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Biomedical subjects

B Kruse

Publications and source records attributed to B Kruse.

At least 19 recordsLinked to original sources

Enhanced expression and clinical significance of CC-chemokine MIP-3 alpha in hepatocellular carcinoma.

Hepatocellular carcinoma (HCC) is one of the most frequent visceral neoplasms worldwide. Using RT-PCR, ELISA, microdissection and immunohistochemistry, we investigated the expression profiles of CCL19, CCL20, CCL21 and CXCL12 and their receptors in tumourous and tumour neighbouring tissues from patients with HCC and in nonmalignant liver lesions, respectively. All chemokines were found to be expressed in normal liver and HCC tissues, yet CCL20 was the only chemokine showing significant upregulation in HCC tissues. Clinicopathological analysis revealed a distinct increase in CCL20 expression rates in HCC tissues of grade III tumours in comparison to HCC tissues from grade II tumours. On mRNA level, only chemokine receptor CCR6 revealed significant upregulation in HCC tissues. However, immunohistochemical studies indicated a marked CCR6 expression accumulated in a streak of normal cells along the tumour invasion front in all our HCC specimens which could provide a stimulative signal for the tumour to further expand. The present findings show significant overexpression of CCL20 in the tumour tissues and marked overexpression of the corresponding receptor CCR6 in the tumour invasion front of HCC patients in comparison to normal liver. Moreover, CCL20 expression was found to correlate with tumour grade and therefore, we suggest that the CCL20/CCR6 system may be involved in hepatocarcinogenesis.

Adult↗

Congenital adrenal hyperplasia - how to improve the transition from adolescence to adult life.

Congenital adrenal hyperplasia (CAH) is caused by a defect in the biosynthesis of cortisol that results in maximal activity of the hypothalamic-pituitary adrenal axis with hyperplasia of the adrenals and hyperandrogenism due to the accumulation of androgen precursors. In the salt-wasting subtype of the disorder, which accounts for appr. 75 % of patients with classical CAH, patients are unable to synthesise sufficient amounts of aldosterone and are prone to life-threatening salt-losing crises, whereas the simple virilising form is predominantly characterized by clitoris hypertrophy and posterior labial fusion. In addition, a non-classical variant can be discerned which in most cases is diagnosed at the time of puberty or early adolescence when hirsutism and menstrual irregularities may occur. The vast majority of CAH patients have 21-hydroxylase deficiency (90 - 95 %). Less common forms, such as 11beta-hydroxylase deficiency, will not be discussed in this review. Unfortunately, a considerable number of CAH patients is lost to regular and competent follow-up once they move out of paediatric care. This is most probably the result of insufficient co-operation between paediatric and adult endocrinologists at the time of transition from adolescence to adulthood. Furthermore, there is a lack of clinical guidance regarding psychosexual development in these patients. In this overview we will focus on special aspects of CAH treatment in adolescence and adulthood, and report on our 10-year experience with a transfer system for endocrine patients from paediatric to internal medical care, known as the "Kieler Modell". For practical purposes, we here provide charts for follow-up of CAH patients that can be adapted for use in any endocrine outpatient clinic.

Adolescent↗

Epilepsy surgery outcome in children with focal epilepsy due to tuberous sclerosis complex.

Tuberous sclerosis complex (TSC) is frequently associated with focal epilepsy due to cerebral tubers. Seizures are the first symptoms in most patients with brain involvement. These epilepsies are frequently severe, drug-resistant and may have a negative impact on the child's global development. Although most epilepsies are multicentric, these patients may be candidates for epilepsy surgery, if it is possible to determine a leading epileptogenic tuber. Nine patients with TSC were examined with long-term video-EEG monitoring, different neuroimaging techniques and neuropsychological tests. A main epileptogenic tuber could be identified in all of our patients. We found good correlations between neuroimaging and EEG. Surgery was performed in eight patients. Seizure outcome was good in all. Two patients became seizure-free, one patient had a single prolonged seizure five days postoperatively, four patients had a significant seizure reduction of more than 75 % and one patient had a seizure reduction of more than 50 % after surgery without additional neurologic deficits. In conclusion, patients with TSC and drug-resistant epilepsy may benefit from epilepsy surgery with reduction in frequency and severity of seizures as well as improved mental and behavioural development leading to a better quality of life. In view of recent developments in functional and metabolic imaging, primary epileptogenic lesions will be more easily detectable in patients with diffuse brain involvement in TSC and surgical treatment may be more specifically applied at an earlier age to a selected subgroup of patients with this disorder.

Child↗

Light scattering and ink penetration effects on tone reproduction.

