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Askorbat i mänsklig skelettmuskulatur reagerar starkt på förändringar i C-vitaminintag och plasmakoncentrationer

Anitra C Carr, Stephanie M Bozonet, Juliet M Pullar, Jeremy W Simcock, Margreet C M Vissers
Nyckelinsikter
  1. 01Skelettmuskulaturen tar lätt upp C-vitamin från kosten
  2. 02Muskelns C-vitaminnivåer ökade 3,5 gånger med daglig kiwi
  3. 03Muskeln svarar starkare på C-vitaminintag än leukocyter
  4. 04Lågt C-vitaminintag kan snabbt tömma muskelns förråd

Skelettmuskelns C-vitaminnivåer är mycket känsliga för kostintag och ökar mer än nivåerna i vita blodkroppar.

Abstract

Background: Vitamin C (ascorbate) is likely to be essential for skeletal muscle structure and function via its role as an enzyme cofactor for collagen and carnitine biosynthesis. Vitamin C may also protect these metabolically active cells from oxidative stress.

Objective: We investigated the bioavailability of vitamin C to human skeletal muscle in relation to dietary intake and plasma concentrations and compared this relation with ascorbate uptake by leukocytes.

Design: Thirty-six nonsmoking men were randomly assigned to receive 6 wk of 0.5 or 2 kiwifruit/d, an outstanding dietary source of vitamin C. Fasting blood samples were drawn weekly, and 24-h urine and leukocyte samples were collected before intervention, after intervention, and after washout. Needle biopsies of skeletal muscle (vastus lateralis) were carried out before and after intervention.

Results: Baseline vastus lateralis ascorbate concentrations were ~16 nmol/g tissue. After intervention with 0.5 or 2 kiwifruit/d, these concentrations increased ~3.5-fold to 53 and 61 nmol/g, respectively. There was no significant difference between the responses of the 2 groups. Mononuclear cell and neutrophil ascorbate concentrations increased only ~1.5- and ~2-fold, respectively. Muscle ascorbate concentrations were highly correlated (P < 0.001) with dietary intake (R = 0.61) and plasma concentrations (R = 0.75) in the range from 5 to 80 μmol/L.

Conclusions: Human skeletal muscle is highly responsive to vitamin C intake and plasma concentrations and exhibits a greater relative uptake of ascorbate than leukocytes. Thus, muscle appears to comprise a relatively labile pool of ascorbate and is likely to be prone to ascorbate depletion with inadequate dietary intake.

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APA
Anitra C Carr, Stephanie M Bozonet, Juliet M Pullar, Jeremy W Simcock, & Margreet C M Vissers (2013). Askorbat i mänsklig skelettmuskulatur reagerar starkt på förändringar i C-vitaminintag och plasmakoncentrationer. https://fasciaresearchdatabase.com/human-skeletal-muscle-ascorbate-is-highly-responsive-to-changes-in-vitamin-c-intake-and-plasma-concentrations/
MLA
Anitra C Carr, et al. "Askorbat i mänsklig skelettmuskulatur reagerar starkt på förändringar i C-vitaminintag och plasmakoncentrationer." 2013, https://fasciaresearchdatabase.com/human-skeletal-muscle-ascorbate-is-highly-responsive-to-changes-in-vitamin-c-intake-and-plasma-concentrations/.
Chicago
Anitra C Carr et al. 2013. "Askorbat i mänsklig skelettmuskulatur reagerar starkt på förändringar i C-vitaminintag och plasmakoncentrationer.". https://fasciaresearchdatabase.com/human-skeletal-muscle-ascorbate-is-highly-responsive-to-changes-in-vitamin-c-intake-and-plasma-concentrations/