourdel-Marchasson, France [ | ≥70 YO | Lung, Colon, Stomach, Pancreas, Ovary, Bladder, CUPSs, Biliary duct, Breast. Life expectancy ≥12 weeks. First line chemotherapy. | % Weight loss (none/<5%, 5–10%, >10%, missing). Decreased food intake 3/12 (severe/moderate/no decrease). Actual weight loss 3/12 (>3 kg, 1–3 kg/unknown/none). BMI (<19/>19–<21/>21–<23/>23 kg/m2) Daily full meals (1/2/3 meals). Protein-rich foods (low/intermediate/high). Fruit & vegetable intake (<2/≥2 servings/day). Fluid intake (<3/3–5/>5 cups/day). Self-view of nutritional status (malnourished/uncertain/no problem). Mode of feeding (assistance/self-fed with difficulty/no problem). MAC (<21/<21–<22/>22 cm). Calf circumference (<31/>31 cm). | 1 year mortality | 12 months. | In univariate analysis; reduced food intake 3.12, weight loss >3 kg or unknown weight loss, BMI <23, number of full meals per day, <2 servings fruit and vegetables/day, self-fed with some difficulty, self-view of nutritional status, mid-arm circumference <21 cm, calf circumference <31 cm associated with outcome. | 5.5/10 | |
Chaufour-André, France [ | ≥70 YO | Digestive, Upper aero- digestive, Gynaecological, Lung, Sarcomas, Other. Surgery for neoplastic pathology. | NRI </> 97.5. Unintentional weight loss. | Major complications. Infectious complications. Post-operative confusion. | 1 month post-discharge. | Univariate analysis; NRI associated with post-operative complications: OR 0.79 [0.66–0.95]. No risk factors for postoperative complications could be identified. | 6.5/10 Confounding not accounted for, risk of bias in recruitment. | |
Extermann, USA [ | ≥70 YO Median 75.5 Range 70–92 | Lung, Breast, Non-Hodgkin’s Lymphoma, Colorectal, Bladder, other. Chemotherapy. | BMI > 25 kg/m2. Hb (g/dl). Alb (g/dl). | Chemotherapy toxicity; grade 4 haematological or grade 3/4 non-haematological. | 6 months. | No association between proxy markers and outcome. | 6.0/10 Risk of bias recording proxy markers and outcomes. | |
Hoppe, France [ | ≥70 YO Median 77.4 Range 70–93 | Colon, Pancreatic, Stomach, Ovarian, Bladder, Prostate, Lung, Non-Hodgkin’s lymphoma, CUPs. First-line chemotherapy. | Weight loss (</≥ 10%). BMI (<19/19–23/≥23 kg/m2). Alb (</≥ 35 g/l). CRP (</≥ 5 mg/l). | Functional decline (ADL score). | After first cycle of chemotherapy | Weight loss associated with functional decline in univariate analysis OR 1.86 [no CIs] | 6.5/10 Risk of bias in recruitment, inappropriate follow up time. | |
Hsu, Canada [ | ≥70 YO Median 74.5 Range 70–84 | Colorectal or Thoracic cancer. Chemotherapy. | Hand-grip strength (bottom 20th percentile) | Chemotherapy toxicity (grade 3–5). Dose reduction or delay due to chemotherapy toxicity. Discontinuation of chemotherapy due to toxicity. Hospitalisation or ED visit due to chemotherapy. | 12 months. | 2.0/10 Risk of confounding, unclear recruitment, inappropriate conclusions. | ||
