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Biomedical subjects

A Linde

Publications and source records attributed to A Linde.

At least 91 records · Page 5Linked to original sources

Opposite effects of recombinant human transforming growth factor-beta 1 on bone regeneration in vivo: effects of exclusion of periosteal cells by microporous membrane.

The efficacy of local delivery of recombinant human transforming growth factor-beta 1 (rhTGF-beta 1) to promote bone regeneration, with or without cellular contribution from the periosteum, was evaluated in transosseous defects. Implantation of rhTGF-beta 1 into 5 mm in diameter "critical size defects" in the rat mandible resulted in a dose-dependent (0.1-20 micrograms/defect) bone bridging at both 12 and 24 days, independent of the type of delivery system [3% methyl cellulose gel, porous CaCO3 particles, or poly(lactide-co-glycolide) beads]. The bridging, however, never exceeded 24% at 12 days or 34% after 24 days. In contrast, when access of cells from the periosteum to the defect was prevented by means of microporous expanded polytetrafluoroethylene barrier membranes (GORE-TEX membrane), rhTGF-beta 1 caused a dose-dependent inhibition of bone regeneration. The bioactivity of the growth factor was confirmed by implantation of 5 or 10 micrograms rhTGF-beta 1 in 12 mm in diameter bicortical defects in rabbit calvaria, which resulted in complete bone healing within 28 days, whereas control defects displayed a bridging of 40%-50%. The findings support the concept, based on in vitro experiments by others, that TGF-beta 1 primarily has a proliferative effect on cells already committed to the osteoblastic lineage, but also imply that TGF-beta 1 may be inhibitory to induction of osteogenic cells in vivo.

Animals↗

Shedding of cytomegalovirus and herpesviruses 6, 7, and 8 in saliva of human immunodeficiency virus type 1-infected patients and healthy controls.

We used the polymerase chain reaction to study the presence of DNA from cytomegalovirus (CMV) and human herpesvirus (HHV)-6, HHV-7, and HHV-8 in saliva from 44 human immunodeficiency virus (HIV) type 1-infected patients at different stages of disease and in 15 healthy HIV-seronegative controls. CMV DNA, HHV-6 DNA, and HHV-7 DNA were found in all groups, but HHV-8 DNA was found only in symptomatic HIV-1-infected patients (5 [17%] of 29). One of the patients with HHV-8 DNA in saliva had oral Kaposi's sarcoma at the time of sampling, and another later developed the tumor. CMV DNA was found most often in the patients with AIDS. HHV-6 shedding tended to be less frequent among HIV-1-infected patients than among healthy controls. HHV-7 DNA was detected least frequently in the group of patients with AIDS. The presence of viral DNA was not correlated either with antiherpesvirus drug therapy or with oral symptoms, apart from Kaposi's sarcoma.

Adult↗

Herpes simplex virus infections of the central nervous system in human immunodeficiency virus-infected patients: clinical management by polymerase chain reaction assay of cerebrospinal fluid.

A duplex polymerase chain reaction (PCR) assay for DNA from herpes simplex virus types 1 (HSV-1) and 2 (HSV-2) was applied to cerebrospinal fluid (CSF) from 918 human immunodeficiency virus (HIV)-infected patients with neurological symptoms. HSV-1 or HSV-2 (HSV-1/2) DNA was found in 19 patients (2%). For the 258 patients for whom a diagnosis was confirmed at autopsy, the sensitivity and specificity of PCR analysis for the diagnosis of HSV-1/2 encephalitis were 100% and 99.6%, respectively. Three patients with CD4+ cell counts of > or = 170/microL had HSV-1 central nervous system (CNS) infections (two) or HSV-2 meningitis (one). Sixteen patients with CD4+ cell counts of < 40/microL had HSV-1 CNS infections (two) or mixed HSV-1/2 and cytomegalovirus encephalitis (14). The response to antiviral treatment, which was assessed clinically and by CSF PCR analysis, was variable in the patients with the highest CD4+ cell counts and poor in those with more severe immunosuppression. CSF PCR analysis is of value for the diagnosis and follow-up of treatment of HSV-1/2 CNS infections in HIV-infected patients.

AIDS-Related Opportunistic Infections↗

Autoclaved bone for craniofacial reconstruction: effects of supplementation with bone marrow or recombinant human fibroblast growth factor-2.

