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result(s) for
"Hyperlipoproteinemia Type I - metabolism"
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Emulsifying dietary fat modulates postprandial endotoxemia associated with chylomicronemia in obese men: a pilot randomized crossover study
by
Pineau, Gaëlle
,
Laville, Martine
,
Vidal, Hubert
in
Adult
,
Biomedical and Life Sciences
,
Clinical Nutrition
2017
Background
Postprandial hyperlipemia is recognized as a major cardio-metabolic risk factor, recently linked to the co-absorption of pro-inflammatory lipopolysaccharides with dietary lipids. This causes endotoxemia that is involved in the pathophysiology of obesity and insulin resistance, but to date the impact of food formulation is unknown. We tested a novel concept that endotoxin absorption can be modulated by fat emulsified structure in the meal, and potentially differently in obese vs. lean men.
Methods
In a randomized controlled crossover study, eight normal-weight and eight obese age-matched healthy men ingested two isocaloric, isolipidic breakfasts of identical composition including 40 g of milk fat that was emulsified or unemulsified. Plasma- and chylomicron-endotoxemia and chylomicron-triglycerides were measured during 8 h after breakfast ingestion.
Results
After emulsion consumption, parallel to an enhanced chylomicronemia, obese subjects presented an early and sharp increase in chylomicron-endotoxemia at 60 min (
P
time
= 0.02), which was higher than (i) after spread fat in obese subjects (
P
< 0.05) and (ii) after both spread and emulsified fat in normal-weight subjects (
P
< 0.05). However in obese subjects, the iAUC of plasma endotoxemia over 8 h was lower after emulsion than after spread fat (
P
< 0.05) whereas in NW subjects such reduction of plasma LPS-iAUC was not observed (
P
= 0.67).
Conclusion
This study provides initial evidence that optimizing fat structure in the meal can be part of a dietary strategy to lower the metabolic impact of postprandial endotoxemia in obese men.
Trial registration
Registered at
ClinicalTrials.gov
#
NCT01249378
on July 13, 2010.
Journal Article
Effect of Hepatic Impairment on the Pharmacokinetics of Pradigastat, a Diacylglycerol Acyltransferase 1 (DGAT1) Inhibitor
by
Hirano, Masaru
,
Chen, Jin
,
Rebello, Sam
in
Acetates - administration & dosage
,
Acetates - blood
,
Acetates - pharmacokinetics
2015
Background and Objective
Pradigastat, a novel diacylglycerol acyltransferase 1 inhibitor, is under development to treat familial chylomicronemia syndrome. The potential impact of hepatic impairment on the pharmacokinetics of pradigastat was evaluated in this study.
Methods
In this study, a single oral dose of 20 mg pradigastat was administered first to patients with mild and moderate hepatic impairment (
n
= 10/group) and subsequently to patients with severe hepatic impairment (
n
= 6). The pharmacokinetics of pradigastat were compared between each patient group and the respective matched healthy subjects.
Results
As compared with the respective matched healthy groups, the geometric mean ratios of the area under the plasma concentration–time curve from time zero to infinity (AUC
inf
) (h·ng/mL) were 1.49, 1.06 and 1.99 in mild, moderate and severe hepatic impairment patients, respectively; the observed maximum plasma concentration (
C
max
) (ng/mL) values were 0.97, 1.28 and 2.74, respectively; and the total body clearance of the drug from plasma (CL/
F
) (L/h) values were 0.67, 0.95 and 0.50, respectively. The elimination half-life and plasma protein binding of pradigastat were comparable among all the patients. There were no apparent relationships between AUC
inf
or
C
max
and albumin or bilirubin levels (
R
2
< 0.3;
p
> 0.05). Overall, 19 adverse events (AEs) were reported in 13 patients. The incidence of AEs appeared to increase with increasing severity of hepatic impairment.
Conclusion
No clinically significant differences in the pharmacokinetics of pradigastat were observed in mild and moderate hepatic impairment patients compared with healthy subjects. However, the systemic exposure of pradigastat doubled while the clearance decreased by half in patients with severe hepatic impairment compared with healthy subjects. All treatments were well tolerated in the study.
