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Biomedical subjects

K Huff

Publications and source records attributed to K Huff.

At least 19 recordsLinked to original sources

Potentiation of responses to AMPA on central neurones by LY392098 and LY404187 in vivo.

Enhancement of AMPA receptor mediated synaptic excitation has the potential to aid in the treatment of several psychiatric conditions. To test such claims there is a need to develop more potent compounds than those presently available and to demonstrate that they cross the blood-brain barrier to affect responses at central AMPA receptors. We have now completed in vivo tests with two such compounds, the newly discovered biarylpropylsulfonamides, LY392098 and LY404187, on spinal and hippocampal neurones in anaesthetised rats. In the initial study on spinal neurones, LY392098 (30-1000 microg/kg i.v.) dose-dependently increased responses to iontophoretically administered AMPA but not those to NMDA. Subsequently in a more detailed follow-up study on hippocampal neurones, LY392098 (1-100 microg/kg i.v.) and LY404187 (1-100 microg/kg i.v.) enhanced in a dose-dependent manner responses to AMPA. Responses to NMDA were also enhanced but to a less extent. Such enhanced responses to NMDA, but not those to AMPA, were reduced by the NMDA antagonist, ketamine (0.5-1 mg/kg i.v.) whereas the selective AMPA antagonist, LY300168 (GYKI53655; 1 mg/kg i.v.), reduced responses to both NMDA and AMPA. LY392098 also potentiated the synaptic excitation of dentate granule cells following perforant path stimulation. These combined data show that, at doses not dissimilar to those affecting behavioural responses (1-1000 microg/kg; see accompanying papers), the two new drugs cross the blood-brain barrier to affect directly the sensitivity of central AMPA receptors and enhance synaptic excitation in vivo.

Action Potentials↗

Mosaic tetrasomy 8q: inverted duplication of 8q23.3qter in an analphoid marker.

We observed an analphoid marker chromosome stable through cell division in a 16-year-old girl with developmental delay, short stature, limb contractures, and ovaries containing multiple cysts. She also developed myasthenia gravis at 15 years. The marker chromosome, present in 75% of metaphases (and in 90% of transformed lymphoblastoid cells), was C-band negative, and had no pan alpha-satellite sequences detectable by fluorescence in situ hybridization (FISH). The 8q origin of the marker was determined by use of subtelomeric probes and was confirmed by chromosome 8 painting probes. The marker was shown to be an inversion duplication of 8q when subtelomeric, telomeric, and c-myc FISH probes hybridized to both ends of the marker. The karyotype was 47,XX,+inv dup(8)(qter--> q23.3::q23.3-->[neocen]-->qter), resulting in tetrasomy for 8q23.3qter. The parents had normal karyotypes. Centromeric proteins CENP-C and CENP-E were present, but alpha associated centromere protein CENP-B was absent at a position defining a neocentromere.

Abnormalities, Multiple↗

Sudden unexpected death associated with HHV-6 in an adolescent with tuberous sclerosis.

A 14-year-old female with tuberous sclerosis and history of seizures was found dead in bed at home 3 days after she had been assessed as doing well at a routine neurology clinic appointment. She had been treated with an antiepileptic drug, felbamate, for 36 months and had been seizure-free except for one seizure episode 5 months before death. Postmortem examination revealed cerebral edema, with uncal and tonsillar herniation, and pulmonary edema, consistent with seizure-induced apnea. Multiple microglial nodules with mature perivascular lymphocytic cuffing and diffuse infiltrates were identified around subependymal tuberous sclerosis giant cell nodules. Immunostaining and electron microscopy revealed human herpesvirus-6-infected macrophages, astrocytes, lymphocytes, and endothelial cells in the subependymal tuberous sclerosis lesions and choroid plexus. Subacute human herpesvirus-6 encephalitis is postulated to have precipitated a seizure and thus sudden unexpected death in epilepsy in this otherwise stable adolescent patient.

