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Erschienen in: Rheumatology International 7/2011

01.07.2011 | Original Article

The effects of shockwave on systemic concentrations of nitric oxide level, angiogenesis and osteogenesis factors in hip necrosis

verfasst von: Ching-Jen Wang, Ya-Ju Yang, Chung-Cheng Huang

Erschienen in: Rheumatology International | Ausgabe 7/2011

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Abstract

This study investigated the effects of shockwave on systemic concentrations of nitric oxide (NO) level, angiogenic and osteogenic and anti-inflammatory factors in hips with osteonecrosis of the femoral head (ONFH). Thirty-five patients (47 hips) with ONFH were enrolled in this study. Each hip was treated with 6,000 impulses of shockwave at 28 kV in a single session. Ten milliliters of peripheral blood was obtained for the measurements of serum NO level, angiogenic factors (VEGF, vWF, FGF basic and TGF-β1); osteogenic factors (BMP-2, osteocalcin, alkaline phosphatase, DKK-1 and IGF); and anti-inflammation markers (sICAM and sVCAM) before treatment and at 1, 3, 6 and 12 months after treatment. The hips were evaluated with clinical assessment, serial radiograph and MRI. At 12 months, the overall results showed 83% improved and 17% un-improved. Total hip was performed in 4 cases (8.5%). Serum NO3 level showed significant elevation at 1 month after treatment, but the changes at 3, 6 and 12 months were not significant. For angiogenesis, significant elevations of VEGF, vWF and FGF basic and a decrease in TGF-β1 were observed at 1 month, but the changes at 3, 6 and 12 months were non-significant. For osteogenesis, BMP-2, osteocalcin, alkaline phosphatase and IGF were significantly elevated, while DKK-1 was decreased at 1 month, but the changes at 3, 6 and 12 months were not significant. For anti-inflammation markers, significant decreases in sICAM and sVCAM were noted at 1 month after treatment, but the changes at 3, 6 and 12 months were non-significant. Local ESWT application results in significant elevations of serum NO level, angiogenic and osteogenic and anti-inflammatory factors in ONFH.
Literatur
1.
Zurück zum Zitat Aldridge JM 3rd, Urbaniak JR (2004) Avascualr necrosis of the femoral head: etiology, pathophysiology, classification, and current treatment guidelines. Am J Orthop 33(7):327–332PubMed Aldridge JM 3rd, Urbaniak JR (2004) Avascualr necrosis of the femoral head: etiology, pathophysiology, classification, and current treatment guidelines. Am J Orthop 33(7):327–332PubMed
2.
Zurück zum Zitat Wang GJ, Cui Q, Balian G (2000) The pathogenesis and prevention of steroid-induced osteonecrosis. Clin Orthop 370:295–310PubMedCrossRef Wang GJ, Cui Q, Balian G (2000) The pathogenesis and prevention of steroid-induced osteonecrosis. Clin Orthop 370:295–310PubMedCrossRef
3.
Zurück zum Zitat Wang GJ, Gui Q (1997) The pathogenesis of steroid-induced osteonecrosis and the effect of lipid-clearing agents on this mechanism. In: Urbaniak JR, Jones JP (eds) Osteonecrosis: etiology, diagnosis, and treatment. American Academy of Orthopedic Surgeons, Rosemont, IL, pp 159–166 Wang GJ, Gui Q (1997) The pathogenesis of steroid-induced osteonecrosis and the effect of lipid-clearing agents on this mechanism. In: Urbaniak JR, Jones JP (eds) Osteonecrosis: etiology, diagnosis, and treatment. American Academy of Orthopedic Surgeons, Rosemont, IL, pp 159–166
4.
Zurück zum Zitat Zhou Q, Li Q, Yang L, Liu F (2000) Changes of blood vessels in glucocorticoid-induced avascular necrosis of the femoral head in rabbits. Chung-Hua Wai Ko Tsa Chih (Chin J Surg) 38:212–215 Zhou Q, Li Q, Yang L, Liu F (2000) Changes of blood vessels in glucocorticoid-induced avascular necrosis of the femoral head in rabbits. Chung-Hua Wai Ko Tsa Chih (Chin J Surg) 38:212–215
5.
