Background <p>Homozygous familial hypercholesterolemia (HoFH) is a rare inherited disorder of lipoprotein metabolism caused by pathogenic variants in both alleles of key low-density lipoprotein receptor (LDLR)-mediated pathway genes, resulting in very high LDL cholesterol (LDL-C) levels from birth. The microsomal triglyceride transfer protein (MTP) inhibitor lomitapide, is an effective treatment for lowering LDL-C in HoFH that acts independently of LDLR. This study investigated the response to lomitapide treatment and the potential impact of <i>MTTP</i> gene variants in a cohort of patients with HoFH.</p> Methods <p>Data were extracted from medical records of patients diagnosed with HoFH and receiving treatment with lomitapide in addition to background statin + ezetimibe + PCSK9 inhibitor therapy. Data on LDL-C levels before and after lomitapide treatment were collected from patient medical histories. Genetic sequencing of all exonic and intronic flanking regions of the <i>MTTP</i> gene was carried out for all patients with genomic DNA isolated from whole blood.</p> Results <p>A total of 13 patients with a diagnosis of HoFH were identified (mean ± standard deviation age, 47.3 ± 17.3 years). The median (range) dose of lomitapide was 20&#xa0;mg/day (10 to 60&#xa0;mg/day). Median (range) baseline LDL-C (before lomitapide) was 240&#xa0;mg/dL (162 to 478&#xa0;mg/dL). Following lomitapide treatment the median (range) LDL-C level was 119&#xa0;mg/dL (56 to 305&#xa0;mg/dL), and all patients reported a reduction in LDL-C with lomitapide. A total of 151 <i>MTTP</i> gene variants were identified encompassing 50 distinct variants. There was a trend for more variants per patient with LDL-C reduction &gt; 50% vs. patients with LDL-C reduction ≤ 50% (difference, 8.5; 95% confidence interval [CI] − 1.2, 18.1; <i>P</i> = 0.08). Several <i>MTTP</i> gene variants (rs17533489, rs79194015, rs745075, rs41275715, rs1491246, and rs17533517) previously identified as potentially associated with a greater response to lomitapide treatment were significantly more common in patients with a reduction in LDL-C &gt; 50% than those with a reduction in LDL-C ≤ 50% (difference, 3.9; 95% CI 3.3, 4.5; <i>P</i> &lt; 0.001).</p> Conclusions <p>This study builds upon previous findings by our group suggesting that variants in the <i>MTTP</i> gene may influence response to lomitapide. This study further presented a number of variants that may be uniquely associated with higher or lower response to lomitapide treatment.</p>

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Lomitapide response in a cohort of patients with homozygous familial hypercholesterolemia and the potential influence of MTTP gene variants

  • Genovefa Kolovou,
  • Vana Kolovou,
  • Katherine Anagnostopoulou,
  • Georgia Anastasiou,
  • Petros Kalogeropoulos,
  • Evangelos Liberopoulos

摘要

Background

Homozygous familial hypercholesterolemia (HoFH) is a rare inherited disorder of lipoprotein metabolism caused by pathogenic variants in both alleles of key low-density lipoprotein receptor (LDLR)-mediated pathway genes, resulting in very high LDL cholesterol (LDL-C) levels from birth. The microsomal triglyceride transfer protein (MTP) inhibitor lomitapide, is an effective treatment for lowering LDL-C in HoFH that acts independently of LDLR. This study investigated the response to lomitapide treatment and the potential impact of MTTP gene variants in a cohort of patients with HoFH.

Methods

Data were extracted from medical records of patients diagnosed with HoFH and receiving treatment with lomitapide in addition to background statin + ezetimibe + PCSK9 inhibitor therapy. Data on LDL-C levels before and after lomitapide treatment were collected from patient medical histories. Genetic sequencing of all exonic and intronic flanking regions of the MTTP gene was carried out for all patients with genomic DNA isolated from whole blood.

Results

A total of 13 patients with a diagnosis of HoFH were identified (mean ± standard deviation age, 47.3 ± 17.3 years). The median (range) dose of lomitapide was 20 mg/day (10 to 60 mg/day). Median (range) baseline LDL-C (before lomitapide) was 240 mg/dL (162 to 478 mg/dL). Following lomitapide treatment the median (range) LDL-C level was 119 mg/dL (56 to 305 mg/dL), and all patients reported a reduction in LDL-C with lomitapide. A total of 151 MTTP gene variants were identified encompassing 50 distinct variants. There was a trend for more variants per patient with LDL-C reduction > 50% vs. patients with LDL-C reduction ≤ 50% (difference, 8.5; 95% confidence interval [CI] − 1.2, 18.1; P = 0.08). Several MTTP gene variants (rs17533489, rs79194015, rs745075, rs41275715, rs1491246, and rs17533517) previously identified as potentially associated with a greater response to lomitapide treatment were significantly more common in patients with a reduction in LDL-C > 50% than those with a reduction in LDL-C ≤ 50% (difference, 3.9; 95% CI 3.3, 4.5; P < 0.001).

Conclusions

This study builds upon previous findings by our group suggesting that variants in the MTTP gene may influence response to lomitapide. This study further presented a number of variants that may be uniquely associated with higher or lower response to lomitapide treatment.