A Proton-Coupled Transport System for β-Hydroxy-β-Methylbutyrate (HMB) in Blood-Brain Barrier Endothelial Cell Line hCMEC/D3

被引:6
|
作者
Higuchi, Kei [1 ]
Sivaprakasam, Sathish [1 ]
Sennoune, Souad R. [1 ]
Ogura, Jiro [1 ]
Bhutia, Yangzom D. [1 ]
Rueda, Ricardo [2 ]
Pereira, Suzette L. [3 ]
Ganapathy, Vadivel [1 ]
机构
[1] Texas Tech Univ, Dept Cell Biol & Biochem, Hlth Sci Ctr, 3601 4th St, Lubbock, TX 79430 USA
[2] Abbott Nutr, Res & Dev, Granada 18004, Spain
[3] Abbott Nutr, Res & Dev, Columbus, OH 43219 USA
关键词
beta-hydroxy-beta-methylbutyrate; MCT1 (SLC16A1); MCT4 (SLC16A3); LAT1 (SLC7A5); mTOR; blood-brain barrier; MONOCARBOXYLATE TRANSPORTERS; ACID TRANSPORTERS; LACTATE; FAMILY; IDENTIFICATION; PERFORMANCE; INHIBITION; RECEPTORS; BUTYRATE; HEALTH;
D O I
10.3390/nu13093220
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
beta-Hydroxy-beta-methylbutyrate (HMB), a leucine metabolite, is used as a nutritional ingredient to improve skeletal muscle health. Preclinical studies indicate that this supplement also elicits significant benefits in the brain; it promotes neurite outgrowth and prevents age-related reductions in neuronal dendrites and cognitive performance. As orally administered HMB elicits these effects in the brain, we infer that HMB crosses the blood-brain barrier (BBB). However, there have been no reports detailing the transport mechanism for HMB in BBB. Here we show that HMB is taken up in the human BBB endothelial cell line hCMEC/D3 via H+-coupled monocarboxylate transporters that also transport lactate and beta-hydroxybutyrate. MCT1 (monocarboxylate transporter 1) and MCT4 (monocarboxylate transporter 4) belonging to the solute carrier gene family SLC16 (solute carrier, gene family 16) are involved, but additional transporters also contribute to the process. HMB uptake in BBB endothelial cells results in intracellular acidification, demonstrating cotransport with H+. Since HMB is known to activate mTOR with potential to elicit transcriptomic changes, we examined the influence of HMB on the expression of selective transporters. We found no change in MCT1 and MCT4 expression. Interestingly, the expression of LAT1 (system L amino acid transporter 1), a high-affinity transporter for branched-chain amino acids relevant to neurological disorders such as autism, is induced. This effect is dependent on mTOR (mechanistic target of rapamycine) activation by HMB with no involvement of histone deacetylases. These studies show that HMB in systemic circulation can cross the BBB via carrier-mediated processes, and that it also has a positive influence on the expression of LAT1, an important amino acid transporter in the BBB.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Sulfasalazine maintains blood-brain barrier integrity and relieves lipopolysaccharide-induced inflammation in hCMEC/D3 cells
    Chang, Sheng
    Cao, Yang
    NEUROREPORT, 2021, 32 (08) : 672 - 677
  • [32] ABC and SLC Transporter Expression and Proton Oligopeptide Transporter (POT) Mediated Permeation across the Human Blood-Brain Barrier Cell Line, hCMEC/D3 (vol 7, pg 1057, 2010)
    Carl, Stephen M.
    Lindley, David J.
    Das, Debanjan
    Couraud, Pierre O.
    Weksler, Babette B.
    Romero, Ignacio
    Mowery, Stephanie A.
    Knipp, Gregory T.
    MOLECULAR PHARMACEUTICS, 2012, 9 (12) : 3606 - 3606
  • [33] Pharmacophore-Based Discovery of Substrates of a Novel Drug/Proton-Antiporter in the Human Brain Endothelial hCMEC/D3 Cell Line
    Smirnova, Maria
    Goracci, Laura
    Cruciani, Gabriele
    Federici, Laetitia
    Decleves, Xavier
    Chapy, Helene
    Cisternino, Salvatore
    PHARMACEUTICS, 2022, 14 (02)
  • [34] Transcytosis of payloads that are non-covalently complexed to bispecific antibodies across the hCMEC/D3 blood-brain barrier model
    Schmid, Daniela
    Buntz, Annette
    Thi Ngoc Hanh Phan
    Mayer, Klaus
    Hoffmann, Eike
    Thorey, Irmgard
    Niewoehner, Jens
    Vasters, Katrin
    Sircar, Ranjan
    Mundigl, Olaf
    Kontermann, Roland E.
    Brinkmann, Ulrich
    BIOLOGICAL CHEMISTRY, 2018, 399 (07) : 711 - 721
  • [35] Functional Expression of Organic Cation/carnitine Transporter 2 (OCTN2/SLC22A5) in Human Brain Capillary Endothelial Cell Line hCMEC/D3, a Human Blood-brain Barrier Model
    Okura, Takashi
    Kato, Sayaka
    Deguchi, Yoshiharu
    DRUG METABOLISM AND PHARMACOKINETICS, 2014, 29 (01) : 69 - 74
  • [36] Involvement of a proton-coupled organic cation antiporter in the blood-brain barrier transport of amantadine (vol 37, pg 323, 2016)
    Suzuki, T.
    Aoyama, T.
    Suzuki, N.
    Kobayashi, M.
    Fukami, T.
    Matsumoto, Y.
    Tomono, K.
    BIOPHARMACEUTICS & DRUG DISPOSITION, 2016, 37 (08) : 507 - 507
  • [37] A face-to-face comparison of claudin-5 transduced human brain endothelial (hCMEC/D3) cells with porcine brain endothelial cells as blood–brain barrier models for drug transport studies
    Birthe Gericke
    Kerstin Römermann
    Andreas Noack
    Sandra Noack
    Jessica Kronenberg
    Ingolf Ernst Blasig
    Wolfgang Löscher
    Fluids and Barriers of the CNS, 17
  • [38] Cytokine induced shedding of fractalkine from human brain endothelial cell line, hCMEC/D3: Implications for multiple sclerosis
    Hurst, Louise
    Bunning, Rowena
    Sharrack, Basil
    Woodroofe, Nicola
    JOURNAL OF NEUROIMMUNOLOGY, 2008, 203 (02) : 146 - 147
  • [39] In vitro characterization of taurine transport using the human brain microvascular endothelial cell line as a human blood-brain barrier model
    Tega, Yuma
    Kawauchi, Yusuke
    Akanuma, Shin-ichi
    Inagaki, Mai
    Tachikawa, Masanori
    Hosoya, Ken-ichi
    DRUG METABOLISM AND PHARMACOKINETICS, 2025, 61
  • [40] ABC and SLC Transporter Expression and Pot Substrate Characterization across the Human CMEC/D3 Blood-Brain Barrier Cell Line
    Carl, Stephen M.
    Lindley, David J.
    Couraud, Pierre O.
    Weksler, Babette B.
    Romero, Ignacio
    Mowery, Stephanie A.
    Knipp, Gregory T.
    MOLECULAR PHARMACEUTICS, 2010, 7 (04) : 1057 - 1068