Zurück zum Zitat Koo KH, Kim R, Kim YS et al (2002) Risk period for developing osteonecrosis of the femoral head in patients on steroid treatment. Clin Rheumatol 21:299–303PubMedCrossRef Koo KH, Kim R, Kim YS et al (2002) Risk period for developing osteonecrosis of the femoral head in patients on steroid treatment. Clin Rheumatol 21:299–303PubMedCrossRef
6.
Zurück zum Zitat Ficat RF (1985) Idiopathic bone necrosis of the femoral head: early diagnosis and treatment. Bone Joint Surg 67B:3–9 Ficat RF (1985) Idiopathic bone necrosis of the femoral head: early diagnosis and treatment. Bone Joint Surg 67B:3–9
7.
Zurück zum Zitat Steinberg ME, Hayken GD, Steinberg DR (1995) A quantitative system for staging avascular necrosis. J Bone Joint Surg 77B:34–41 Steinberg ME, Hayken GD, Steinberg DR (1995) A quantitative system for staging avascular necrosis. J Bone Joint Surg 77B:34–41
8.
Zurück zum Zitat Mont MA, Jones LC, Hungerford DS (2006) Nontraumatic osteonecrosis of the femoral head: 10 years later. J Bone Joint Surg 88A:1117–1132CrossRef Mont MA, Jones LC, Hungerford DS (2006) Nontraumatic osteonecrosis of the femoral head: 10 years later. J Bone Joint Surg 88A:1117–1132CrossRef
9.
Zurück zum Zitat Mont MA, Carbone JJ, Fairbank AC (1996) Core decompression versus non-operative management for osteonecrosis of the hip. Clin Orthop 324:169–178PubMedCrossRef Mont MA, Carbone JJ, Fairbank AC (1996) Core decompression versus non-operative management for osteonecrosis of the hip. Clin Orthop 324:169–178PubMedCrossRef
10.
Zurück zum Zitat Scully SP, Aaron RK, Urbaniak JR (1998) Survival analysis of hips treated with core decompression or vascularized fibular grafting because of avascular necrosis. J Bone Joint Surg 80A:1270–1275 Scully SP, Aaron RK, Urbaniak JR (1998) Survival analysis of hips treated with core decompression or vascularized fibular grafting because of avascular necrosis. J Bone Joint Surg 80A:1270–1275
11.
Zurück zum Zitat Dudkiewicz I, Covo A, Salai M, Israeli A, Amit Y, Chechik A (2004) Total hip arthroplasty after avascular necrosis of the femoral head: does etiology affect the results? Arch Orthop Trauma Surg 124:82–85PubMedCrossRef Dudkiewicz I, Covo A, Salai M, Israeli A, Amit Y, Chechik A (2004) Total hip arthroplasty after avascular necrosis of the femoral head: does etiology affect the results? Arch Orthop Trauma Surg 124:82–85PubMedCrossRef
12.
Zurück zum Zitat Wang CJ, Wang FS, Huang CC, Yang KD, Weng LH, Huang HY (2005) Treatment of osteonecrosis of the femoral head—comparison of extracorporeal shockwave and core decompression and bone grafting. J Bone Joint Surg 87A:2380–2387CrossRef Wang CJ, Wang FS, Huang CC, Yang KD, Weng LH, Huang HY (2005) Treatment of osteonecrosis of the femoral head—comparison of extracorporeal shockwave and core decompression and bone grafting. J Bone Joint Surg 87A:2380–2387CrossRef
13.
Zurück zum Zitat Wang CJ, Wang FS, Ko JY et al (2008) Extracorporeal shockwave shows regeneration in hip necrosis. Rheumatology 47:542–546PubMedCrossRef Wang CJ, Wang FS, Ko JY et al (2008) Extracorporeal shockwave shows regeneration in hip necrosis. Rheumatology 47:542–546PubMedCrossRef
14.