Journal Article
Effect of Renal Impairment on the Pharmacokinetics of Pradigastat, a Novel Diacylglycerol Acyltransferase1 (DGAT1) Inhibitor
by
Chen, Jin
,
Rebello, Sam
,
Meyers, Dan
in
Acetates - administration & dosage
,
Acetates - pharmacokinetics
,
Acetates - urine
2015
Background and Objective
Pradigastat, a diacylglycerol acyltransferase1 inhibitor, is being developed for the treatment of familial chylomicronemia syndrome. The primary objective of this clinical study was to evaluate the effect of renal impairment on the pharmacokinetics of pradigastat.
Methods
In an open-label, parallel-group study, the single-dose (40 mg) pharmacokinetics of pradigastat were evaluated in patients with mild (
n
= 9), moderate (
n
= 10) and severe renal impairment (
n
= 9) compared with matched healthy subjects (
n
= 28). The protein binding and urinary excretion of pradigastat were also assessed in this study.
Results
In patients with mild and moderate renal impairment the geometric means of the maximum plasma concentration (
C
max
) and the area under the plasma concentration–time curve from time zero to infinity (AUC
inf
) of pradigastat were similar as compared with healthy subjects. In patients with severe renal impairment, the geometric means of the
C
max
and AUC
inf
increased by 40 % [geometric mean ratio 1.41; 90 % confidence interval (CI) 0.92–2.14] and 18 % (geometric mean ratio 1.18; 90 % CI 0.68–2.05), respectively. There was no significant correlation between renal function (measured by creatinine clearance) and
C
max
or AUC
inf
. Protein binding values were >99 % and the urinary excretion of pradigastat was minimal in all subjects. There were no severe adverse events in the study and mild transient diarrhoea was the most common adverse event. The safety profile was similar between patients with renal impairment and healthy subjects.
Conclusion
There was no change in the pharmacokinetics of pradigastat in patients with mild and moderate renal impairment. In patients with severe renal impairment, the mean exposure
C
max
and AUC
inf
of pradigastat were increased by 40 and 18 %, respectively.
Journal Article
A disordered acidic domain in GPIHBP1 harboring a sulfated tyrosine regulates lipoprotein lipase
by
Ploug, Michael
,
Kragelund, Birthe B.
,
Midtgaard, Søren Roi
in
Acidity
,
Angiopoietin-like 4 Protein - chemistry
,
Angiopoietin-like 4 Protein - genetics
2018
The intravascular processing of triglyceride-rich lipoproteins depends on lipoprotein lipase (LPL) and GPIHBP1, a membrane protein of endothelial cells that binds LPL within the subendothelial spaces and shuttles it to the capillary lumen. In the absence of GPIHBP1, LPL remains mislocalized within the subendothelial spaces, causing severe hypertriglyceridemia (chylomicronemia). The N-terminal domain of GPIHBP1, an intrinsically disordered region (IDR) rich in acidic residues, is important for stabilizing LPL’s catalytic domain against spontaneous and ANGPTL4-catalyzed unfolding. Here, we define several important properties of GPIHBP1’s IDR. First, a conserved tyrosine in the middle of the IDR is posttranslationally modified by O-sulfation; this modification increases both the affinity of GPIHBP1–LPL interactions and the ability of GPIHBP1 to protect LPL against ANGPTL4-catalyzed unfolding. Second, the acidic IDR of GPIHBP1 increases the probability of a GPIHBP1–LPL encounter via electrostatic steering, increasing the association rate constant (k
on) for LPL binding by >250-fold. Third, we show that LPL accumulates near capillary endothelial cells even in the absence of GPIHBP1. In wild-type mice, we expect that the accumulation of LPL in close proximity to capillaries would increase interactions with GPIHBP1. Fourth, we found that GPIHBP1’s IDR is not a key factor in the pathogenicity of chylomicronemia in patients with the GPIHBP1 autoimmune syndrome. Finally, based on biophysical studies, we propose that the negatively charged IDR of GPIHBP1 traverses a vast space, facilitating capture of LPL by capillary endothelial cells and simultaneously contributing to GPIHBP1’s ability to preserve LPL structure and activity.
