Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a

Antigen and collagen-induced arthritis (ACIA) is animal model of rheumatoid arthritis. The aim of this study was to identify the effect of different doses of hyperbaric oxygen (HBO) exposure in reducing inflammation on ACIA through analysis hypoxia inducible factor-1α (HIF-1α), anticyclic citrullina...

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Main Authors: Titut Harnanik, Sapta Prihartono, Tedy Juliandhy
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Infectious Disease Reports
Subjects:
Online Access:https://www.pagepress.org/journals/index.php/idr/article/view/8766
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author Titut Harnanik
Sapta Prihartono
Tedy Juliandhy
author_facet Titut Harnanik
Sapta Prihartono
Tedy Juliandhy
author_sort Titut Harnanik
collection DOAJ
description Antigen and collagen-induced arthritis (ACIA) is animal model of rheumatoid arthritis. The aim of this study was to identify the effect of different doses of hyperbaric oxygen (HBO) exposure in reducing inflammation on ACIA through analysis hypoxia inducible factor-1α (HIF-1α), anticyclic citrullinated peptide antibody (ACPA) and interleukine 17a (IL-17a). 24 male Balb/C mice were divided into 3 groups, 8 mice did not receive HBO exposure as a control group (G1) and 16 mice received HBO exposure as treatment group (G2 and G3). G2 was ACIA which was exposed to HBO 2.4 ATA O2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 10 consecutive days. G3 was ACIA which was exposed to HBO 2.4 ATA O2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 5 consecutive days, break 5 days, 5 consecutive days. ACPA and IL-17a were measured by enzyme-linked immunosorbent assay (ELISA) technique. The expression of HIF-1α was measured by immunohistochemistry technique. There was significant decrease of ACPA levels, IL-17a levels and HIF-1α expression (P< 0.05) in G2 and G3 compared to G1. There was not significant decrease of ACPA levels (P> 0.05), there was significant decrease of IL-17a levels and HIF-1α expression (P<0.05) in G2 compared to G3. G2 was a group with a higher oxygen partial pressure than G3. HBO 2.4 ATAO2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 10 consecutive days more effective in reducing inflammation than exposure 5 consecutive days, break 5 days, 5 consecutive days in ACIA. HBO has therapeutic potential for the treatment of RA.
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spelling doaj.art-5c2c333253b149a88f0fbaa97bd259e62022-12-21T23:50:10ZengMDPI AGInfectious Disease Reports2036-74302036-74492020-07-01121s10.4081/idr.2020.8766Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17aTitut Harnanik0Sapta Prihartono1Tedy Juliandhy2Department of Hyperbaric, Drs. Med. R. Rijadi S., Phys. Naval Health Institute, Indonesian Navy; Department of Doctoral Program, Medical Faculty, Airlangga UniversityDepartment of Hyperbaric, Drs. Med. R. Rijadi S., Phys. Naval Health Institute, Indonesian Navy; Department of Doctoral Program, Medical Faculty, Airlangga UniversityDepartment of Electrical Engineering, Marine Faculty, Hang Tuah University, SurabayaAntigen and collagen-induced arthritis (ACIA) is animal model of rheumatoid arthritis. The aim of this study was to identify the effect of different doses of hyperbaric oxygen (HBO) exposure in reducing inflammation on ACIA through analysis hypoxia inducible factor-1α (HIF-1α), anticyclic citrullinated peptide antibody (ACPA) and interleukine 17a (IL-17a). 24 male Balb/C mice were divided into 3 groups, 8 mice did not receive HBO exposure as a control group (G1) and 16 mice received HBO exposure as treatment group (G2 and G3). G2 was ACIA which was exposed to HBO 2.4 ATA O2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 10 consecutive days. G3 was ACIA which was exposed to HBO 2.4 ATA O2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 5 consecutive days, break 5 days, 5 consecutive days. ACPA and IL-17a were measured by enzyme-linked immunosorbent assay (ELISA) technique. The expression of HIF-1α was measured by immunohistochemistry technique. There was significant decrease of ACPA levels, IL-17a levels and HIF-1α expression (P< 0.05) in G2 and G3 compared to G1. There was not significant decrease of ACPA levels (P> 0.05), there was significant decrease of IL-17a levels and HIF-1α expression (P<0.05) in G2 compared to G3. G2 was a group with a higher oxygen partial pressure than G3. HBO 2.4 ATAO2 100% 90 minutes divided by 3 each 30 minutes intervals 2 times 5 minutes breathing with normal air for 10 consecutive days more effective in reducing inflammation than exposure 5 consecutive days, break 5 days, 5 consecutive days in ACIA. HBO has therapeutic potential for the treatment of RA.https://www.pagepress.org/journals/index.php/idr/article/view/8766HBOACIAHIF-1αACPAIL-17a
spellingShingle Titut Harnanik
Sapta Prihartono
Tedy Juliandhy
Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
Infectious Disease Reports
HBO
ACIA
HIF-1α
ACPA
IL-17a
title Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
title_full Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
title_fullStr Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
title_full_unstemmed Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
title_short Hyperbaric oxygen in animal model of rheumatoid arthritis: Analysis of HIF-1α, ACPA and IL-17a
title_sort hyperbaric oxygen in animal model of rheumatoid arthritis analysis of hif 1α acpa and il 17a
topic HBO
ACIA
HIF-1α
ACPA
IL-17a
url https://www.pagepress.org/journals/index.php/idr/article/view/8766
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AT saptaprihartono hyperbaricoxygeninanimalmodelofrheumatoidarthritisanalysisofhif1aacpaandil17a
AT tedyjuliandhy hyperbaricoxygeninanimalmodelofrheumatoidarthritisanalysisofhif1aacpaandil17a