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Biomedical subjects

Peter Pietschmann

Publications and source records attributed to Peter Pietschmann.

15 recordsLinked to original sources

Osteoimmunology.

Osteoimmunology is an interdisciplinary research field combining the exciting fields of osteology and immunology. An observation that contributed enormously to the emergence of osteoimmunology was the accelerated bone loss caused by inflammatory diseases such as rheumatoid arthritis. Receptor activator of nuclear factor kappaB ligand (RANKL), which is the main regulator of osteoclastogenesis, was found to be the primary culprit responsible for the enhanced activation of osteoclasts: activated T cells directly and indirectly increased the expression of RANKL, and thereby promoted osteoclastic activity. Excessive bone loss is not only present in inflammatory diseases but also in autoimmune diseases and cancer. Furthermore, there is accumulating evidence that the very prevalent skeletal disorder osteoporosis is associated with alterations in the immune system. Meanwhile, numerous connections have been discovered in osteoimmunology beyond merely the actions of RANKL. These include the importance of osteoblasts in the maintenance of the hematopoietic stem cell niche and in lymphocyte development as well as the functions of immune cells participating in osteoblast and osteoclast development. Furthermore, research is being done investigating cytokines, chemokines, transcription factors and co-stimulatory molecules which are shared by both systems. Research in osteoimmunology promises the discovery of new strategies and the development of innovative therapeutics to cure or alleviate bone loss in inflammatory and autoimmune diseases as well as in osteoporosis. This review gives an introduction to bone remodeling and the cells governing that process and summarizes the most recent discoveries in the interdisciplinary field of osteoimmunology. Furthermore, an alternative large animal model will be discussed and the pathophysiological alterations of the immune system in osteoporosis will be highlighted.

Animals↗

Bone morphogenetic proteins 5 and 6 stimulate osteoclast generation.

Bone regeneration is required for fracture-healing, and different procedures have been used to promote osteogenesis. Recently, BMP-2 has been shown to induce bone formation in vivo and has been tested in clinical trials. A recent in vitro study evaluated the osteogenic activity of 14 BMPs on osteoblastic progenitor cells with an osteogenic hierarchical model in which BMP-2 and BMP-6 may play an important role in inducing osteoblast differentiation. Although the relative osteoinductive activity of each BMP is important, bone regeneration is a process consisting of bone formation and bone resorption. Therefore, it remains unclear which effects BMP-5 and -6 have on the generation of osteoclasts and by which mechanism osteoclastogenesis is stimulated. To compare osteoclastic potency of each BMP, primary murine bone marrow cells were treated with human recombinant BMP-2, BMP-5, or BMP-6 and 1,25-(OH)2 vitamin D3 and stained for the TRAP enzyme. Osteogenic activity of BMP-5 was determined by measuring induction of ALP-activity and proliferation after incubation with primary murine osteoblasts. For elucidating the molecular mechanism, primary bone marrow cells with various concentrations of OPG were added to the TRAP assay and mRNA levels of RANKL and OPG were measured after stimulation with BMP-5. The presented data show that BMP-5 and BMP-6, unlike BMP-2, enhanced the formation of murine TRAP+/MNCs in a biphasic curve. BMP-5 and -6 were less potent in stimulating osteoclastogenesis compared to BMP-2. Concerning the effects of BMP-5 on osteoblasts, there was a dose-dependent increase of ALP activity and proliferation up to a maximum dose of 300 ng/mL. At the mRNA level, BMP-5 increased the RANKL/OPG ratio. In conclusion, this study demonstrates that in contrast to BMP-2, BMP-5 and -6 influences the generation of osteoclasts in a biphasic mode. Both proteins might be very important regulators of bone homeostasis, and therefore, potent candidates for future treatment strategies of bone regeneration.

Acid Phosphatase↗

Osteonecrosis of the jaws and bisphosphonate treatment in cancer patients.