Adolescent↗

Physiologic MRI of a tumefactive multiple sclerosis lesion.

Structural and physiologic MRI were performed after subacute onset of left hemiparesis in a patient with MS. MRI showed a large ring-enhancing lesion with surrounding edema and mass effect; differential diagnosis included a neoplasm or a large MS plaque. Physiologic MRI showed reduced blood flow and magnetization transfer, as well as increased diffusion, in the large lesion. Because these findings suggested a tumefactive MS plaque rather than a neoplasm, the patient received steroid treatment for acute MS exacerbation. Three months later the patient improved clinically and on MRI.

Adult↗

Prolonged response to carboplatin in an infant with brain stem glioma.

Adults and children with brain stem gliomas have a mean survival time of 15 months after radiation therapy (XRT). Infants with this tumor present additional complexities for treatment because of possible neurotoxicity of the radiation to the developing brain. We report a 15-month-old child with biopsy-proven brain stem glioma with clinical and radiographic evidence of disease progression. She was treated with 24 monthly courses of carboplatin without radiation therapy and has had a 39+ month response. The clinical response started after 3 months and the radiographic evidence was documented at 10 months by magnetic resonance imaging. The toxicity was minimal. Longitudinal neuropsychological assessment demonstrated continued improvement at 36 months post diagnosis but with some motor functioning below expected age levels. Cervico-medullary astrocytoma in a young patient may be the appropriate clinical setting for future trials of chemotherapy without XRT.

Brain Neoplasms↗

Chronic confusional state.

An acute confusional state after infarction in the distribution of the right middle cerebral artery has been described. Patient recovery usually is excellent. Some patients, however, do not improve, resulting in a chronic confusional state.

Aged↗

Growth regulatory peptide production by human breast carcinoma cells.

The mechanisms by which human breast cancers regulate their own growth have been studied by us in an in vitro model system. We showed that specific growth factors (IGF-I, TGF alpha, PDGF) are secreted by human breast cancer cells. A variety of experiments suggest that they are involved in tumor growth and progression. These activities are induced by estradiol in hormone-dependent breast cancer cells and secreted constitutively by estrogen-independent cells. Concentrates of conditioned medium derived from breast cancer cells can induce the growth of hormone-dependent cells in vivo in athymic nude mice. Hormone-dependent breast cancer cells also secrete TGF beta. TGF beta is growth inhibitory. Growth inhibitors such as antiestrogens or glucocorticoids increase TGF beta secretion. An antiestrogen-resistant mutant of MCF-7 cells does not secrete TGF beta when treated with antiestrogen, but is growth inhibited when treated with exogenous TGF beta. Thus, TGF beta functions as a negative autocrine growth regulator and is probably responsible for some of the growth inhibitory effects of antiestrogens.

Breast Neoplasms↗

Growth regulation of human breast carcinoma occurs through regulated growth factor secretion.

We describe studies on human breast cancer in which it is shown that specific growth factors (IGF-I, TGF alpha, PDGF) are secreted by human breast cancer cells and likely to be involved in tumor growth and progression. These activities are regulated by estradiol in hormone-dependent breast cancer and secreted constitutively by hormone-independent cells. These growth factor activities can induce the growth of hormone-dependent cells in vivo in athymic nude mice. Hormone-dependent breast cancer cells also secrete TGF beta, a growth-inhibitory substance, when treated with antiestrogens. TGF beta functions as a negative autocrine growth regulator and is responsible for some of the growth-inhibitory effects of antiestrogens.

Animals↗

8th San Antonio Breast Cancer Symposium--Plenary lecture. Autocrine and paracrine growth regulation of human breast cancer.

