Evaluation of Recently Developed Regression Equation with Direct Measurement of Low-density Lipoprotein Cholesterol in a Bangladeshi Population

Journal Title: Journal of Enam Meical College - Year 2015, Vol 5, Issue 2

Abstract

Background: Meaningful underestimation of low-density lipoprotein (LDL) cholesterol is an important shortcoming of Friedewald’s formula (FF) at higher triglyceride (TG) levels. Recently a regression equation (RE) has been developed using lipid profiles in one setting and validated externally for the calculation of LDL cholesterol. This newly developed RE requires more studies in different settings. Objective: The aim of this study was to evaluate the performance of the regression equation against direct measurement. Materials and Methods: Lipid profiles of 600 subjects attending a tertiary healthcare center were included in this study. Specimens were collected and lipid profiles were measured by standard methods. Sixty two lipid profiles with TG above 400 mg/dL were excluded. Calculated LDL cholesterol values using FF and RE were compared with measured LDL cholesterol by Pearson’s correlation test, Passing & Bablok regression, accuracy within ±5% and ±12% of measured LDL cholesterol and two-tailed paired t test at various TG ranges. Results: The mean value of LDL cholesterol was 148.6 ± 37.2 mg/dL for direct measurement, 146.9 ± 42.4 mg/dL for FF and 148.6 ± 34.7 mg/dL for RE. The correlation coefficients of calculated LDL cholesterol values with measured LDL cholesterol were 0.949 (p<0.001) for FF and 0.959 (p<0.001) for RE. Passing & Bablok regression equation against measured LDL cholesterol was y = 0.897x + 16.2 for FF and y = 1.0842x – 13.1 for RE. Accuracy within ±5% of measured LDL cholesterol was 45% for FF, 57% for RE and within ±12% of measured LDL cholesterol was 84% for FF, 93% for RE. When calculated LDL cholesterol was compared with measured LDL cholesterol at different TG ranges, FF significantly underestimated LDL cholesterol at TG concentrations above 200 mg/dL whereas no significant difference was observed for RE. Conclusion: This study reveals that RE equation has similar performance to direct measurement for calculation of LDL cholesterol.

Authors and Affiliations

Md Fazley Rabbi Sha, Abdul Hai Siddique, Muhammad Saiedullah, Md Aminul Haque Khan

Keywords

Related Articles

From the Desk of Editor-in-Chief 6(1)

Abstract not available

A 25-Year-Old Female with Unusually Large Complex Odontoma in Mandibular Molar Area Associated with Unerupted Tooth

Odontomas are benign tumours of odontogenic origin consisting of different dental tissues. Usually they are tooth size or smaller, but occasionally complex variety can exhibit considerable growth. They are usually asym...

Diagnosis of Ovary-Containing Indirect Inguinal Hernia of the Canal of Nuck by Ultrasound

In women, the round ligament is attached to the uterus near the origin of the fallopian tube, and a small evagination of parietal peritoneum accompanies the round ligament through the inguinal canal to the labium major...

Raised Vaginal Fluid Fibronectin Level Indicates Premature Rupture of Membrane

Background: Premature rupture of membrane (PROM) is one of the common complications of pregnancy that has major impact on fetal and neonatal outcome. It is the commonest clinical event where a normal pregnancy becomes...

Jaw-Closing Oromandibular Dystonia Induced by Speaking in a Patient with Systemic Sclerosis

Oromandibular dystonia is a rare form of focal dystonia caused by involuntary spasms of masticatory, lingual and pharyngeal muscles. Here we describe a 53-year-old edentulous woman with systemic sclerosis who presented...

Download PDF file
  • EP ID EP36226
  • DOI https://doi.org/10.3329/jemc.v5i2.23376
  • Views 317
  • Downloads 0

How To Cite

Md Fazley Rabbi Sha, Abdul Hai Siddique, Muhammad Saiedullah, Md Aminul Haque Khan (2015). Evaluation of Recently Developed Regression Equation with Direct Measurement of Low-density Lipoprotein Cholesterol in a Bangladeshi Population. Journal of Enam Meical College, 5(2), -. https://europub.co.uk./articles/-A-36226