Replantation of resected bone after autoclaving is employed by many units in both craniofacial and orthopedic tumor reconstructive surgery. The procedure is attractive because it maintains the original anatomy, is reliable, and provides a good immediate clinical result. However, doubts have been raised about the ability of the autoclaved bone to revitalize. The present study aimed to explore, in an animal model, the revitalization of autoclaved bone and to determine whether it would be possible to enhance graft revitalization using either autogeneic bone marrow or recombinant human fibroblast growth factor-2, a peptide with stimulatory effects on both endothelial and osteogenic cells. Twenty-eight adult rats were subjected to bilateral parietal cranioplasties (4 x 6 mm), and 75 percent of the grafts were subjected to autoclaving (121 degrees C; 20 minutes) and subsequently treated randomly according to one of the following strategies: no further treatment, or supplementation with bone marrow or recombinant human fibroblast growth factor-2. The remaining grafts were replanted as fresh autografts. The results were evaluated after 4 and 12 weeks by radiologic, histologic, and histomorphometric analyses. After 4 weeks, no major differences were observed between treatments. At 12 weeks, however, no distinction in graft revitalization between autografts and autoclaved grafts supplemented with recombinant human fibroblast growth factor-2 was observed, whereas autoclaved grafts with or without bone marrow displayed significantly less revitalization compared with autografts. The results indicate that autoclaved bone will revitalize by remodeling, and that the efficacy of this process can be increased significantly by simultaneous supplementation with recombinant human fibroblast growth factor-2.

Animals↗

Dentin phosphoprotein sequence motifs and molecular modeling: conformational adaptations to mineral crystals.

Molecular modeling has been used to investigate structural features of oligopeptides derived from possible primary structure motifs in highly phosphorylated dentin phosphoprotein (PP-H), the predominant noncollagenous protein in dentin. It contains a large number of aspartate (Asp) and phosphoserine (Pse) residues, the latter proposedly crucial for the PP-H function as a mineral nucleator. In this work, computer fitting and subsequent structural adaptation of model peptides, built exclusively from Asp and Pse, to the known crystal structures of hydroxyapatite (HAP) and octacalcium phosphate (OCP) were performed. The results show that, when considering conformational energies of fitted single strand oligo-peptides, either crystal will serve. Within a narrow range, fitting to OCP was slightly favored, except for oligo(Pse-Pse-Asp-Asp), which showed a slightly better fit to HAP. Energy differences between crystal-adapted and non-adapted freely minimized peptides showed that oligo(Pse-Asp) docked to either HAP or OCP were the energetically most favored adaptations. Fitting of minimized triple anti-parallel beta-strands of oligo(Pse-Asp) or oligo(Pse-Pse-Asp), motifs found in published sequences of rat, mouse, and bovine PP-H, revealed that a (001) crystal face of HAP, but most likely not OCP, may be formed by these beta-sheet models. The former motif is more advantageous in this respect.

Amino Acid Sequence↗

Sequence variation within three important cytomegalovirus gene regions in isolates from four different patient populations.

We determined the nucleotide (nt) and amino acid (aa) heterogeneities of three distinct regions of the human cytomegalovirus (CMV) genome for 46 low-passage CMV isolates from four different patient populations (congenitally infected infants, children attending day-care centers, renal transplant recipients, and human immunodeficiency virus-infected individuals) and for two laboratory strains (CMV Ad169 and Towne). The gene regions for the major immediate-early (MIE) exon 4 gene (nt positions 1702 to 1982, aa positions 152 to 244), the DNA polymerase gene (nt positions 2797 to 3046, aa positions 713 to 795), and the glycoprotein B (gB) gene (nt positions 1698 to 1884, aa positions 567 to 628) were sequenced. The sequence information was used to design sets of nested PCR primers directed against the most highly conserved regions identified. MIE was the most variable gene region compared to the variability of the DNA polymerase and gB gene regions. Comparison of the sequences of all 46 isolates with that of Ad169 revealed nt and aa sequence homologies of 87.9 and 87.2%, respectively, within the MIE gene compared to 92.8 and 100% homologies, respectively, within the DNA polymerase gene and 93 and 95.2% homologies, respectively, within the gB gene. Within the MIE gene, compared to the Ad169 nt sequence the homology at the nt level among isolates obtained from children attending day-care centers was high (96.4%), while it was lower (90%) among isolates obtained from the other three patient populations. Preliminary results of a nested PCR with oligonucleotide primers selected from the DNA polymerase gene region with a low level of nt sequence variation indicates that primers selected from this region might be more powerful for use in PCR than primers selected from the MIE gene region.

Base Sequence↗

Infrequent detection of cytomegalovirus and Epstein-Barr virus DNA in synovial membrane of patients with rheumatoid arthritis.

