Objective: This study aimed to clarify the clinical application of centrifugal-membrane hybrid plasmapheresis (CMHP) in the treatment of hyperlipidemia.
Methods: A retrospective study was conducted on 48 patients who were diagnosed with hyperlipidemia and had received CMHP treatment. Serum total cholesterol (TC), triglycerides (TG), high-density lipoprotein cholesterol (HDL-C), and low-density lipoprotein cholesterol (LDL-C) were monitored, and adverse reactions to the treatment were observed.
Results: Forty-eight patients with hyperlipidemia received CMHP over 59 sessions. The average age of the 48 patients with hyperlipidemia, including 32 males (66.67%) and 16 females (33.33%), was 44.23 ± 12.02 years. Twenty-nine outpatients (60.42%) and 19 inpatients (39.58%) were included. Hypertriglyceridemia was diagnosed in 16 cases (33.33%), mixed hyperlipidemia in 31 cases (64.58%), and hypercholesterolemia in one case (2.08%). The pretreatment blood lipid concentrations were significantly different after the 59 CMHP treatments (p < .001). The concentrations of TC, TG, HDL-C, and LDL-C decreased significantly after the treatment, and the median ratios of reduction were 67.06% (range: 58.97%-71.87%), 63.33% (range: 55.20%-74.86%), 45.87% (range: 35.86%-52.95%), and 66.09% (range: 44.37%-73.94%), respectively. Three adverse reactions (5.08%) were recorded. No differences were detected in therapeutic parameters, effects, or adverse reactions between the two blood cell separators, there was no difference in Lipoprotein apheresis efficacy.
Conclusion: This preliminary study demonstrated the clinical application of CMHP in patients in the treatment of hyperlipidemia. However, further studies are needed applying CMHP with hyperlipidemia.
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JMIR Med Inform
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INSERM U1064, CR2TI - Center for Research in Transplantation and Translational Immunology, Nantes University, 30 Bd Jean Monnet, Nantes, 44093, France, 33 2 40 08 74 10.
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Black Dog Institute, University of New South Wales, Sydney, NSW, Australia.
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N7-methylguanosine (m7G) is an important RNA modification involved in epigenetic regulation that is commonly observed in both prokaryotic and eukaryotic organisms. Their influence on the synthesis and processing of messenger RNA, ribosomal RNA, and transfer RNA allows m7G modifications to affect diverse cellular, physiological, and pathological processes. m7G modifications are pivotal in human diseases, particularly cancer progression.
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