Journal Article
Clinical and Preclinical Pharmacokinetics and Pharmacodynamics of Mipomersen (Kynamro®): A Second-Generation Antisense Oligonucleotide Inhibitor of Apolipoprotein B
by
Geary, Richard S.
,
Crooke, Stanley T.
,
Baker, Brenda F.
in
Animals
,
Anticholesteremic Agents - chemistry
,
Anticholesteremic Agents - pharmacokinetics
2015
Mipomersen (Kynamro
®
), a second-generation 2′-
O
-methoxyethyl chimeric antisense oligonucleotide (ASO), inhibits the synthesis of apolipoprotein B (apoB) and is indicated in the US as an adjunct therapy for homozygous familial hypercholesterolemia (HoFH) at a dose of 200 mg subcutaneously (SC) once weekly. The pharmacokinetic (PK) properties of mipomersen are generally consistent across all species studied, including mouse, rat, monkey, and humans. After SC administration, mipomersen is rapidly and extensively absorbed. It has an apparent plasma and tissue terminal elimination half-life of approximately 30 days. Mipomersen achieves steady-state tissue concentrations within approximately 4–6 months of once-weekly dosing. It does not exhibit PK-based drug–drug interactions with other concomitant medications, either involving competition for plasma protein binding or alterations in disposition of any evaluated drugs. Furthermore, mipomersen does not prolong the corrected QT (QTc) interval. There have been no ethnic- or gender-related differences in PK observed. In clinical trials, both as a single agent and in the presence of maximal lipid-lowering therapy, mipomersen has demonstrated significant dose-dependent reductions in all measured apoB-containing atherogenic lipoproteins. Overall, mipomersen has well-characterized PK and pharmacodynamic properties in both animals and humans, and is an efficacious adjunct treatment for patients with HoFH.
Journal Article
A Novel APOC2 Missense Mutation Causing Apolipoprotein C-II Deficiency With Severe Triglyceridemia and Pancreatitis
by
Escobar, Maria del Rosario
,
Burke, Frances
,
deGoma, Emil
in
Adult
,
African Continental Ancestry Group
,
Apolipoprotein C-II - deficiency
2017
Context:Familial chylomicronemia syndrome (FCS) is a rare heritable disorder associated with severe hypertriglyceridemia and recurrent pancreatitis. Lipoprotein lipase deficiency and apolipoprotein C-II deficiency are two well-characterized autosomal recessive causes of FCS, and three other genes have been described to cause FCS. Because therapeutic approaches can vary according to the underlying etiology, it is important to establish the molecular etiology of FCS.Case Description:A man originally from North Africa was referred to the University of Pennsylvania Lipid Clinic for severe hypertriglyceridemia and recurrent pancreatitis, consistent with the clinical diagnosis of FCS. Molecular analyses of FCS-associated genes revealed a homozygous missense variant R72T in APOC2. Molecular modeling of the variant predicted that the apolipoprotein C-II R72T peptide has reduced lipid binding affinity. In vitro studies of the patient’s plasma confirmed the lack of functional apoC-II activity. Moreover, the apoC-II protein was undetectable in the patient’s plasma, quantitatively as well as qualitatively.Conclusions:We identified a missense APOC2 variant causing apoC-II deficiency in a patient with severe hypertriglyceridemia and recurrent pancreatitis. Beyond dietary management and usual pharmacologic therapies, an apoC-II mimetic peptide may become an optional therapy in patients with apoC-II deficiency in the future.We conducted genetic and functional assays from patient with severe hypertriglyceridemia and recurrent pancreatitis and found a novel missense APOC2 variant causing apoC-II deficiency.
Journal Article
The burden of familial chylomicronemia syndrome in Canadian patients
by
Gaudet, Daniel
,
Crowson, Caroline
,
Hadker, Nandini
in
Abdomen
,
Acute Disease - epidemiology
,
Acute pancreatitis
2020
Background
Familial chylomicronemia syndrome (FCS) is a rare autosomal recessive disorder characterized by persistent extreme hypertriglyceridemia as a result of lipoprotein lipase deficiency. Canada is an important region for FCS research due to the high prevalence rates. The burden of illness and quality of life of Canadian patients, however, have been inadequately addressed in the literature.
Objective
To understand the burden of illness of FCS on Canadian patients’ lives.
