Uptake of type III hypertriglyceridemic VLDL by macrophages is enhanced by oxidation, especially after remnant formation

被引:53
|
作者
Whitman, SC
Miller, DB
Wolfe, BM
Hegele, RA
Huff, MW
机构
[1] UNIV WESTERN ONTARIO,ROBARTS RES INST,LONDON,ON N6A 5K8,CANADA
[2] UNIV WESTERN ONTARIO,DEPT MED,LONDON,ON N6A 5K8,CANADA
[3] UNIV WESTERN ONTARIO,DEPT BIOCHEM,LONDON,ON N6A 5K8,CANADA
[4] UNIV TORONTO,ST MICHAELS HOSP,DEPT MED,TORONTO,ON M5B 1W8,CANADA
关键词
type III HLP; VLDL; remnants; oxidation; foam cells;
D O I
10.1161/01.ATV.17.9.1707
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We previously showed that hypertriglyceridemic VLDL (HTG-VLDL, Sf 60 to 400) from subjects with type III (E2/E2) hyperlipoproteinemia do not induce appreciable cholesteryl ester (CE) accumulation in cultured macrophages (J774A.1). In the present study, we examined whether oxidation of type III HTG-VLDL would enhance their uptake by J774A.1 cells, Type III HTG-VLDL were oxidized as measured by both conjugated-diene formation and increased electrophoretic mobility on agarose gels. Both LDL and type III HTG-VLDL undergo oxidation, albeit under different kinetic parameters. From the conjugated-diene curve, type III HTG-VLDL, compared with LDL, were found to have a 6-fold longer lag lime, to take 6-fold longer to reach maximal diene production, and to produce a 2-fold greater amount of dienes but at half the rate (all P<.005). Incubation of macrophages with either native type III HTG-VLDL or LDL (50 mu g lipoprotein cholesterol/mL media for 16 hours) caused small increases (4-fold and 2.7-fold, respectively) in cellular CE levels relative to control cells (both P=.0001). After 24 hours of CuSO4 exposure, we found that oxidized type III HTG-VLDL and LDL caused a 9.4-fold and 10.5-fold increase, respectively, in cellular CE levels (P=.0001). We next examined whether extending the exposure period for type III HTG-VLDL to CuSO4 beyond 24 hours would further enhance its ability to induce macrophage CE accumulation. After 48 hours of CuSO4 exposure, type III HTG-VLDL and LDL caused 21.3-fold and 11.6-fold increases, respectively, in cellular CE levels (P=.0001). The cellular CE loading achieved with 48 hour-oxidized type III HTG-VLDL was significantly higher than either 24 hour-oxidized type III HTG-VLDL (2.3-fold, P=.003) or 48 hour-oxidized LDL (1.8-fold, P=.012). There was no significant difference between the CE loading achieved by incubation of cells with either 24 hour-oxidized type III HTG-VLDL, 24 hour-oxidized LDL, or 48 hour-oxidized LDL (P greater than or equal to.518). In this study, we also examined whether partial lipolysis (19% to 50% triglyceride hydrolysis) of type III HTG-VLDL to produce remnants would increase the susceptibility of the lipoprotein to oxidative modification and subsequent cellular CE loading. Forty-eight hour-oxidized type III VLDL-remnants stimulated CE accumulation 30.4-fold over baseline (P=.0001). In contrast, nonoxidized type III VLDL remnants caused the same very low level of CE loading as did native type III HTG-VLDL (P=.680). The increase in cellular CE levels achieved with 48 hour-oxidized type III VLDL remnants was significantly higher than that achieved with 48 hour-oxidized type III HTG-VLDL (P=.047). In conclusion, we have shown that oxidized type III HTG-VLDL will induce macrophage CE accumulation well above levels achieved with oxidized LDL. In addition, we also showed that by forming a VLDL-remnant before oxidative modification, we can further enhance macrophage CE accumulation. These results provide a potential mechanism for the atherogenicity of type III HTG-VLDL and their remnants.
引用
收藏
页码:1707 / 1715
页数:9
相关论文
共 48 条
  • [21] Naringenin inhibits macrophage foam cell formation induced by cholesteryl ester-rich VLDL through inhibition of lipoprotein uptake and enhanced cholesterol efflux
    Argmann, CA
    Borradaile, NM
    Geraghty, K
    Hegele, RA
    Huff, MW
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2002, 22 (05) : A34 - A34
  • [22] The replication of human immunodeficiency virus type 1 in macrophages is enhanced after phagocytosis of apoptotic cells
    Lima, RG
    Van Weyenbergh, J
    Saraiva, EMB
    Barral-Netto, M
    Galvao-Castro, B
    Bou-Habib, DC
    JOURNAL OF INFECTIOUS DISEASES, 2002, 185 (11): : 1561 - 1566
  • [23] Enhanced macrophage uptake of lipoprotein(a) after Ca2+-induced aggregate-formation
    Tanaka, S
    Yashiro, A
    Tasaki, H
    Nakashima, Y
    LIPIDS, 1998, 33 (04) : 385 - 392
  • [24] Serum from type IV hypertriglyceridemic subjects enhanced greater cholesterol removal from ABCA1-expressing and cholesterol loaded J774 macrophages
    Fournier, N.
    Attia-Skhiri, N.
    Cambillau, M.
    Simon, A.
    Paul, J-L.
    ATHEROSCLEROSIS SUPPLEMENTS, 2007, 8 (01) : 25 - 25
  • [26] THE SPECIFIC TYPE-III AND TYPE-IV PHOSPHODIESTERASE INHIBITOR ZARDAVERINE SUPPRESSES FORMATION OF TUMOR-NECROSIS-FACTOR BY MACROPHAGES
    SCHADE, FU
    SCHUDT, C
    EUROPEAN JOURNAL OF PHARMACOLOGY, 1993, 230 (01) : 9 - 14
  • [27] Case Report: Pseudotendon Formation after a Type III Flexor Digitorum Profundus Avulsion
    Pappas, Nick
    Gay, A. Nicolas
    Major, Nancy
    Bozentka, David
    CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 2011, 469 (08) : 2385 - 2388
  • [28] Regeneration after radiation and T cell-induced tissue injury is not enhanced by type III interferon
    Fischer, J.
    Lin, C.
    Heidegger, S.
    Wintges, A.
    Schlapschy, M.
    Beudert, M.
    Combs, S. E.
    Bassermann, F.
    Skerra, A.
    Haas, T.
    Poeck, H.
    RADIOTHERAPY AND ONCOLOGY, 2019, 133 : S188 - S188
  • [29] Immune complex formation after xenotransplantation -: Evidence of type III as well as type II immune reactions provide clues to pathophysiology
    Holzknecht, ZE
    Coombes, S
    Blocher, BA
    Plummer, TB
    Bustos, M
    Lau, CL
    Davis, RD
    Platt, JL
    AMERICAN JOURNAL OF PATHOLOGY, 2001, 158 (02): : 627 - 637
  • [30] Regeneration After Radiation- and Immune-Mediated Tissue Injury Is Not Enhanced by Type III Interferon Signaling
    Fischer, Julius C.
    Lin, Chia-Ching
    Heidegger, Simon
    Wintges, Alexander
    Schlapschy, Martin
    Beudert, Matthias
    Combs, Stephanie E.
    Bassermann, Florian
    Skerra, Arne
    Haas, Tobias
    Poeck, Hendrik
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2019, 103 (04): : 970 - 976