OBJECTIVE: To study the role of the cytomegalovirus (CMV), Epstein-Barr virus (EBV), herpes simplex virus types 1 and 2 (HSV-1 and 2), varicella zoster virus (VZV), and human herpes virus 6 (HHV-6) in the etiology of rheumatoid arthritis (RA). METHODS: Polymerase chain reaction (PCR) was used to detect DNA of the different herpes viruses in synovial membranes from 31 patients with chronic RA and 14 control patients. Specific antibodies were determined by indirect immunofluorescence and ELISA. RESULTS: Out of 31 patients with RA, CMV DNA was detected in synovial membranes from 2 patients and EBV DNA was detected in synovial membranes from 2 other patients. All samples from the patients with RA were negative for DNA from HSV-1 and 2, VZV, and HHV-6. All samples from the 14 control patients were negative in all PCR assays. No statistically significant differences in IgG antibodies were found for CMV, HSV-1, VZV, and HHV-6 in patients with RA compared to controls. Higher titers of IgG antibodies against EBV viral capsid antigen were found in patients with RA, with a significance of p < 0.05. CONCLUSION: Both CMV and EBV DNA were detected in synovial membranes from 6% of the patients with RA. We cannot exclude the possibility that these viruses were associated with disease development in a minority of patients with RA.

Adult↗

Preventive effect of IgG from EBV-seropositive donors on the development of human lympho-proliferative disease in SCID mice.

The effect of weekly treatments with various gammaglobulin preparations on the development of human B-cell tumors was studied in severe combined immunodeficient (SCID) mice. SCID mice were injected i.p. with human peripheral blood mononuclear cells (PBMCs) from an Epstein-Barr virus (EBV)-seropositive healthy blood donor. Repopulated SCID mice were divided into 7 treatment groups receiving either PBS, 2 commercial gammaglobulin preparations, purified IgG prepared from pooled plasma from EBV-seronegative or -seropositive blood donors, a rabbit anti-serum against EBV envelope glycoprotein gp340 or interferon (IFN)-alpha. All treatments started 1 day after injection of PBMC and continued for 8 weeks. In the PBS-treated control group, 85% of mice developed tumors in the abdominal cavity, mostly with liver metastasis within 150 days. Tumor formation was prevented by treatment with the 2 commercial gammaglobulin preparations as well as by purified IgG from EBV-seropositive donors. In contrast, purified IgG from EBV-seronegative donors, rabbit anti-gp340 anti-serum or IFN-alpha had no effect. Our results indicate that the effect of gammaglobulin is due to the presence of specific antibodies against EBV antigens. Further experiments showed that both the time of onset and the duration of treatment, as well as the dose of Ig, are important factors for prevention of tumor formation. Studies aiming at identification of target antigens for antibodies which prevent lymphoma development may be clinically relevant for prevention and possibly treatment of lympho-proliferative disease in severely immuno-compromised patients.

Abdominal Neoplasms↗

Effects of chronically elevated growth hormone levels on polyamine metabolism in elderly transgenic mice.

The polyamines are ubiquitous, multifunctional aliphatic amines with roles in cell growth, proliferation, differentiation, and malignant development. After growth stimulation, rapid and transient changes occur in polyamine regulatory enzymes. In this respect, acute effects of growth hormone (GH) injection on polyamine metabolic enzymes have earlier been shown. The present investigation comprises studies of the effects on polyamine metabolism of constitutively elevated levels of circulating GH in elderly transgenic (tg+) mice, overexpressing bovine GH. Polyamine levels were found to be constitutively altered in the liver and kidney of tg+ mice. Less changes were found in the spleen and none in the brain. The cellular uptake of polyamines in the liver from tg+ mice showed an increase and considerable changes were observed in the activity of ornithine decarboxylase (ODC) in the liver and kidney and S-adenosylmethionine decarboxylase (AdoMetDC) in the liver. A conspicuous finding was the distribution pattern of ODC protein in the liver and both tg- and tg+ animals. The results show that the effects of chronically elevated GH levels are organ-dependent and complex, and differ from acute GH effects. Despite high ODC activity and polyamine levels in liver, these mice did not display any malignant transformation even at an advanced age, indicating that high ODC activity is not sufficient to induce tumorigenesis in vivo.

Adenosylmethionine Decarboxylase↗

Direct identification by PCR of EBV types and variants in clinical samples.