PURPOSE: Osteonecrosis of the jaws is described as an intraoral complication after administration of intravenous nitrogen-containing bisphosphonates. In a retrospective study, patients with osteonecrosis of the jaws after bisphosphonate treatment were evaluated with regard to diagnostic investigations and therapeutic management. PATIENTS AND METHODS: Seventeen patients with osteonecrosis of the jaws after bisphosphonate treatment who were referred to our department between July 2004 and June 2005 were included in this study. Computer tomography, magnetic resonance imaging, scintigraphy, bacteriology and biopsy were used in diagnostic evaluation. All patients were treated surgically. RESULTS: The reasons for bisphosphonate treatment were multiple myeloma in 12 patients, breast cancer with bone metastasis in four patients and histiocytosis X in one patient. Five patients had received intravenous pamidronate and 12 patients zoledronic acid. The median number of treatment cycles for pamidronate was 36 times (range 4-100) in 38 months (range 4-100). Zolendric acid was given 23.5 times (range 5-39) in 26 months (range 5-39). Nine patients had a lesion in the mandible, eight in the maxilla. Clinical symptoms were exposed bone, pain and local inflammation of the mucosa. Computer tomography showed sclerotic areas in the osteonecrosis zone. The biopsy did not show a metastatic lesion. Sequestrectomy and decortication was adequate in the follow-up. CONCLUSION: Nitrogen-containing bisphosphonates appear to be associated with the risk of developing osteonecrosis of the jaws. To reduce this risk, patients should be evaluated by a dentist before beginning treatment with intravenous bisphosphonates.

Adult↗

Rheumatoid arthritis synovium contains plasmacytoid dendritic cells.

We have previously described enrichment of antigen-presenting HLA-DR+ nuclear RelB+ dendritic cells (DCs) in rheumatoid arthritis (RA) synovium. CD123+HLA-DR+ plasmacytoid DCs (pDCs) and their precursors have been identified in human peripheral blood (PB), lymphoid tissue, and some inflamed tissues. We hypothesized recruitment of pDCs into the inflamed RA synovial environment and their contribution as antigen-presenting cells (APCs) and inflammatory cells in RA. CD11c+ myeloid DCs and CD123+ pDCs were compared in normal and RA PB, synovial fluid (SF), and synovial tissue by flow cytometry, immunohistochemistry, and electron microscopy and were sorted for functional studies. Nuclear RelB-CD123+ DCs were located in perivascular regions of RA, in a similar frequency to nuclear RelB+CD123- DCs, but not normal synovial tissue sublining. Apart from higher expression of HLA-DR, the numbers and phenotypes of SF pDCs were similar to those of normal PB pDCs. While the APC function of PB pDCs was less efficient than that of PB myeloid DCs, RA SF pDCs efficiently activated resting allogeneic PB T cells, and high levels of IFN-gamma, IL-10, and tumor necrosis factor alpha were produced in response to incubation of allogeneic T cells with either type of SF DCs. Thus, pDCs are recruited to RA synovial tissue and comprise an APC population distinct from the previously described nuclear RelB+ synovial DCs. pDCs may contribute significantly to the local inflammatory environment.

Antigen Presentation↗

Interactions of 1 alpha,25-dihydroxyvitamin D3 with IL-12 and IL-4 on cytokine expression of human T lymphocytes.

