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Biomedical subjects

P Hertzog

Publications and source records attributed to P Hertzog.

At least 19 recordsLinked to original sources

Cathepsin K knockout mice develop osteopetrosis due to a deficit in matrix degradation but not demineralization.

Cathepsin K is a cysteine protease expressed predominantly in osteoclasts. Activated cathepsin K cleaves key bone matrix proteins and is believed to play an important role in degrading the organic phase of bone during bone resorption. Mutations in the human cathepsin K gene have been demonstrated to be associated with a rare skeletal dysplasia, pycnodysostosis. The degree of functional activity of the mutated forms of cathepsin K in these individuals has not been elucidated, but is predicted to be low or absent. To study the role of cathepsin K in bone resorption, we have generated mice deficient in the cathepsin K gene. Histologic and radiographic analysis of the mice revealed osteopetrosis of the long bones and vertebrae, and abnormal joint morphology. X-ray microcomputerized tomography images allowed quantitation of the increase in bone volume, trabecular thickness, and trabecular number in both the primary spongiosa and the metaphysis of the proximal tibiae. Not all bones were similarly affected. Chondrocyte differentiation was normal. The mice also had abnormalities in hematopoietic compartments, particularly decreased bone marrow cellularity and splenomegaly. The heterozygous animals appeared normal. Close histologic examination of bone histology revealed fully differentiated osteoclasts apposed to small regions of demineralized bone. This strongly suggests that cathepsin K-deficient osteoclasts are capable of demineralizing the extracellular matrix but are unable to adequately remove the demineralized bone. This is entirely consistent with the proposed function of cathepsin K as a matrix-degrading proteinase in bone resorption.

Animals

Type I IFNs enhance the terminal differentiation of dendritic cells.

This study identifies type I IFNs as activating cytokines in a serum-free system in which human dendritic cells (DC) were generated from CD34+ progenitor cells. After 14 days of culture in GM-CSF, TNF-alpha, and IL-4, CD34+ progenitors gave rise to a population of large, immature DC expressing CD1a and CD11b but lacking CD14, CD80, CD83, CD86, and CMRF44. During the next 2 wk, this population spontaneously matured into nonadherent, CD1a(low/-), CD11b(low/-), CD14-, CD80+, CD83+, CD86+, CMRF44+ DC with high allostimulatory activity in the MLR. To examine which factors influenced this maturation, 25 different cytokines or factors were added to the immature DC culture. Only type I IFNs (alpha or beta) accelerated this maturation in a dose-dependent manner, so that after only 3 days the majority of large cells acquired the morphology, phenotype, and function characteristics of mature DC. Furthermore, supernatants from cultures containing spontaneously maturing DC revealed low levels of endogenous IFN production. Because of the similarity of the activation of DC in our culture system with the phenotypic and functional changes observed during Langerhans cells activation and migration in vivo, we investigated the effect of IFN-alpha on human Langerhans cell migration. IFN-alpha also activated the migration of human split skin-derived DC, demonstrating that this effect was not limited to DC derived in vitro from hemopoietic progenitor cells. DC activation by type I IFNs represents a novel mechanism of immunomodulation by these cytokines, which could be important during antiviral responses and autoimmune reactions.

Adjuvants, Immunologic

Recent advances in cytokines, cytokine receptors and signal transduction.

The Fifth Annual Conference of the International Cytokine Society was held on November 9-13, 1997 at Lake Tahoe, Nevada. This meeting kept up with the tradition of exciting talks and posters, presenting significant advances in our understanding of the cytokine world. As we advance our knowledge, a complex network of interacting cellular communication pathways is revealed. Targeted disruption of genes coding for cytokines, their receptors and their cytoplasmic signaling molecules, became the standard method for a proper assessment of the role of a given cytokine in vivo. Yet, fundamental questions remain unresolved. For instance, it is not yet known how signal specificity is maintained when different cytokine receptors use the same cytoplasmic signaling pathways. The following summary is not comprehensive, rather, it is a collection of representative communications. Many more top quality studies were presented at the meeting and we apologize for not being able to review all of them here.

Animals

Administration of imiquimod, an interferon inducer, in asymptomatic human immunodeficiency virus-infected persons to determine safety and biologic response modification.

