PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE

Objective. To study features of bioenergetic processes in synovial fluid (SF) in osteoarthritis (OA) and to reveal influence of chondroitin sulfate (Structum) on these processes. Material and methods. SF bioenergetic parameters were analyzed in 15 pts with knee OA receiving structum. SF bioenergetic...

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Main Authors: VI Shishkin, G V Kudryavtseva, A B Ryabkov
Format: Article
Language:Russian
Published: IMA PRESS LLC 2007-10-01
Series:Научно-практическая ревматология
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Online Access:https://rsp.mediar-press.net/rsp/article/view/301
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author VI Shishkin
G V Kudryavtseva
A B Ryabkov
author_facet VI Shishkin
G V Kudryavtseva
A B Ryabkov
author_sort VI Shishkin
collection DOAJ
description Objective. To study features of bioenergetic processes in synovial fluid (SF) in osteoarthritis (OA) and to reveal influence of chondroitin sulfate (Structum) on these processes. Material and methods. SF bioenergetic parameters were analyzed in 15 pts with knee OA receiving structum. SF bioenergetics was assessed with classic enzyme tests and polarographic analysis of oxygen consumption speed by SF cells. Physiological biochemical measures were compared during exacerbation and after treatment. Results. SF pH in OA is significantly shifted to the acidic diapason and bioenergetic processes are transformed with decrease of synovial tissue cells energetic potential (decrease of ATP level and engaging reserve energetic mechanism of creatine phosphate spending). Pharmacological correction of SF cells energetic metabolism can be achieved with chondroprotector structum. Conclusion. SF bioenergetics in OA is changed with glycolysis activation, engaging reserve bioenergetic mechanisms, creatine phosphate catabolism up regulation, and increase of dissociation between respiration and oxidative phosphorylation. pH shift to more acidic zone (from normal 7,4 to 6,85 in OA) is a trigger of OA exacerbation. Substitutive therapy with polyanionic drug structum normalizes SF pH and bioenergetic parameters already after three months.
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institution Matheson Library
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1995-4492
language Russian
publishDate 2007-10-01
publisher IMA PRESS LLC
record_format Article
series Научно-практическая ревматология
spelling doaj-art-a6e7c27f09d2458a824d031bb40828932025-08-04T17:03:50ZrusIMA PRESS LLCНаучно-практическая ревматология1995-44841995-44922007-10-01455242810.14412/1995-4484-2007-17241PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATEVI ShishkinG V KudryavtsevaA B RyabkovObjective. To study features of bioenergetic processes in synovial fluid (SF) in osteoarthritis (OA) and to reveal influence of chondroitin sulfate (Structum) on these processes. Material and methods. SF bioenergetic parameters were analyzed in 15 pts with knee OA receiving structum. SF bioenergetics was assessed with classic enzyme tests and polarographic analysis of oxygen consumption speed by SF cells. Physiological biochemical measures were compared during exacerbation and after treatment. Results. SF pH in OA is significantly shifted to the acidic diapason and bioenergetic processes are transformed with decrease of synovial tissue cells energetic potential (decrease of ATP level and engaging reserve energetic mechanism of creatine phosphate spending). Pharmacological correction of SF cells energetic metabolism can be achieved with chondroprotector structum. Conclusion. SF bioenergetics in OA is changed with glycolysis activation, engaging reserve bioenergetic mechanisms, creatine phosphate catabolism up regulation, and increase of dissociation between respiration and oxidative phosphorylation. pH shift to more acidic zone (from normal 7,4 to 6,85 in OA) is a trigger of OA exacerbation. Substitutive therapy with polyanionic drug structum normalizes SF pH and bioenergetic parameters already after three months.https://rsp.mediar-press.net/rsp/article/view/301phosteoarthritissynovial fluidbioenergeticsphenzyme functional systemschondroitin sulfate
spellingShingle VI Shishkin
G V Kudryavtseva
A B Ryabkov
PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
Научно-практическая ревматология
ph
osteoarthritis
synovial fluid
bioenergetics
ph
enzyme functional systems
chondroitin sulfate
title PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
title_full PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
title_fullStr PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
title_full_unstemmed PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
title_short PH-DEPENDENT MECHANISM OF ENERGY TRANSFORMATION IN SYNOVIAL FLUID CELLS IN KNEE OSTEOARTHRITIS AND EFFECT OF CHONDROITIN SULFATE
title_sort ph dependent mechanism of energy transformation in synovial fluid cells in knee osteoarthritis and effect of chondroitin sulfate
topic ph
osteoarthritis
synovial fluid
bioenergetics
ph
enzyme functional systems
chondroitin sulfate
url https://rsp.mediar-press.net/rsp/article/view/301
work_keys_str_mv AT vishishkin phdependentmechanismofenergytransformationinsynovialfluidcellsinkneeosteoarthritisandeffectofchondroitinsulfate
AT gvkudryavtseva phdependentmechanismofenergytransformationinsynovialfluidcellsinkneeosteoarthritisandeffectofchondroitinsulfate
AT abryabkov phdependentmechanismofenergytransformationinsynovialfluidcellsinkneeosteoarthritisandeffectofchondroitinsulfate