We consider the hypothesis that estrogen control of hormone dependent breast cancer is mediated by autocrine and paracrine growth factors secreted by the breast cancer cells themselves. Though we show direct, unmediated effects of estrogen on specific cell functions, we also provide evidence that human breast cancer cells secrete a collection of growth factors (IGF-I, TGF alpha, TGF beta, a PDGF-like competency factor, and at least one new epithelial colony stimulating factor). Some of these are estrogen-regulated in hormone dependent cells, and are constitutively increased in cells which acquire independence either spontaneously or by ras transfection. Collectively, the secreted growth factors are capable of promoting tumor formation by MCF-7 cells in nude mice, though not to the same extent as estrogens. There would seem to be potential for clinical intervention in the autocrine and paracrine control of breast cancer cells, including some cells which are no longer dependent on estrogens.

Breast Neoplasms↗

Autocrine and paracrine growth regulation of human breast cancer.

Previous work from our laboratory has demonstrated that human breast cancer (BC) cells in culture can be stimulated by physiologic concentrations of estrogen. In an effort to further understand this process, we have examined the biochemical and biological properties of proteins secreted by human BC cells in vitro. We have developed a defined medium system which simultaneously allows the collection of factors secreted by the BC cells, facilitates their purification and allows for an unequivocal assay of their effect on other BC cells. By both biochemical and radioimmunoassay procedures, MCF-7 cells secrete large quantities of IGF-I-like activity. The cells contain receptors for IGF-I and are stimulated by physiologic concentrations of IGF-I. Multiple additional peaks of growth stimulatory activity can be obtained by partial purification of conditioned media from human BC cells by sequential dialysis, acid extraction and Biogel P60 chromatography. These peaks are induced up to 200-fold by physiologic concentrations of estrogen. Several of these peaks cross-react in a radioreceptor assay with EGF and are thus candidates for transforming growth factors. Monoclonal antibodies (MCA) have been prepared which react with secreted proteins from the MCF-7 cells. One of these MCAs binds to material from MCF-7 and ZR-75-1 hormone-dependent BC cells only when these two lines are treated with estrogen but reacts with conditioned medium from several other hormone-independent cell lines in the absence of estrogen stimulation. This MCA is currently undergoing further characterization and evaluation of its biological potency. We conclude that with estrogen stimulation, hormone-dependent human BC cells secrete peptides which when partially purified can replace estrogen as a mitogen. Their role as autocrine or paracrine growth factors and their effects on surrounding nonneoplastic stroma may suggest a means of interfering with tumor proliferation.

Animals↗

A novel nuclear form of estradiol receptor in MCF-7 human breast cancer cells.

Nuclear estrogen receptor from MCF-7 cells undergoes a time-dependent, hormone-inducible transformation to a form that is less extractable from nuclei and less exchangeable with ligand. This receptor-modifying, intranuclear event is independent of receptor loss (processing) and appears associated with hormone responsiveness (progesterone-receptor induction) in these cells. The magnitude of receptor loss, however, is variable and apparently not a prerequisite for hormone action to induce progesterone receptor.

Breast Neoplasms↗

Influence of cell proliferation and cell cycle phase on expression of estrogen receptor in MCF-7 breast cancer cells.

In the present study, the effects of cell cycle phase and proliferation rate on the expression of specific estrogen binding activity were explored in hormone-dependent human breast cancer cells. A technique was developed to alter the proliferative rate of MCF-7 cells by plating at different densities. The doubling time ranged from 20 to 48 hr, showing a negative relation to the number of plated cells. Slowly proliferating cells had accumulated more than twice as much estrogen receptor (ER) activity as did fast-proliferating cells. Exposure of exponentially growing cells to isoleucine-deficient medium resulted in decreased thymidine incorporation and disappearance of detectable cellular ER activity. Overall protein synthesis was reduced by only 30% in cells growing in isoleucine-free medium. At 24 hr after release from isoleucine deprivation, ER levels are fully restored, although thymidine incorporation does not resume for an additional 6 to 8 hr, and increases in cell number are not seen for 24 hr. Exposure of exponentially growing cells to 2 mM thymidine for 24 hr produced partially synchronized MCF-7 cells (approximately 70%). Six hr after release from excess thymidine, cells reached S phase; after 9 hr, G2; and after 18 hr, G1. ER levels immediately and, 6 hr after release, remained unchanged, showed a slight increase at 9 hr, and showed an increase of about 50 to 60% at 18 hr. These data suggest that: (a) ER binding activity and DNA synthesis can be dissociated; (b) ongoing protein synthesis is necessary for maintenance of cellular ER activity; and (c) ER is apparently synthesized throughout the cell cycle, with some evidence that this is predominantly in G1 and G2.