Light scattering, or the so-called Yule-Nielsen effect, and ink penetration into the substrate paper play important roles in tone reproduction. We develop a framework in which the influences of both of these effects on the reflectance and tristimulus values of a halftone sample are investigated. The properties of the paper and the ink and their bilateral interaction can be parameterized by the reflectance Rp(o) of the substrate paper, the transmittance Ti of the ink layer, the parameter gamma describing the ink penetration, and p describing the Yule-Nielsen effect. We derive explicit expressions that relate the reflectance of the ink dots (Ri), the paper (Rp) and the halftone image (R) as functions of these parameters. We also describe the optical dot gain as a function of these parameters. We further demonstrate that ink penetration leads to a decrease in optical dot gain and that scattering in the paper results in the printed image's being viewed as more saturated in color.

Journal Article↗

Management of side effects and complications in medical abortion.

Side effects are an expected part of medical abortion; some, such as pain and bleeding, result from the abortion process itself and are generally managed with orally administered analgesics and counseling. True medication side effects most commonly include nausea, vomiting, diarrhea, and warmth or chills. Complications of medical abortion usually represent an extreme or severe side effect. Large series have reported transfusion rates of <1%. Because of the infrequency of uterine instrumentation, postabortal endometritis appears to be rare with medical abortion. As with early surgical abortion, the clinician must remain aware of the possibility for ectopic pregnancy. Overall approximately 2% to 10% of patients will require surgical intervention for control of bleeding, resolution of incomplete expulsion, or termination of a continuing pregnancy. Understanding the types of side effects and complications that can occur will enable the clinician to counsel patients properly as well as to understand when medical intervention is necessary during the medical abortion process.

Abortifacient Agents↗

Advanced practice clinicians and medical abortion: increasing access to care.

Early abortion is one of the safest and most common surgical procedures in the United States, yet it carries a significant stigma for both women and health care providers. Due to a number of factors, including political maneuvering and antichoice violence, the availability of physicians trained and willing to provide abortion has decreased dramatically over the past decades, thereby compounding the obstacles to early termination of pregnancy. At the same time, roles for nurse-midwives, nurse practitioners, and physician assistants have expanded in primary care as well as in specialty practice. Medical abortion is generating renewed interest in abortion care and is potentially more accessible to providers of primary care, women's health, and family planning services. Its provision by qualified advanced practice clinicians working with their physician colleagues promises to significantly improve the delivery of abortion services to women.

Abortion, Induced↗

Regional age dependence of human brain metabolites from infancy to adulthood as detected by quantitative localized proton MRS.

Regional changes of metabolite concentrations during human brain development were assessed by quantitative localized proton magnetic resonance spectroscopy in vivo. Apart from measurements in young healthy adults, the study was based on regional spectra from 97 children who were either healthy or suffered from mental retardation, movement disorders, epilepsies, neoplasm, or vascular malformation. Metabolite quantitation focused on cortical gray and white matter, cerebellum, thalamus, and basal ganglia in six age groups from infancy to adulthood. During infancy and childhood, the concentration of the neuroaxonally located N-acetylasparate increased in gray matter, cerebellum, and thalamus, whereas a constant level was detected in white matter. These findings are in line with regional differences in the formation of synaptic connections during early development and suggest a role of N-acetylaspartate as a marker of functioning neuroaxonal tissue rather than of the mere presence of nerve cells. This view is further supported by high concentrations of taurine in gray matter and cerebellum during infancy, because taurine is also believed to be involved in the process of synapse formation. Remarkably, in basal ganglia both N-acetylaspartate and taurine remain constant at relatively high concentrations. Other metabolite changes during maturation include increases of N-acetylaspartylglutamate, especially in thalamus and white matter, and a decrease of glutamine in white matter. Despite regional differences and some small changes during the first year of life, the concentrations of creatine, phosphocreatine, choline-containing compounds, myoinositol, and glutamate remain constant afterward. The creatine to phosphocreatine concentration ratio yields 2:1 throughout the human brain irrespective of region or age. The observed increase of the proton resonance line-width with age is most pronounced in basal ganglia and corresponds to the age-related and tissue-dependent increase of brain iron.

Adolescent↗

Proton magnetic resonance spectroscopy of linear nevus sebaceus syndrome.

Cerebral metabolites of a patient with linear nevus sebaceus syndrome and hemimegalencephaly were determined at 18 and 30 months of age by localized proton magnetic resonance spectroscopy. Clinically, the patient suffered from hemiparesis and epileptic seizures. At 18 months of age, spectroscopy of the enlarged hemisphere revealed decreased N-acetylaspartate mainly in parietal white matter relative to the unaffected hemisphere. One year later, white matter studies indicated both reduced N-acetylaspartate and elevated myoinositol. In insular gray matter the previously normal concentrations of creatine, choline-containing compounds, myoinositol, and glutamine were increased. The findings are consistent with mild neuroaxonal loss or damage (white matter) and glial proliferation (cortical gray and white matter) of the affected hemisphere. The metabolic disturbances indicate disease progression but are less pronounced than in older patients with hemimegalencephaly.

Aspartic Acid↗

Quantitative proton magnetic resonance spectroscopy of childhood adrenoleukodystrophy.