Methods
IN-FOCUS is a global web-based survey open to patients with FCS, including patients in Canada. This survey captured information on diagnostic experience, symptoms, comorbidities, disease management, and impact on multiple life dimensions.
Results
A total of 37 Canadian patients completed the IN-FOCUS survey. Patients saw a mean of 4 physicians before their FCS diagnosis despite 89% reporting an FCS family history. Patients experience multiple physical, emotional, and cognitive symptoms in addition to FCS-related comorbidities. Notably, 35% of those who answered the survey have experienced acute pancreatitis, averaging 14 lifetime episodes per patient. In the preceding 12 months, 46% of patients had an FCS-related hospitalization, averaging 3 nights’ stay. All respondents restricted fat intake, with 27% following an extremely low-fat diet. Despite this, 100% of patients reported fasting TG levels above the normal range. FCS impacted career choice in nearly all patients (97%) and employment status in all patients who were employed part time, disabled, or homemakers, causing many (> 75%) to choose careers below their level of abilities. Furthermore, 2/3 of patients reported FCS had a significant impact on their decision regarding whether to have children. Most report significant interference with their emotional/mental well-being, social relationships, and the majority were concerned about the long-term impact of FCS on their health (89%).
Conclusions
This study provides the first and largest study to investigate the multi-faceted psychosocial and cognitive impacts of FCS on patients. Canadian patients with FCS experience significant multi-faceted burdens that diminish their quality of life, employment opportunities, social relationships, and mental/emotional well-being. These results highlight the need for greater disease awareness, improved clinical diagnosis, broader clinical management for heterogenous symptoms, and more effective treatment options for FCS.
Journal Article
Lipoprotein lipase deficiency in chronic kidney disease is accompanied by down-regulation of endothelial GPIHBP1 expression
by
NI Zhenmin
,
NICHOLAS Susanne B.
,
YUAN Jun
in
Adipose Tissue - metabolism
,
Animals
,
Atherosclerosis
2012
Background
Chronic renal failure (CRF) is associated with hypertriglyceridemia and impaired clearance of very low density lipoprotein (VLDL) and chylomicrons which are largely due to lipoprotein lipase (LPL) deficiency/dysfunction. After its release from myocytes and adipocytes, LPL binds to the endothelium in the adjacent capillaries where it catalyzes hydrolysis of triglycerides in VLDL and chylomicrons. The novel endothelium-derived molecule, glycosylphosphatidylinositol-anchored binding protein 1 (GPIHBP1), plays a critical role in LPL metabolism and function by anchoring LPL to the endothelium and binding chylomicrons. GPIHBP1-deficient mice and humans exhibit severe hypertriglyceridemia and diminished heparin-releasable LPL, pointing to the critical role of GPIHBP1 in regulation of LPL activity. Given its central role in regulation of LPL activity and triglyceride metabolism, we explored the effect of chronic kidney disease (CKD) on GPIHBP1 expression.
Methods
Expression of GPIHBP1 and LPL were determined by reverse transcriptase-polymerase chain reaction, Western blot and immunohistochemical analyses in the adipose tissue, skeletal muscle and myocardium of rats 12 weeks after 5/6 nephrectomy (CRF) or sham-operation (control).
Results
Compared to the controls, the CRF group exhibited severe hypertriglyceridemia, significant reduction of the skeletal muscle, myocardium and adipose tissue LPL mRNA and protein abundance. This was accompanied by parallel reductions of GPIHBP1 mRNA abundance and immunostaining in the tested tissues.
Conclusions
LPL deficiency in CKD is associated with and compounded by GPIHBP1 deficiency. Together these abnormalities contribute to impaired clearance of triglyceride-rich lipoproteins, diminished availability of lipid fuel for energy storage in adipocytes and energy production in myocytes and consequent hypertriglyceridemia, cachexia, muscle weakness and atherosclerosis.
Journal Article
Cell therapy could be a potential way to improve lipoprotein lipase deficiency
by
Li, Shuncai
,
Zheng, Libin
,
Zhang, Jin
in
Adipocytes
,
Adipocytes - cytology
,
Adipocytes - metabolism
2017
Background
Lipoprotein lipase (LPL) deficiency is an autosomal recessive genetic disorder characterized by extreme hypertriglyceridemia, with no cure presently available. The purpose of this study was to test the possibility of using cell therapy to alleviate LPL deficiency.
