Chronic malnutrition and nutritional assessment
Appearance
Definitions:
[edit | edit source]- Marasmus - balanced diet but inadequate energy - manifests as cachexia. Also called protein-energy malnutrition.
- Kwashiorkor - inadequate as well as unbalanced diet, with more calories than protein. Results in fluid retention, sarcopaenia, loss of fat stores; may have low albumin. Often seen accompanying sepsis or after trauma.
- Sarcopaenia - age-related progressive loss of muscle mass and strength
- increased morbidity after abdominal elective surgery
Evidence for impact of chronic malnutrition
[edit | edit source]- ESPEN says that 'metabolic risk' is a significant factor for hospital mortality, especially in elderly
- Can predict length of stay and complications for various operations
- Weight loss and serum albumin concentration were predictive parameters for post-operative outcome in one meta-analysis
Overall approach to identifying and diagnosing malnutrition
[edit | edit source]- Use MUST to screen for at-risk patients
- Then use GLIM criteria to confirm diagnosis, and establish severity
Components of malnutrition assessment:
[edit | edit source]Biochemical
[edit | edit source]- No single reliable measure
- Albumin is somewhat useful in a patient at their baseline, but not acutely - it reflects the level of catabolism, not the underlying nutritional insufficiency
- Hypoalbuminaemia is almost inevitable in an unwell patient because of variations in fluid composition and capillary hyper-permeability, and does not necessarily reflect nutritional status
- Half-life 20 days
- Half-life of pre-albumin is 48 hours
Body weight and anthropometry
[edit | edit source]- Clinical findings
- Cachexia, angular cheilitis, hair thinning
- Simple method - estimate weight loss from pre-morbid weight
- Unintentional weight loss of 10% in six months is a good measure of poor prognosis
- BMI - weight/height squared
- <18.5 = nutritional impairment
- <15 significant hospital mortality association
- Can be unreliable in unwell patients
- Anthropometric techniques are indirect measures of body fat and muscle mass. Insufficiently accurate to guide management in individual patients. Only useful as trends in the same patient over time.
- Skinfold thickness
- Mid-arm circumference
- Bioelectric impedance permits estimation of intra-and extra-cellular fluid volumes
- Clinical findings
Clinical
[edit | edit source]- 'Subjective global assessment'
- Risk of malabsorption
- Adequacy of dietary intake
- Selected nutritional blood tests
- 'MUST' tool
- 'Subjective global assessment'
Screening:
[edit | edit source]- Assessment of nutritional status is less important than identification of patients at risk of poor nutritional status
- Single most important factor is unintentional weight loss >5% over one month or >10% over 6 months
- 'Disease-related malnutrition' is probably more subtle than suggested by the weight-related definition from WHO - it is plausible for obese patients to have malnutrition
- Chronic low-grade inflammation may be a component of malnutrition
- MUST (Malnutrition Universal Screening Tool) - see above
Diagnosing:
[edit | edit source]- BMI + weight loss + muscle assessment + dietary intake +/- intake
- ESPEN diagnostic criteria (2012)
- BMI <18.5 OR
- Weight loss (>10% over six months OR >5% over three months) AND (low BMI OR low fat-free mass index)
- PG-SGA tool uses a combination of subjective assessments from the patient, and clinician assessments, to grade chronic malnutrition and suggest interventions
- GLIM criteria (2018) incorporates phenotypic criteria, aetiology and severity
- Diagnosis - one phenotypic and one aetiologic criteria
- Phenotype - unintentional weight loss (>5% in six months, >10% in longer time), low BMI(<20 for <70yo, <22 for >70yo), or reduced muscle mass
- Aetiology - reduced food intake or absorption, or underlying inflammation due to acute disease/injury or chronic disease
- Severity
- Stage 1 or stage 2 for each criteria
- Diagnosis - one phenotypic and one aetiologic criteria