Cerebral metabolic disturbances in patients with childhood adrenoleukodystrophy (ALD) were assessed by quantitative localized proton MRS. Patient monitoring by follow-up MRS studies served to identify putative markers for disease onset and progression. Whereas normal-appearing white matter of neurologically asymptomatic patients is characterized by slightly elevated concentrations of choline-containing compounds (Cho), an increase of both Cho and myo-inositol (Ins) seems to indicate the onset of demyelination. Markedly elevated concentrations of Cho, Ins, and glutamine in affected white matter reflect active demyelination and glial proliferation. A simultaneous reduction of the concentrations of N-acetylaspartate and glutamate is consistent with neuronal damage or loss. The observation of elevated lactate is in line with inflammation and/or macrophage infiltration. The more severe metabolic disturbances in cerebral ALD correspond to progressive demyelination, neuroaxonal loss and gliosis leading to clinical deterioration and eventually death. The detection of MRS abnormalities before the onset of neurological symptoms may help in the selection of patients for bone marrow transplantation (BMT). Stabilization and partial reversal of metabolic abnormalities is demonstrated in a patient after BMT.

Adolescent↗

Progression of X-linked adrenoleukodystrophy under interferon-beta therapy.

The cerebral phenotype of X-linked adrenoleukodystrophy (ALD) is a rapidly progressive neurodegenerative disorder characterized by a cerebral inflammatory response and elevated very long-chain fatty acids (VLCFA). Interferon-beta (INFB) is known to suppress the synthesis of tumour necrosis factor alpha and interferon-gamma, which have been reported to be elevated in the margin of the areas of demyelination in ALD brains. We report on treatment with interferon-beta in 8 patients with cerebral ALD, who additionally received glycerol trioleate/glycerol trierucate. INFB-1 a (Rebif, Serono, Switzerland) was given subcutaneously once a week, 3 million units for the first 3 months and 6 million units for the next 9 months. All patients showed an unimpeded progression of neurological symptoms during INFB therapy. Therapy was stopped within 6 months in 4 patients because of the fast neurological deterioration with loss of walking. In all patients the MRI demonstrated a progression of demyelination with a qualitatively unchanged gadolinium enhancement. Further studies are needed to elucidate the pathomechanism of demyelination in ALD in order to find an effective therapy for cerebral ALD patients.

Adolescent↗

Cognitive and brain magnetic resonance imaging findings in adrenomyeloneuropathy.

Neuropsychological functioning and brain magnetic resonance imaging (MRI) were evaluated in 84 men with adrenomyeloneuropathy (AMN). MRI was normal in 61%, the "pure AMN" group, while 39%, the "cerebral AMN" group, showed brain white matter abnormalities. Except for mild deficits in psychomotor speed and visual memory, neuropsychological function was normal in pure AMN. Most patients with cerebral AMN had normal IQ and language but evidenced impaired psychomotor speed, spatial cognition, memory, and executive functions. Patients with MRI evidence of very severe cerebral disease had global and language impairment as well, and deficits in all patients were highly correlated with degree of brain MRI involvement.

Adrenoleukodystrophy↗

Visual system abnormalities in adrenomyeloneuropathy.

We studied the visual system in 59 men with adrenomyeloneuropathy. Pattern-reversal visual evoked potentials, magnetic resonance imaging, and clinical examination revealed that visual pathways are affected in 63% of patients, involving the optic discs, optic nerves, lateral geniculate bodies, optic radiations, and parietooccipital cortex. This indicates both primary demyelination of the optic nerves and discs, and more diffuse involvement of postchiasmal structures.

Adrenoleukodystrophy↗

Cerebral proton magnetic resonance spectroscopy in Rett syndrome.

Combined MRI/MRS studies were performed in 9 girls with Rett syndrome of different ages. NAA, as marker of neuronal tissue, was found to decrease with increasing age. There was no evidence for a defective energy metabolism. The data point towards a probably secondary degenerative process in the pathogenesis of Rett syndrome.

Adolescent↗

Hemimegalencephaly: localized proton magnetic resonance spectroscopy in vivo.

Two children with hemimegalencephaly were examined by magnetic resonance imaging (MRI) and localized proton MR spectroscopy (MRS). In both cases, structural changes in the enlarged hemisphere included pachy- or polymicrogyria and gliosis of white matter. Associated metabolic disturbances included a dramatic reduction of glutamate and N-acetylaspartate (NAA) in white matter. Less severe or no alterations were noted in cortical gray matter, basal ganglia, and cerebellum. The older child (13 years) showed increased myoinositol in both gray and white matter as well as markedly increased choline-containing compounds in gray matter. Both children also had mildly decreased NAA levels in the white matter of the contralateral hemisphere. The spectroscopic findings indicate loss of vital neuroaxonal tissue and glial cell proliferation. Metabolic disturbances were more pronounced in the older child. The normal-appearing hemisphere was mildly affected in both cases.

Brain↗