Kaibori, Japan [ | ≥70 YO Median 77 Mean 78.2 ± 4.8 Range 70–89 | Hepatocellular carcinoma. Hepatic resection. | BMI (</≥ 22 kg/m2). Alb (</≥4 g/dl). | Post-operative complications (Clavien-Dindo grade 2–4b) | Length of hospital stay: 13 days (6–189). | Alb associated with outcome in univariate analysis OR 3.66 [1.14–1.76], | 7.5/10 Risk of selection bias in recruitment and inclusion criteria. | |
Kanesvaran, Singapore [ | ≥70 YO Median 77 Range 70–94 | All cancer diagnoses; Lung, Colorectal and Genitourinary 83.5% | BMI (</≥ 30 kg/m2). Hb (</≥ 12 g/dl). Alb (</≥35 g/l). | Survival (median months) | No info. | Hb and albumin associated with outcome in univariate analysis. Multivariate analysis for Hb not given. | 9.0/10 Missing data. | |
Kim, South Korea [ | ≥70 YO | Colorectal, Lung, Hepato-biliary, Stomach, Other. Stage III, IV or unknown. First-line chemotherapy. | Daily fluid intake (</> 3 cups per day). | ≥Grade 3 chemotherapy toxicity | Post-chemotherapy cycles (range 25–75% 2–7 cycles). | Daily fluid intake associated with outcome. | 7.5/10 Recruitment method not described. | |
Lu, China [ | ≥80 YO Range 80–93 | Gastric cancer. Surgical resection. | PNI </≥45. | Systematic complications. Local complications. Overall survival. Recurrence free survival. Cancer specific survival. | 5 years. | PNI associated with recurrence-free survival | 9.5/10 | |
Marenco, Italy [ | ≥70 YO Median 78 Mean 78 ± 4.8 | Colorectal, Gastro-intestinal, Renal, Bladder, Other. | BMI </≥21 kg/m2 | Treatment recommendation (active vs palliative care). Survival. | Up to 60 months. | BMI associated with outcome. | 6.5/10 High risk of selection bias. |
n number, F female, M male, YO years old, OR odds ratios, HR hazard ratios, CI confidence intervals, NA not applicable Alb albumin, Hb haemoglobin, CRP C-reactive protein, BMI body mass index NRI nutrition risk index, PNI prognostic nutritional index, GNRI geriatric nutrition risk index, CONUT controlling nutritional status score ADL activities of daily living.
Objective indexes.
| PNI [ | PNI = 10 × albumin (g/dl) + 0.005 × total lymphocyte count (per mm3) |
| CONUT [ | Serum Albumin (g/dl): ≥3.50 score 0, 3.00–3.49 score 2, 2.50–2.99 score 4, <2.50 score 6 |
| Total lymphocyte count (mm3): ≥1600 score 0, 1200–1599 score 1, 800–1199 score 2, <800 score 3 | |
| Total cholesterol (mg/dl): ≥180 score 0, 140–179 score 1, 100–139 score 2, <100 score 3 | |
| CONUT = serum albumin score + total lymphocyte score + total cholesterol score | |
| NRI [ | NRI = (1.519 × serum albumin (g/dl)) + (41.7 × current weight (kg)/ideal body weight (kg)) |
| GNRI [ | GNRI = (1.489 × albumin (g/l)) + (41.7 × [weight/weight loss]) |
PNI prognostic nutritional index, CONUT controlling nutritional status score, NRI nutritional risk index, GNRI geriatric nutritional risk index.
Fig. 1Forest plot assessing the correlation between declining food intake and mortality.
Studies ordered by year (SE: standard error, IV: inverse variance, CI: confidence interval).
Fig. 2Forest plot assessing the correlation between PNI and OS.
Studies ordered by year. (SE: standard error, IV: inverse variance, CI: confidence interval).
