Key result
Double-filtration plasmapheresis significantly reduced median total cholesterol from 8.2 mM to 2.4 mM and downregulated lipid metabolism, ER stress, and apoptosis-related proteins in PBMCs.
Why the study?
Therapy with lipid-lowering drugs often results in side effects, prompting investigation into non-drug therapy with double-filtration plasmapheresis in hyperlipidemia patients.
Does double-filtration plasmapheresis improve lipid profiles and reduce cellular stress and inflammation in peripheral blood mononuclear cells in patients with hyperlipidemia?
Observational (n=35)
No
Does double-filtration plasmapheresis improve lipid profiles and reduce cellular stress and inflammation in peripheral blood mononuclear cells in patients with hyperlipidemia?
Absolute Event Rate: 2.4% vs 8.2%
p-value: p=<0.01
Double-filtration plasmapheresis effectively lowers atherogenic lipids and reduces cellular stress and inflammatory markers in patients with hyperlipidemia.
May support adjunctive non-pharmacological strategies in CHD dyslipidemia; leaves open confirmation via prospective randomized trials.
Background: Hyperlipidemia {hypercholesterolemia [cholesterol >5.18 mmol/L) or hypertriglyceridemia [triglycerides >2.3 mmol/L], mixed hyperlipidemia [cholesterol >5.18 mmol/L and triglycerides >2.3 mmol/L], and high low-density lipoproteinemia [low-density lipoprotein (LDL) >3.4 mmol/L]} is a strong risk factor for arteriosclerosis and cardiovascular disease (CVD). Therapy with lipid-lowering drugs often results in many side effects. Our study aimed to investigate the potential effects of non-drug therapy with double-filtration plasmapheresis (DFPP) on lipid metabolism-, endoplasmic reticulum (ER) stress-, and apoptosis-related proteins in peripheral blood mononuclear cells (PBMCs) before and after lipid clearance in patients with hyperlipidemia. Methods: Thirty-five hyperlipidemia patients were selected. Proteins related to lipid metabolism [CD36, proprotein convertase subtilisin/kexin type 9 (PCSK9), and LDL receptor], ER stress [glucose-regulated protein 78 (Grp78), C/EBP homologous protein (CHOP), activating transcription factor 4 (ATF4), and eukaryotic initiation factor 2α (EIF2α)], and apoptosis [B-cell lymphoma-2 (Bcl-2), Bcl-2-associated X protein (BAX), and cysteinyl aspartate specific proteinase-3 (Caspase-3)] were assayed by Western blot, reactive oxygen species (ROS) were measured by flow cytometry (FCM), and ELISA detected serum inflammatory [interleukin (IL)-1β, IL-6, and tumor necrosis factor α (TNF-α)] factors. Results: Compared with their pre-DFPP values, the values of most lipid metabolic parameters, such as cholesterol, triglycerides, LDL, lipoprotein a [Lp(a)], and small dense LDL (sdLDL) cholesterol, were reduced after DFPP. DFPP was associated with the downregulation of proteins related to lipid metabolism, ER stress, and apoptosis, resulting in decreased ROS and serum inflammatory factor release. Conclusion: DFPP has lipid-lowering activity and can also regulate lipid metabolism-, ER stress-, and apoptosis-related proteins in PBMCs and reduce the levels of inflammatory factors in patients with hyperlipidemia ( ClinicalTrials.gov number: NCT03491956).
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Zhang et al. (2021) conducted an observational in Hyperlipidemia (n=35). Double-filtration plasmapheresis (DFPP) vs. Pre-DFPP baseline was evaluated on Total cholesterol (mM) (p=<0.01). Double-filtration plasmapheresis significantly reduced median total cholesterol from 8.2 mM to 2.4 mM and downregulated lipid metabolism, ER stress, and apoptosis-related proteins in PBMCs.
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