Both Epstein-Barr virus (EBV) type A and type B, and variants of type A, were identified simultaneously by polymerase chain reaction (PCR) amplification of a DNA region coding for a 13 amino acid repeat in the Epstein-Barr virus nuclear antigen (EBNA) 6. Whereas this region varies extensively in type A isolates, no variation was seen in type B isolates. When a repetitive region in the LMP1-coding region was amplified by PCR, it was possible to distinguish individual variants of type B isolates from each other. Forty-two saliva samples from HIV-1-carrying individuals were examined for the presence of type A and type B virus. Both types and multiple variants of each type were found with a much higher frequency than in the saliva samples from healthy individuals. Type A EBV alone was detected in mouthwash samples from 6 infectious mononucleosis (IM) patients. Both type A and B were detected in the peripheral blood B-lymphocytes (PBL) from 1 healthy individual. The same type A variant was demonstrated both in PBL and in the mouthwash sample from another healthy individual. In this study it was shown that a combination of the EBNA 6- and LMP 1-specific PCRs followed by Southern hybridisation can be used to identify both type A and type B virus, as well as to distinguish between multiple variants of the same strain, in saliva and B-cells from both healthy and immunosuppressed individuals.

Cell Line↗

Importance of delivery systems for growth-stimulatory factors in combination with osteopromotive membranes. An experimental study using rhBMP-2 in rat mandibular defects.

This study was undertaken to investigate whether the choice of carrier/delivery system might be crucial for rhBMP-2 induced osteogenesis beneath osteopromotive membranes. Standardized 5-mm transosseous rat mandibular defects were implanted with recombinant human BMP-2 (rhBMP-2) with or without membrane placement. Two doses of rhBMP-2 (1 microg and 8 microg per defect) were delivered with either collagen sponge or bioabsorbable poly(D,L-lactide-coglycolide) (PLA/PGA) beads plus allogenic blood as carriers. Membrane-covered defects (no BMP) served as controls. Virtually all defects treated with rhBMP-2 without membrane placement already were bridged by new bone after 12 days, independent of rhBMP-2 dose or carrier material, and lateral bone growth was extensive outside the original defect. Membrane placement significantly decreased the stimulatory activity of the BMP, as seen after 12 days, even though osteogenesis was more advanced with rhBMP-2 and membrane compared to membrane alone. After 24 days, defects treated with membrane and rhBMP-2 in the PLA/PGA carrier were totally bridged with regenerated bone, whereas defects covered with membrane without BMP implantation displayed an average bone bridging of only 53%. In an overall analysis of the bone regeneration, the PLA/PGA carrier material was found to be superior to the collagen carrier in the presence of membranes, which was, in turn, more efficient than membrane placement alone (no rhBMP-2). There was much less lateral bone growth when BMP implantation was combined with membrane placement. It was concluded that bone formation beneath osteopromotive membranes may be significantly enhanced by rhBMP-2 and that the delivery system can affect the amount of bone formation obtained. For eventual clinical use, membrane placement has the advantage of keeping the growth-stimulatory implant in place as well as obtaining the desired anatomical contour of the bone formed.

Animals↗

Voltage-gated calcium channels and nonvoltage-gated calcium uptake pathways in the rat incisor odontoblast plasma membrane.

Odontoblasts participate actively in the transport and accumulation of Ca2+ ions to the mineralization front during dentinogenesis. These cells are known to carry membrane-bound ATP-driven pumps and Na+/Ca2+ antiports for Ca2+ extrusion, but little is known about Ca2+ influx mechanisms into these cells. It has been shown that the administration of Ca2+ channel blockers in vivo strongly impairs Ca2+ uptake in the mineral phase during dentinogenesis in the rat; the present in vitro study is aimed at further elucidating odontoblast Ca2+ uptake mechanisms. Dissected rat incisor odontoblasts exhibited a pronounced fluorescence when incubated with a fluorescently-labeled (STBodipy) dihydropyridine, which is specific for voltage-gated Ca2+ channels of the L-type, and this binding was competitively abolished by nifedipine. As assayed by fluorescence spectrometry, odontoblast Ca2+ uptake was enhanced by the agonistic dihydropyridine BAYK-8644 (5 micro;M) as well as by plasma membrane depolarization in a high K+ (120 mM) medium. The Ca2+ uptake after depolarization was impaired by nifedipine (5 micro;M). When treated with the Ca2+-ATPase inhibitor cyclopiazonic acid (CPA; 10 micro;M), a nonvoltage-gated uptake of 45Ca2+ was identified. This uptake was not influenced by nifedipine (20 micro;M) but was impaired by lanthanum ions (200 micro;M). A nonvoltage-gated uptake of Mn2+ into CPA-treated cells could be traced using the fura-2 quenching technique. This CPA-induced Ca2+ flux was not caused by an alteration of the plasma membrane potential, as assayed with di-8-ANEPPS. The results demonstrate that Ca2+ flux into dentinogenically active odontoblasts occurs through voltage-gated Ca2+ channels of the L-type and by nonvoltage-gated, agonist-sensitive Ca2+ uptake pathways.