Zurück zum Zitat Maier M, Averbeck B, Milz S, Refior HJ, Schmitz C (2003) Substance P prostaglandin E2 released after shock wave application to the rabbit femur. Clin Orthop 406:237–245PubMedCrossRef Maier M, Averbeck B, Milz S, Refior HJ, Schmitz C (2003) Substance P prostaglandin E2 released after shock wave application to the rabbit femur. Clin Orthop 406:237–245PubMedCrossRef
15.
Zurück zum Zitat Diwan AD, Wang MX, Jang D, Zhu W, Murrell GAC (2003) Nitric oxide modulates fracture healing. J Bone Miner Res 15:342–351CrossRef Diwan AD, Wang MX, Jang D, Zhu W, Murrell GAC (2003) Nitric oxide modulates fracture healing. J Bone Miner Res 15:342–351CrossRef
16.
Zurück zum Zitat Fox SW, Chambers TJ, Chow JW (1995) Nitric oxide is an early mediator of the increase in bone formation by mechanical stimulation. Am J Physiol 270:955–960 Fox SW, Chambers TJ, Chow JW (1995) Nitric oxide is an early mediator of the increase in bone formation by mechanical stimulation. Am J Physiol 270:955–960
17.
Zurück zum Zitat Salter DM, Wallace WHB, Robb JE, Caldwell H, Wright MO (2001) Human bone cell hyperpolarization response to cyclic mechanical strain is mediated by an interleukin-1 autocrine/paracrine loop. J Bone Miner Res 15:1746–1755CrossRef Salter DM, Wallace WHB, Robb JE, Caldwell H, Wright MO (2001) Human bone cell hyperpolarization response to cyclic mechanical strain is mediated by an interleukin-1 autocrine/paracrine loop. J Bone Miner Res 15:1746–1755CrossRef
18.
Zurück zum Zitat Park JK, Cui Y, Kim MK et al (2002) Effect of extracorporeal shock wave lithotripsy on plasma levels of nitric oxide and cyclic nucleotides in human subjects. J Urol 168:38–42PubMedCrossRef Park JK, Cui Y, Kim MK et al (2002) Effect of extracorporeal shock wave lithotripsy on plasma levels of nitric oxide and cyclic nucleotides in human subjects. J Urol 168:38–42PubMedCrossRef
19.
Zurück zum Zitat Sarci K, Balat A, Erbagi A, Cekmen M, Yurekli M, Yagci F (2003) Effect of shock wave lithotripsy on plasma and urinary levels of nitrite and adrenomedullin. Urol Res 31:347–351CrossRef Sarci K, Balat A, Erbagi A, Cekmen M, Yurekli M, Yagci F (2003) Effect of shock wave lithotripsy on plasma and urinary levels of nitrite and adrenomedullin. Urol Res 31:347–351CrossRef
20.
Zurück zum Zitat Gardeniers JWM (1993) ARCO (Association Research Circulation Osseous) international classification of osteonecrosis. ARCO Committee on Terminology and Staging. Report on the committee meeting at Santiago de Compostella. ARCO Newsl 5:79–82 Gardeniers JWM (1993) ARCO (Association Research Circulation Osseous) international classification of osteonecrosis. ARCO Committee on Terminology and Staging. Report on the committee meeting at Santiago de Compostella. ARCO Newsl 5:79–82
21.
Zurück zum Zitat Kim VM, Oh HC, Kim HJ (2000) The pattern of bone marrow edema on MRI in osteonecrosis of the femoral head. J Bone Joint Surg (Br) 82B:837–841CrossRef Kim VM, Oh HC, Kim HJ (2000) The pattern of bone marrow edema on MRI in osteonecrosis of the femoral head. J Bone Joint Surg (Br) 82B:837–841CrossRef
22.