BACKGROUND: 1 alpha,25-Dihydroxyvitamin D3 (1 alpha,25[OH](2)D(3)) exerts its effects on the immune system, particularly through suppression of T helper/cytotoxic cell 1 (T(H)/T(C)1)-mediated reactions, although direct actions of 1 alpha,25(OH)(2)D(3) on human T lymphocytes have not yet been studied in detail. OBJECTIVE: We evaluated the effect of 1 alpha,25(OH)(2)D(3) on basal and cytokine-driven T-cell functions at the single-cell level. METHODS: We used 4-color flow cytometry for simultaneous detection of intracellular cytokines in CD4(+) and CD8(+) human PBMCs that had been cultured in the presence of 1 alpha,25(OH)(2)D(3) singly or in combination with either IL-12 or IL-4. According to the exploratory nature of these investigations, the Bonferroni correction was not applied for data analysis and presentation. RESULTS: 1 alpha,25(OH)(2)D(3) had little effect on T(H)/T(C)1 cytokines but significantly inhibited IL-12-induced IFN-gamma production. Constitutive synthesis of T(H)/T(C)2-related cytokines was also only modestly affected by 1 alpha,25(OH)(2)D(3) alone. When T(H)/T(C)2 differentiation was induced by IL-4, 1 alpha,25(OH)(2)D(3) significantly expanded the percentages of IL-4(+) and IL-13(+) cells. However, the predominant effect of 1 alpha,25(OH)(2)D(3) on T lymphocytes, particularly in the presence of IL-4, was the induction of separate CD4(+) and CD8(+) subpopulations with almost exclusive expression of IL-6. This might be an important facet of the immunomodulatory action of 1 alpha,25(OH)(2)D(3) because IL-6 might act in parallel with 1 alpha,25(OH)(2)D(3) in modulation of T(H)/T(C) effector cell functions. CONCLUSIONS: Our data imply that the specific actions of 1 alpha,25(OH)(2)D(3) on cytokine-stimulated T-cell functions could play a role in the prevention of T(H)/T(C)1-related autoimmune diseases but also predispose toward T(H)/T(C)2-mediated allergic reactions.

Adult↗

Relation of anti-TPO autoantibody titre and T-lymphocyte cytokine production patterns in Hashimoto's thyroiditis.

OBJECTIVE: Cytokines produced by cytotoxic T cells or autoantibodies lead to thyroid cell damage and/or cell death in Hashimoto's thyroiditis (HT). Anti-TPO autoantibodies (TPOAb) are the most frequently represented autoantibodies in the sera of patients with HT. Data describing the quantitative correlation between TPOAb titre and cytokine pattern are missing so far. To our knowledge this is the first study systematically evaluating the correlation of possible parameters of disease activity such as changes in CD4 and CD8 T-cell cytokine production and of TPOAb titre. METHODS: Twenty-four consecutive patients (aged 29-58) with verified HT under levothyroxine therapy were included in the present study. The patients were divided into two groups. Group I: 12 HT patients with a high TPOAb titre (> 1000 U/ml), group II: 12 HT patients with a low TPOAb titre (< 100 U/ml). All patients underwent intracellular cytokine detection in CD4 and CD8 T cells of peripheral blood mononuclear cells (PBMC) by flow cytometry. Twelve healthy volunteers matched in sex and age consisted the control group (group III). RESULTS: T cells from patients with a high TPOAb titre (group I) had significantly higher percentages of cells producing IFN-gamma compared to healthy donors (group III). A detailed analysis of cytokine production patterns revealed that this was accompanied by an increased frequency of single IFN-gamma positive cells, i.e. cells not expressing other cytokines tested, such as IL-2, IL-4, IL-5, IL-6, IL-10, IL-13 or TNF-beta. Similarly, patients in group I also showed higher percentages of TNF-alpha positive cells than healthy donors (group III). In this case, cells expressing TNF-alpha alone as well as cells coexpressing TNF-alpha and IFN-gamma were found at significantly higher frequencies. On the other hand, cytokine production patterns of patients with a low TPOAb titre (group II) showed significant difference neither to patients of group I nor to healthy donors (group III). CONCLUSION: Taken together, we were able for the first time to demonstrate that high TPOAb titre correlates with increased frequencies of T cells producing Th/Tc1 cytokines, probably responsible for thyroid cell damage and/or death in Hashimoto's thyroiditis.

Adult↗

Soluble RANKL and risk of nontraumatic fracture.