Breast Neoplasms↗

Nerve growth factor-induced alteration in the response of PC12 pheochromocytoma cells to epidermal growth factor.

PC12 cells, which differentiate morphologically and biochemically into sympathetic neruonlike cells in response to nerve growth fact, also respond to epidermal growth factor. The response to epidermal growth factor is similar in certain respects to the response to nerve growth fact. Both peptides produce rapid increases in cellular adhesion and 2-deoxyglucose uptake and both induce ornithine decarboxylase. But nerve growth factor causes a decreased cell proliferation and a marked hypertrophy of the cells. In contrast, epidermal growth factor enhances cell proliferation and does not cause hypertrophy. Nerve growth factor induces the formation of neuritis; epidermal growth factor does not. When both factors are presented simultaneously, the cells form neurites. Furthermore, the biological response to epidermal growth fact, as exemplified by the induction of ornithine decarboxylase, is attenuated by prior treatment of the cells with nerve growth factor. PC12 cells have epidermal growth factor receptors. The binding of epidermal growth factor to these receptors is rapid and specific, and exhibits an equilibrium constant of 1.9 x 10(-9) M. Approximately 80,000 receptors are present per cell, and this number is independent of cell density. Treatment of the cells with nerve growth factor reduces the amount of epidermal growth factor binding by at least 80 percent. The decrease in receptor binding begins after approximately 12-18 h of nerve growth factor treatment and is complete within 3 d. Scratchard plots indicate that the number of binding sites decreases, not the affinity of the binding sites for epidermal growth factor.

Animals↗

Direct inhibition of growth and antagonism of insulin action by glucocorticoids in human breast cancer cells in culture.

We have examined the interaction of dexamethasone with the ZR75-1 human breast cancer cell line to determine if glucocorticoids might directly inhibit growth of breast cancer cells. Growth of these cells in serum-free medium was stimulated significantly by physiological concentrations of insulin (0.1 to 1.0 nM). Pharmacological concentrations of dexamethasone (10 nM) reduced cell number below that found in controls and nearly abolished the effect of insulin after several days in culture. Thymidine and uridine, but not leucine, incorporation into macromolecules or acetate incorporation into fatty acids were similarly inhibited by dexamethasone in the presence of absence of insulin. Dexamethasone did not inhibit insulin effects by altering insulin receptor affinity or concentration, as determined by Scatchard analyses of insulin binding. Net thymidine uptake into the trichloroacetic acid-soluble fraction of the cell was stimulated by insulin and inhibited by dexamethasone also inhibited thymidine kinase activity multiple potential sites of glucocorticoid action that directly oppose the effects of insulin. They also suggest that glucocorticoids have a direct inhibitory effect on proliferation of human breast cancer cells, which may help explain breast tumor regression following pharmacological glucocorticoid therapy.

Acetates↗

A demonstration of androgen and estrogen receptors in a human breast cancer using a new protamine sulfate assay.

Separate receptors for estrogen and androgen are demonstrated in cells from metastic human breast cancer. By criteria of binding affinity, number of binding sites, and specificity of the receptor for different steroids, the receptors are shown to be distinguishable. The protamine sulfate receptor assay technique employed allows both kinds of receptor to be quantified conveniently and reproducibly without interference by plasma steroid-binding components.

Binding Sites↗