Zurück zum Zitat Martini L, Giavaresi G, Fini M et al (2003) Effect of extracorporeal shock wave therapy on osteoblast-like cells. Clin Orthop 413:269–280PubMedCrossRef Martini L, Giavaresi G, Fini M et al (2003) Effect of extracorporeal shock wave therapy on osteoblast-like cells. Clin Orthop 413:269–280PubMedCrossRef
23.
Zurück zum Zitat Wang FS, Yang KD, Kuo YR et al (2003) Temporal and spatial expression of bone morphogenetic proteins in extracorporeal shock wave-promoted healing of segmental defect. Bone 32:387–396PubMedCrossRef Wang FS, Yang KD, Kuo YR et al (2003) Temporal and spatial expression of bone morphogenetic proteins in extracorporeal shock wave-promoted healing of segmental defect. Bone 32:387–396PubMedCrossRef
24.
Zurück zum Zitat McCormack D, Lane H, McElwain J (1996) The osteogenic potential of extracorporeal shock wave therapy: an in vivo study. Ir J Med Sci 165:20–22PubMedCrossRef McCormack D, Lane H, McElwain J (1996) The osteogenic potential of extracorporeal shock wave therapy: an in vivo study. Ir J Med Sci 165:20–22PubMedCrossRef
25.
Zurück zum Zitat Wang FS, Yang KD, Chen RF, Wang CJ, Sheen-Chen SM (2002) Extracorporeal shock wave promotes bone marrow stromal cell growth and differentiation toward osteoprogenitors associated with TGF-β1 induction. J Bone Joint Surg 84B:457–461CrossRef Wang FS, Yang KD, Chen RF, Wang CJ, Sheen-Chen SM (2002) Extracorporeal shock wave promotes bone marrow stromal cell growth and differentiation toward osteoprogenitors associated with TGF-β1 induction. J Bone Joint Surg 84B:457–461CrossRef
26.
Zurück zum Zitat Wang CJ (2003) An overview of shock wave therapy in musculoskeletal disorders. Chang Gung Med J 26:220–232PubMed Wang CJ (2003) An overview of shock wave therapy in musculoskeletal disorders. Chang Gung Med J 26:220–232PubMed
27.
Zurück zum Zitat Wang CJ, Hung HY, Pai CH (2002) Shock wave-enhanced neovascularization at the tendon-bone junction: an experiment in dogs. J Foot Ankle Surg 41:16–22PubMedCrossRef Wang CJ, Hung HY, Pai CH (2002) Shock wave-enhanced neovascularization at the tendon-bone junction: an experiment in dogs. J Foot Ankle Surg 41:16–22PubMedCrossRef
28.
Zurück zum Zitat Wang CJ, Wang FS, Yang KD, Huang CS, Hsu CC (2003) Shock wave therapy induces neovascularization at the tendon-bone junction. A study in rabbits. J Orthop Res 21:984–989PubMedCrossRef Wang CJ, Wang FS, Yang KD, Huang CS, Hsu CC (2003) Shock wave therapy induces neovascularization at the tendon-bone junction. A study in rabbits. J Orthop Res 21:984–989PubMedCrossRef
29.
Zurück zum Zitat Wang CJ, Yang KD, Ko JY, Huang CC, Huang SY, Wang FS (2009) The effects of shockwave on bone healing and systemic concentrations of nitric oxide (NO), TGF-β1, VEGF and BMP-2 in long bone non-unions. Nitric Oxide 20:298–303PubMedCrossRef Wang CJ, Yang KD, Ko JY, Huang CC, Huang SY, Wang FS (2009) The effects of shockwave on bone healing and systemic concentrations of nitric oxide (NO), TGF-β1, VEGF and BMP-2 in long bone non-unions. Nitric Oxide 20:298–303PubMedCrossRef
30.
Zurück zum Zitat Wang CJ, Wang FS, Yang KD (2008) Biological effects of extracorporeal shockwave in bone healing: a study in rabbits. Achiv Orthop Trauma Surg 128:879–884CrossRef Wang CJ, Wang FS, Yang KD (2008) Biological effects of extracorporeal shockwave in bone healing: a study in rabbits. Achiv Orthop Trauma Surg 128:879–884CrossRef
31.