CONTEXT: The receptor activator of nuclear factor kappaB ligand (RANKL) is essential for osteoclast and, possibly, osteoblast activation and may represent a key link between bone formation and resorption. OBJECTIVE: To determine the relationship between serum level of RANKL and the risk of nontraumatic fracture. DESIGN, SETTING, AND PARTICIPANTS: As part of a prospective population-based study conducted in Bruneck, Italy, we recorded all fractures that occurred between 1990 and 2000 in 906 participants and classified them as traumatic (n = 115) or nontraumatic (n = 31). Serum levels of RANKL and osteoprotegerin and characteristics of bone metabolism and lifestyle were assessed in 1990 and at follow-up in 1995 and 2000. MAIN OUTCOME MEASURE: Incident nontraumatic fracture by levels of RANKL. RESULTS: Levels of RANKL did not differ between sexes and were not related to age, menopausal status, lifestyle characteristics, or data from bone ultrasound at the heel. However, RANKL emerged as a significant predictor of nontraumatic fracture. In pooled logistic regression analysis, the relative risks of nontraumatic fracture in the lowest and middle vs highest tertile for RANKL were 10.0 (95% confidence interval [CI], 2.3-43.1) and 3.9 (95% CI, 0.8-19.0) (P<.001 for trend), respectively. Patients in the highest-tertile group had a low risk of fracture even in the presence of other predisposing factors, whereas women aged 60 years or older in the lowest tertile had a 5-year rate of nontraumatic fracture greater than 7%. CONCLUSIONS: A low level of RANKL is an independent predictor of nontraumatic fracture. This finding is consistent with the hypothesis of an important role of RANKL in human bone turnover and if confirmed in future investigations may gain relevance for assessment of fracture risk.

Aged↗

Osteoporosis: gender-specific aspects.

Traditionally, osteoporosis has been regarded as a disease of postmenopausal women; nevertheless, although osteoporosis is more common in women than in men, osteoporosis in men is a frequent and a severe condition. Osteoporosis generally can be characterized as either primary or secondary; in men secondary osteoporosis is more frequent than in women. The role of estrogen deficiency in the pathogenesis of postmenopausal osteoporosis is clearly established; remarkably, evidence accumulated over the past years strongly suggests that estrogen also plays the dominant role in regulating the male skeleton. Several independent studies observed decreased serum estradiol levels in men with idiopathic osteoporosis. In contrast to postmenopausal osteoporosis, there are only few studies on the treatment of osteoporosis in men; two different compounds (alendronate and teriparatide) appear to be equally effective in men and women.

Adult↗

The effect of age and gender on cytokine production by human peripheral blood mononuclear cells and markers of bone metabolism.

BACKGROUND: Aging has been associated with various alterations of immune functions, the musculoskeletal system and a decline of sex hormone levels. Estradiol has a central role in the regulation of bone turnover and also modulates the production of cytokines such as interleukin-1 and -6 and tumor necrosis factor-alpha. We therefore studied the effect of age and gender on cytokine production by mononuclear cells and markers of bone metabolism. METHODS: Peripheral blood mononuclear cells were isolated from young and elderly subjects; intracellular detection of cytokine production after stimulation with ionomycine and PMA (T cells) or LPS (monocytes) was performed by four color flow cytometry. Sex hormone levels and markers of bone metabolism were measured by RIA or ELISA: RESULTS: When we compared elderly to young women we found an increased proportion of T cells that were positive for interferon-gamma, interleukin-2, -4, -10 and -13. Also the percentage of cells producing interleukin-4 or interferon-gamma within the CD8(+) population was higher in the group of elderly women. In contrast, proportionally fewer monocytes of elderly women were positive for tumor necrosis factor-alpha or interleukin-6 than those of young women. In elderly men a higher percentage of T cells produced interleukin-2, -4 and -13. In the group of aged men we found a higher frequency of cells that produced interleukin-4 within the CD4(+) or CD8(+) population. Moreover, within monocytes of elderly men we found an increased percentage of cells positive for both interleukin-1beta and tumor necrosis factor-alpha. The data on markers of bone metabolism indicated an increase of bone turnover in old age. CONCLUSION: Our data demonstrate that aging is associated with significant alterations of bone metabolism and cytokine production by T cells and monocytes. For particular cytokines (interferon-gamma and interleukin-10 in T cells, interleukin-6 and tumor necrosis factor-alpha in monocytes) these changes are gender specific.

Adult↗

Pathogenesis of bone loss in heart transplant candidates and recipients.