Methods
The LPL coding sequence was cloned into the MSCV retrovirus vector, after which MSCV-hLPL and MSCV (empty construct without LPL coding sequence) virion suspensions were made using the calcium chloride method. A muscle cell line (C2C12), kidney cell line (HEK293T) and pre-adipocyte cell line (3 T3-L1) were transfected with the virus in order to express recombinant LPL in vitro. Finally, each transfected cell line was injected subcutaneously into nude mice to identify the cell type which could secret recombinant LPL in vivo. Control cells were transfected with the MSCV empty vector. LPL activity was analyzed using a radioimmunoassay.
Results
After virus infection, the LPL activity at the cell surface of each cell type was significantly higher than in the control cells, which indicates that all three cell types can be used to generate functional LPL. The transfected cells were injected subcutaneously into nude mice, and the LPL activity of the nearby muscle tissue at the injection site in mice injected with 3 T3-L1 cells was more than 5 times higher at the injection sites than at non-injected control sites. The other two types of cells did not show this trend.
Conclusion
The subcutaneous injection of adipocytes overexpressing LPL can improve the LPL activity of the adjacent tissue of nude mice. This is a ground-breaking preliminary study for the treatment of LPL deficiency, and lays a good foundation for using cell therapy to correct LPL deficiency.
Journal Article
Mipomersen, an apolipoprotein B synthesis inhibitor, for lowering of LDL cholesterol concentrations in patients with homozygous familial hypercholesterolaemia: a randomised, double-blind, placebo-controlled trial
by
Blom, Dirk J
,
Charng, Min-Ji
,
Tan, Ju L
in
Adult
,
Alanine Transaminase - metabolism
,
Anticholesteremic Agents - adverse effects
2010
Homozygous familial hypercholesterolaemia is a rare genetic disorder in which both LDL-receptor alleles are defective, resulting in very high concentrations of LDL cholesterol in plasma and premature coronary artery disease. This study investigated whether an antisense inhibitor of apolipoprotein B synthesis, mipomersen, is effective and safe as an adjunctive agent to lower LDL cholesterol concentrations in patients with this disease.
This randomised, double-blind, placebo-controlled, phase 3 study was undertaken in nine lipid clinics in seven countries. Patients aged 12 years and older with clinical diagnosis or genetic confirmation of homozygous familial hypercholesterolaemia, who were already receiving the maximum tolerated dose of a lipid-lowering drug, were randomly assigned to mipomersen 200 mg subcutaneously every week or placebo for 26 weeks. Randomisation was computer generated and stratified by weight (<50 kg
vs ≥50 kg) in a centralised blocked randomisation, implemented with a computerised interactive voice response system. All clinical, medical, and pharmacy personnel, and patients were masked to treatment allocation. The primary endpoint was percentage change in LDL cholesterol concentration from baseline. Analysis was by intention to treat. This trial is registered with
ClinicalTrials.gov, number
NCT00607373.
34 patients were assigned to mipomersen and 17 to placebo; data for all patients were analysed. 45 patients completed the 26-week treatment period (28 mipomersen, 17 placebo). Mean concentrations of LDL cholesterol at baseline were 11·4 mmol/L (SD 3·6) in the mipomersen group and 10·4 mmol/L (3·7) in the placebo group. The mean percentage change in LDL cholesterol concentration was significantly greater with mipomersen (−24·7%, 95% CI −31·6 to −17·7) than with placebo (−3·3%, −12·1 to 5·5; p=0·0003). The most common adverse events were injection-site reactions (26 [76%] patients in mipomersen group
vs four [24%] in placebo group). Four (12%) patients in the mipomersen group but none in the placebo group had increases in concentrations of alanine aminotransferase of three times or more the upper limit of normal.
Inhibition of apolipoprotein B synthesis by mipomersen represents a novel, effective therapy to reduce LDL cholesterol concentrations in patients with homozygous familial hypercholesterolaemia who are already receiving lipid-lowering drugs, including high-dose statins.
ISIS Pharmaceuticals and Genzyme Corporation.
Journal Article