A phase I study to determine safety, maximum tolerated dose, and biologic response during multiple once-a-week administration of oral imiquimod, an immune response modifier, was conducted in 12 adults with early human immunodeficiency virus (HIV) infection. All completed the dose-escalation phase of weekly dosing at 100-mg increments and received at least one maintenance dose, 100 mg below the patient's toxic dose, for 12 weeks. Dose-limiting toxicity occurred in 3 patients at 200-mg, 5 at 300-mg, and 3 at 400-mg dose levels. One tolerated the 500-mg dose without dose-limiting toxicity. Dose-limiting toxicities included fatigue, fever, malaise, increased transaminases, hypotension, vomiting, and depression. Seven of 12 completed 12 weeks of maintenance. At > or = 200 mg of imiquimod, all patients had biologic responses, measured by elevations in serum interferon, beta2-microglobulin, and neopterin levels. Imiquimod induced pronounced levels of circulating interferon in asymptomatic HIV-infected persons, with variable effect on virus load.

Administration, Oral

[Diaphragmatic eventration in adults. Apropos of 20 cases].

Twenty adults with a mean age of 49 were operated on between 1972 and 1980 for eventration of the diaphragm. The etiology was probably traumatic in 11 cases; it was congenital in 2 and degenerative in 7. The functional signs were usually respiratory (55%) or digestive (10%). In all cases, the diagnosis was based on standard fluoroscopy showing superelevation of the hemidiaphragm, which was visualized fluoroscopically as immobile while a pneumoperitoneum showed a absense of any tear. Spirography confirmed a restrictive deficit which was sited broncho-spirometrically on the eventration side. Surgical repair was achieved in most cases by thoracotomy (19 cases) and consisted in plication (17 cases) or incision followed by suturing of the overlapping edges of the muscle (3 cases). Postoperative complications included the death of the patient with multiple trauma, on the eight postoperative day, as a result of the cerebrovascular accident, and in another case rutpure of the repair on the second day, requiring a second operation. Apart from one patient who died as a result of a fatal accident two years postoperatively, all the surgically treated cases are alive, and, with one exception, symptom free. After an average follow up period of 2 years and 2 months, the control respiratory function tests show a 21% improvement in vital capacity and a 20% increase in FEV1. On the basis of these results, the authors conclude that this functional surgery is justified in the case of patients presenting with typical clinical symptoms, and worth considering in cases where respiratory function tests show a restrictive deficit, but also in patients who do not complain of breathlessness.

Adult

The apparent inhibition of urothelial DNA synthesis in neonatal rats by dietary saccharin.

[3H]Thymidine ([3H]TdR) incorporation into urothelial DNA of male neonatal rats was measured autoradiographically at birth and during the first 3 weeks of life. The rats were derived from control parents and those fed saccharin (1, 3, 5 and 7.5%) in the diet from before pregnancy. [3H]TdR incorporation was inhibited and there were more lightly labeled cells (compared with controls), in all the saccharin-exposed rats in a rough dose-dependent manner. The results, in comparison with controls, suggest that saccharin exposure in utero causes DNA damage in the neonatal urothelium manifesting as reduced thymidine incorporation and a greater proportion of lightly labeled cells.

Animals

Differential effect of several inducers on hepatic and mammary benzo(A)pyrene metabolism in rat and hamster.

Rat and hamster mammary gland, in comparison with the liver, were examined for their in vitro ability to metabolize polycyclic aromatic hydrocarbons, and for the effects of pretreatment with various mixed function oxidase inducers on this metabolism. Hamster mammary microsomal benzo(a)pyrene (BP) hydroxylase activity was 4-fold greater than that in the rat, and this activity was induced 3- to 5-fold in the hamster, and 7- to 13-fold in the rat, by pretreatment with 7,12-dimethylbenz(a)anthracene, beta-naphthoflavone, Aroclor 1254 or 3-methylcholanthrene. Hamster hepatic microsomal BP-hydroxylase activity was 80-fold greater than in the rat. Whereas pretreatment with these enzyme inducers enhanced rat hepatic activity by 20- to 30-fold, little effect of "inducers" was observed on the hamster hepatic enzyme, even when the formation of the various BP metabolites was determined by high pressure liquid chromatography.

Animals

[Arrhythmia in patients with demand pacemakers caused by faulty conduction material in the electrode. 36 cases--Value of Holter monitoring].

36 cases of paroxysmal pacing failure in patients with demand pacemakers are reported. The possible causes of pacing lead problems, excluding inhibition by muscular contractions, are related to the distal extremity at the electrode itself, on the lead (rupture) or at the connection between the lead and the pulse generator. The recognition of the precise cause of the pacing failure leads to appropriate treatment. These arrrythmias are not always easy to detect and Holter monitoring is a very useful means of diagnosis.

Arrhythmias, Cardiac