BACKGROUND: Heart transplantation (HTX) is associated with decreased bone mineral density and changes in bone metabolism. We conducted this study to evaluate the pathophysiology of bone metabolism in HTX candidates and recipients. METHODS: Thirty-six HTX recipients were compared with 36 HTX candidates concerning biochemical parameters of bone metabolism and bone mineral density. RESULTS: Osteocalcin, bone-specific alkaline phosphatase, cross-linked-N-telopeptide of type I collagen, estradiol, serum creatinine, and blood urea nitrogen concentrations were significantly higher, whereas the calcium-creatinine ratio, thyrotropin, thyroxine, and bone mineral density were significantly lower in HTX recipients than in HTX candidates. Compared with a control group, HTX candidates had decreased renal function and increased bone resorption, whereas HTX recipients additionally had increased alkaline phosphatase and osteocalcin levels. In HTX recipients, we found positive correlations between creatinine clearance and bone mineral density; daily and cumulative cortisone doses were not associated with bone mineral density. CONCLUSIONS: In HTX candidates, disturbances in bone metabolism with increased bone resorption may be caused partly by existing low-grade renal insufficiency, regular intake of loop diuretics, and restriction of mobility. In HTX recipients, immunosuppressive therapy-glucocorticoids and cyclosporine-seem to be responsible for changes in bone metabolism.

Adult↗

Parameters of humoral and cellular immunity following vaccination of pigs with a European modified-live strain of porcine reproductive and respiratory syndrome virus (PRRSV).

Parameters of humoral and cellular immunity were investigated in pigs experimentally infected with a modified-live European porcine reproductive and respiratory syndrome virus (PRRSV, strain DV). PRRSV was detected by real-time RT-PCR and PRRSV-specific antibodies by a commercial ELISA test-kit, respectively. Interleukins IL-1alpha, IL-2, IL-4, IL-6, IL-8, IL-10, tumor necrosis factor (TNF-alpha) and interferon-gamma (IFN-gamma) as well as IL-2 receptor (IL-2R) were quantified at mRNA level using RT-PCR. Subpopulations of blood lymphocytes were assayed using flow cytometry. No significant changes neither in cytokine expression nor in shifts of CD4 and CD8 markers could be found, but similar curve diagrams concerning CD8 single positive T cells could be observed in all vaccinated animals with an initial decrease and an increase between post-infection days (PIDs) 7 and 14. In the vaccination group, TNF-alpha and IL-6 tended to be increased at PIDs 22 and 40, whereas no increase could be seen in IFN-gamma. When comparing the in vivo immune response to that being seen in in vitro experiments, similar shifts of CD4/CD8 lymphocyte subpopulations may be seen. Cytokine curve diagrams, however, do not reflect the in vitro findings to that extent.

Animals↗

Tumor necrosis factor alpha-mediated joint destruction is inhibited by targeting osteoclasts with osteoprotegerin.

OBJECTIVE: To study the effects of osteoclast-targeted therapies, such as osteoprotegerin (OPG) and pamidronate, on joint inflammation and bone destruction using a tumor necrosis factor alpha (TNF alpha)-transgenic mouse model. METHODS: Mice were placed into 5 groups that received either OPG, pamidronate, a combination of both agents, infliximab as a positive control, or phosphate buffered saline as a negative control. Treatment was initiated at the onset of arthritis, continued over 6 weeks, and thereafter, the clinical, radiologic, and histologic outcomes were assessed. RESULTS: A significant improvement in clinical symptoms, as assessed by the reduction of paw swelling, was only found in the infliximab group, whereas all other treatment groups failed to show significant improvement. However, when assessing structural damage with radiographic analysis, a significant retardation of joint damage was evident in animals treated with OPG (55% reduction of erosions), pamidronate (50% reduction of erosions) the combination therapy of OPG and pamidronate (64% reduction of erosions), and with infliximab (66% reduction of erosions). Confirming these data, quantitative histologic analysis revealed a significant reduction in the size of bone erosions in all treatment groups (OPG 56%, pamidronate 53%, OPG and pamidronate 81%, and infliximab 46%) compared with the control group. Furthermore, a significant reduction of osteoclast numbers was seen in animals treated with OPG alone or in combination with pamidronate as well as in animals treated with infliximab. CONCLUSION: These data suggest that OPG alone or in combination with bisphosphonates is an effective therapeutic tool for the prevention of TNF alpha-mediated destruction of bone by reducing the number of bone-resorbing cells in the inflammatory tissue.