Malnutrition screening tools and objective indexes compared with malnutrition markers identified in review.
| Biochemical | Anthropometrics | Dietary intake | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| Hb | Alb | CRP | Weight loss | BMI | MAC/CC | Hand-grip | CT (LSMM) | Food | Fluid | |
| BAPEN | ● | ● | ● | ● | ||||||
| CNST | ● | ● | ||||||||
| CONUT | ● | |||||||||
| ESPEN | ● | ● | ●a | |||||||
| GNRI | ● | ● | ||||||||
| INSYST | ● | ● | ||||||||
| MST | ● | ● | ||||||||
| MSTC | ● | ● | ● | |||||||
| MUST | ● | ● | ● | |||||||
| NRI | ● | ● | ||||||||
| NRS-2002 | ● | ● | ● | |||||||
| NUFFE | ● | ● | ● | |||||||
| PNI | ● | |||||||||
| SGA | ● | ● | ||||||||
| SNAQ | ● | ● | ||||||||
| 3-MinNS | ● | ● | ||||||||
Alb albumin, BAPEN British Association for Parenteral and Enteral Nutrition, BMI body mass index, CC calf circumference, CNST Canadian Nutrition Screening Tool, CONUT controlling nutritional status, CT computerised tomography, CRP C-reactive protein, ESPEN European Society for Clinical Nutrition and Metabolism, GNRI geriatric nutritional risk index, Hb haemoglobin, INSYST imperial nutrition screening system, LSMM lean skeletal muscle mass, MAC mid-arm circumference, MST malnutrition screening tool, NRS-2002 nutrition risk screening, MUST malnutrition universal screening tool, NRI nutrition risk index, NUFFE nutritional form for the elderly, PNI prognostic nutritional index, SNAQ short nutritional assessment questionnaire, SGA subjective global assessment, SNST simple nutrition screening tool, 3-MinNS 3 minute nutrition screening.
aLow fat free mass index used instead of low skeletal muscle mass, defined as <15 kg/m2 in females and <17 kg/m2 in males.
Diagnostic criteria and definitions for cachexia, sarcopenia and malnutrition.
| Weight loss | BMI | Fat loss | Fat increase | Loss of muscle mass | Loss of muscle strength/function | Low FFMI | Adverse clinical outcome | Disease state | Age related | Catabolic/inflam. response | Abnormal biomark | Anorexia | Insulin resistance | Fatigue | Oral intake | ||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Cachexia diagnoses | Evans et al. [ | ▲ □ | ± □ | □ | ▲ | ▲ | □ | ▲ □ | ▲ □ | ▲ | ▲ □ | □ | ▲ | ||||
Fearon et al. [ International Consensus | ▲ | ▲ | ± □ | ▲ □ | □ | □ | □ | ||||||||||
Sarcopenia diagnoses | Muscaritoli et al. [ | ▲ □ | ▲ □ | ||||||||||||||
| Fielding et al. [ | ± □ | ▲ □ | ▲ □ | □a | □ | □a | □a | □a | |||||||||
Morley et al. [ International Consensus | □ | □ | |||||||||||||||
Cruz-Jentoft et al. [ European Consensus | ▲ □ | ▲b □ | □ | ||||||||||||||
Malnutrition diagnoses | NICE [ | ▲ | ▲ | ||||||||||||||
| White et al. [ | ▲ □ | ▲ | ▲ | ▲ | ± □ | ▲□ | |||||||||||
| Cederholm et al. [ | ▲ | ▲ | ▲ | ||||||||||||||
| Cederholm et al. [ | ▲ | ▲ | ▲ | ▲ | ▲ | ||||||||||||
| Nutrition screening tools [ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ | ▲ |
▲Diagnostic criteria.
□Definition ± with or without.
$Definition only.
§Diagnostic criteria only.
BMI body mass index, FFMI fat free muscle index, Inflam. inflammation, Biomark biomarker, NICE National Institute of Health and Care Excellence, APSEN American Society for Parenteral and Enteral Nutrition, AND Academy of Nutrition and Dietetics, IWGS International Working Group for Sarcopenia.
aCauses of sarcopenia may include.
bPresence of low muscle quantity/quality and low physical performance indicates severe sarcopenia.
cDefinition adapted from Jensen et al. [93].
dPlus ‘at risk’ by one of: NRS-2002, MNA-SF, MUST, ESPEN, ASPEN/AND, SGA, Evans [79], Fougue [94], Fearon [19].