CPY 302
Introduction to Chemical Pathology
3 Unit(s) (LH 30; PH 45)
Course Description
At the end of this course, students should be able to:
1. explain biological variability and the effects of patient preparation prior to sample collection
in order to enable students send suitable samples to the laboratory;
2. describe sample collection, random samples, timed collection, and use of special
investigations requests, specimen/sample containers, difference between plasma, serum
and whole blood, handling of CSF samples;
3. interpret clinical chemistry results, use of conversion factors for different units and
reference intervals;
4. describe acid base homeostasis and disorders, sodium and water homeostasis and
disorders, potassium homeostasis and disorders, calcium homeostasis and related
disorders, uric acid metabolism and disorders;
5. enumerate potassium balance and disorders; and
81
6. list calcium, phosphate, magnesium and vitamin D disorders.
Course Outline
General clinical chemistry. General introduction to chemical pathology, branches of chemical
pathology, the role of chemical pathology in the diagnosis, monitoring, detection of
complication and determination of diseases, burden of non-communicable diseases,
importance of reference interval/range, Gaussian distribution, normal distribution curve.
Specimen handling and pre-analytical variables. Biological variability. Concept of diurnal
rhythm, supracardian rhythm, modifiable and non-modifiable causes of analytical variability,
and types of specimens collected and analysed by the chemical pathology laboratory. Patient
preparation for chemical pathology investigations, random samples, timed collection, and use
of special investigations requests, specimen/sample containers, difference between plasma,
serum and whole blood, handling of CSF samples. Interpretation of numerical results. Units
in clinical chemistry, SI and conventional units, interpreting clinical chemistry result, use of
population specific reference interval, subject base reference interval, significant differences
in results, sensitivity, specificity, diagnostic efficiency and odd’s ratio, negative and positive
predictive values, handling and abnormal or incongruent laboratory result. Acid base
homeostasis and disorders, sodium and water homeostasis and disorders, potassium
homeostasis and disorders, calcium homeostasis and related disorders, uric acid metabolism
and disorders. Water and sodium homeostasis and disorders. Potassium balance and
disorders. Calcium, phosphate, magnesium and vitamin D disorders.