Animals↗

Specific diagnostic methods for herpesvirus infections of the central nervous system: a consensus review by the European Union Concerted Action on Virus Meningitis and Encephalitis.

BACKGROUND: Herpesvirus infections of the central nervous system are often severe but are fortunately rare. The incidence of these infections has however, increased in recent years as a consequence of an increase in the number of immune-compromised individuals. New diagnostic procedures have improved our ability to diagnose these infections and herpesviruses may yet be implicated as the cause of further neurological diseases with no known aetiology. Methodological standards for selection and evaluation of patient materials are essential to the provision of reliable diagnosis, yet few studies have addressed this important issue. OBJECTIVES: To describe and define methodological standards and reference methodology for diagnosis of herpesvirus infections of the CNS. STUDY DESIGN: Information gathered by literature review. RESULTS: Only for herpes simplex encephalitis is there sufficient data to allow the definition of reference methodology. Good methodological standards exist but few studies have adhered to these standards. As methods for the detection of specific intrathecal antibody synthesis are well established yet under-used in diagnostic virology, the principle of these measurements is reviewed in some detail. CONCLUSIONS: Herpesvirus infections of the CNS are of increasing importance. High quality, multi-centre studies are needed to establish the value of the new diagnostic test procedures if further improvement in the diagnostic sensitivity and specificity of these procedures is to be achieved.

Brain↗

Th1 and Th2 cytokine responses after measles antigen stimulation in vitro in bone marrow transplant patients: response to measles vaccination.

In seronegative autologous bone marrow transplanted (ABMT) patients, a sustained cell-mediated immunity (CMI) has been shown to impair the antibody response after measles vaccination. To investigate if this might be caused by a preferential Th1 cytokine response, interferon (IFN)-gamma and interleukin (IL)-10 production of peripheral blood mononuclear cells (PBMC) was analyzed after measles antigen (M-ag) stimulation in vitro. The non-specific immune response was measured by IFN-alpha, and IL-12 analyses. Fifty non-vaccinated patients following ABMT or allogeneic bone marrow transplantation (BMT) were included. IFN-gamma production was significantly higher in patients with a retained CMI to measles than in patients without (2.3 vs 0.8 IU/ml; P = 0.01). Only a non-significant tendency was seen in IL-10 production (48.6 vs 26.7 pg/ml; NS), whereas no difference was found in IFN-alpha or IL-12 production. A positive correlation between IFN-gamma and IL-10 production was found (r(s) = 0.49; P < 0.001). After vaccination of 14 ABMT children, there was an increase in PBMC IFN-gamma production in vitro (2.5 vs <0.1 IU/ml; P < 0.05), whereas no changes were seen in the IL-10, IFN-alpha, or antibody levels. These results suggest that both Th1 and Th2 cytokine production are increased by M-ag stimulation in patients with a retained CMI to measles, but the Th1 response seems to be stronger. The preferential Th1 stimulation and increase in IFN-gamma production after vaccination may lead to a reduction in the humoral immune response which may explain the negative correlation between antibody production and T cell reactivity prior to vaccination.

Adolescent↗

Varicella-zoster virus (VZV) DNA in cerebrospinal fluid of patients infected with human immunodeficiency virus: VZV disease of the central nervous system or subclinical reactivation of VZV infection?

To identify varicella-zoster virus (VZV) infections of the nervous system in patients infected with human immunodeficiency virus (HIV), polymerase chain reaction (PCR) analysis of cerebrospinal fluid (CSF) samples from 514 consecutive HIV-infected patients with neurological disease was performed to detect VZV DNA. VZV DNA was detected in CSF of 13 (2.5%) of 514 patients. Four of 13 patients had VZV encephalitis or meningoencephalomyelitis. These four patients received intravenous acyclovir therapy; CSF became negative for VZV DNA and clinical conditions improved for two, whereas CSF remained positive for VZV DNA and clinical conditions worsened until death for two. In nine of 13 patients, the neurological symptoms were likely caused by other simultaneous HIV-related complications in the central nervous system. After intravenous therapy with high doses of acyclovir or foscarnet, VZV was cleared from CSF in eight of nine patients. VZV DNA can be detected in CSF of HIV-infected patients in association with either manifestations of neurological VZV disease or subclinical reactivation of VZV infection. Antiviral treatment may be effective in suppressing VZV replication in the nervous system.

AIDS-Related Opportunistic Infections↗