Animals↗

Ankylosing spondylitis, psoriatic arthritis, and reactive arthritis show increased bone resorption, but differ with regard to bone formation.

OBJECTIVE: To test if markers of bone metabolism are altered in patients with seronegative spondyloarthropathies (SSpA). METHODS: We studied biochemical markers of bone resorption and bone formation, osteoprotegerin (OPG), and bone mineral density (BMD) in patients with psoriatic arthritis (PsA), ankylosing spondylitis (AS), and reactive arthritis (ReA) and healthy volunteers. RESULTS: The bone resorption markers urinary deoxypyridinoline and crosslinked telopeptide of collagen-I were significantly increased in patients with AS, PsA, and ReA; in PsA they correlated with the acute phase response (C-reactive protein and erythrocyte sedimentation rate). The bone formation markers were divergent: bone-specific alkaline phosphatase was increased in PsA, but not in AS or ReA. Osteocalcin levels were only elevated in AS. Serum levels of OPG were significantly increased in both AS and PsA. Dual energy x-ray absorptiometry (DEXA) measurements of lumbar spine and femoral neck revealed osteopenia in patients with AS, whereas the DEXA distribution was within normal range in PsA. CONCLUSION: Our data indicate high and, particularly in AS, unbalanced bone turnover in SSpA, consistent with the decrease in BMD found in patients with AS.

Absorptiometry, Photon↗

Effects of 12 months of recombinant growth hormone therapy on parameters of bone metabolism and bone mineral density in patients on chronic hemodialysis.

BACKGROUND: Renal osteodystrophy is common in patients with chronic renal failure (CRF) on hemodialysis (HD), leading to reduced bone mineral density (BMD) and higher bone fracture incidences. Since growth hormone (GH) and insulin-like growth factor 1 (IGF-1) are known to enhance bone metabolism and BMD, and CRF patients exhibit GH and IGF-1 resistance, recombinant human GH (rhGH) therapy could be beneficial for these patients. METHODS: This study evaluated the effects of a 12-month rhGH therapy on bone metabolism parameters; alkaline phosphatase (AP), osteocalcin (OC), procollagen I carboxyterminal propeptide (PICP), telopeptide ICTP, serum crosslaps, n-terminal propeptide of type III procollagen (PIIINP) and intact parathyroid hormone (iPTH), as well as on BMD of the lumbar spine and the femoral neck in 19 malnourished HD patients (10 females, 9 males) with a mean age of 59.3 +/- 13.4 yrs. Fourteen patients completed the 12-month study. RhGH (0.25 IU/kg) was given subcutaneously 3x/week after each dialysis session. RESULTS: IGF-1 concentrations rose significantly from 169.2 +/- 95.6 to 262.9 +/- 144.4 ng/mL (p<0.01) after 3 months, followed by a slight decline over the next 9 months. PICP as a bone formation marker significantly increased after 3 months from 250.1 +/- 112.6 to 478.5 +/- 235.2 ug/L (p<0.01), as well as PIIINP, whereas OC and bone resorption parameters like ICTP showed only a slight increase (ICTP: 50.3 +/- 18.5 to 70.0 +/- 39.5 ug/L after 3 months (ns)). All bone metabolism parameters slightly declined in the following 9 months, but remained above baseline values after 12 months. PTH rose from 198.0 +/- 139.2 to 456.0 +/- 268.7 ng/ml, p<0.01 after 6 months. BMD of the lumbar spine showed a significant reduction after 3-month rhGH therapy (0.80 +/- 0.17 vs. 0.77 +/- 0.16 g/cm2, p<0.01), but returned to baseline values after 12 months. BMD of the femoral neck remained stable during the entire study. CONCLUSIONS: In summary, 12-month rhGH treatment in patients on chronic HD caused a significant increase in IGF-1, together with an increase in bone turnover. In addition, there was a temporary reduction in BMD of the lumbar spine seen, which returned to baseline values after 12 months.

Absorptiometry, Photon↗