Zurück zum Zitat Mainsonhaute E, Prado C, White PC, Compton RG (2004) Surface acoustic cavitation understood via nanosecond electrochemistry, part III: shear stress in ultrasonic cleaning. Ultrasound Sonochem 9:297–303CrossRef Mainsonhaute E, Prado C, White PC, Compton RG (2004) Surface acoustic cavitation understood via nanosecond electrochemistry, part III: shear stress in ultrasonic cleaning. Ultrasound Sonochem 9:297–303CrossRef
32.
Zurück zum Zitat Wang FS, Yang KD, Wang CJ et al (2004) Shockwave stimulates oxygen radical-mediated osteogenesis of the mesenchymal cells from human umbilical cord blood. J Bone Miner Res 19(6):973–982PubMedCrossRef Wang FS, Yang KD, Wang CJ et al (2004) Shockwave stimulates oxygen radical-mediated osteogenesis of the mesenchymal cells from human umbilical cord blood. J Bone Miner Res 19(6):973–982PubMedCrossRef
33.
Zurück zum Zitat Wang FS, Wang CJ, Sheen-Chen SM, Kuo YR, Chen RF, Yang KD (2002) Superoxide mediates shock wave induction of RRK-dependent osteogenic transcription factor (CBFA 1) and mesenchymal cells differentiation toward osteoprogenitors. J Biol Chem 277(3):10931–10937PubMedCrossRef Wang FS, Wang CJ, Sheen-Chen SM, Kuo YR, Chen RF, Yang KD (2002) Superoxide mediates shock wave induction of RRK-dependent osteogenic transcription factor (CBFA 1) and mesenchymal cells differentiation toward osteoprogenitors. J Biol Chem 277(3):10931–10937PubMedCrossRef
34.
Zurück zum Zitat Wang FS, Wang CJ, Chen YJ et al (2004) Ras Induction of superoxide activates ERK-dependent angiogenic transcription (HIF-1α) and VEGF-An expression in shock wave-stimulated osteoblasts. J Biol Chem 279:10331–10337PubMedCrossRef Wang FS, Wang CJ, Chen YJ et al (2004) Ras Induction of superoxide activates ERK-dependent angiogenic transcription (HIF-1α) and VEGF-An expression in shock wave-stimulated osteoblasts. J Biol Chem 279:10331–10337PubMedCrossRef
35.
Zurück zum Zitat Kaspar D, Neidlinger-Wilke C, Holbein O, Claes L, Ignatius A (2003) Mitogens are increased in the systemic circulation during bone callus healing. J Orthop Res 21:320–325PubMedCrossRef Kaspar D, Neidlinger-Wilke C, Holbein O, Claes L, Ignatius A (2003) Mitogens are increased in the systemic circulation during bone callus healing. J Orthop Res 21:320–325PubMedCrossRef
36.
Zurück zum Zitat Wang CJ, Yang KD, Wang FS, Chen HS, Chen HH, Hsu CC (2004) Shock wave therapy enhances bone mass and bone strength after fracture of the femur. A study in rabbits. BONE 34:225–230PubMedCrossRef Wang CJ, Yang KD, Wang FS, Chen HS, Chen HH, Hsu CC (2004) Shock wave therapy enhances bone mass and bone strength after fracture of the femur. A study in rabbits. BONE 34:225–230PubMedCrossRef
Metadaten
Titel
The effects of shockwave on systemic concentrations of nitric oxide level, angiogenesis and osteogenesis factors in hip necrosis
verfasst von
Ching-Jen Wang
Ya-Ju Yang
Chung-Cheng Huang
Publikationsdatum
01.07.2011
Verlag
Springer-Verlag
Erschienen in
Rheumatology International / Ausgabe 7/2011
Print ISSN: 0172-8172
Elektronische ISSN: 1437-160X
DOI
https://doi.org/10.1007/s00296-010-1384-7

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