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Biomedical subjects

P Kopp

Publications and source records attributed to P Kopp.

At least 37 records · Page 2Linked to original sources

Better communication with older patients.

Effective communication is an essential part of providing a high standard of care for older patients. If communication breaks down, patients may not receive the treatment or support they need from health-care staff and may even be put at risk.

Aged↗

Development of national and local policy in the care of older people.

This is the final article in the current Professional Nurse Open Learning series on care of the older person. These pages are practical and interactive, offering a range of activities for you to use to develop your understanding of the subject. This time we examine national policy relating to care of the older person, and how this can be used to develop local policy.

Aged↗

A novel mutation (M310L) in the thyroid hormone receptor beta causing resistance to thyroid hormone in a Brazilian kindred and a neonate.

Resistance to thyroid hormone (RTH) is an inherited syndrome of reduced tissue responsiveness to thyroid hormone (T3) caused by mutations in the thyroid hormone receptor beta (TRbeta). The index patient of the family reported here, a 17-year-old woman, came to medical attention because of a diffuse goiter, short stature, and learning disabilities. Biochemical tests revealed an elevated free T4 of 5.2 ng/dl (0.8-2.1), a T3 of 270 ng/dl (80-220), and a nonsuppressed TSH of 1.79 mU/l (0.4-4). Administration of exogenous T4 or T3 did not result in the usual TSH suppression, prompting the clinical diagnosis of RTH. Her father and one of her brothers also had clinical and biochemical findings consistent with RTH. Direct sequence analysis of the TRbeta gene revealed a heterozygous transition 928A>G in exon 9 resulting in substitution of methionine 310 by leucine (M310L). This novel receptor mutant has a reduced affinity for T3 ( approximately 10% of normal) and dominant negative properties that are similar in comparison to other RTH mutations. The index patient had a normal pregnancy and delivery. At birth, the female neonate had no goiter, a significantly elevated T4, and increased TSH. The diagnosis of RTH was confirmed by sequencing the TRbeta gene. She was underweight at birth and her length was between the 5th and 10th percentile. At 26 months, her height remained at the 10th percentile but her bone age was 18 months, suggesting mild hypothyroidism at the level of the bone. In contrast, increased heart rate and restlessness are consistent with hyperthyroidism in other tissues, such as the heart and possibly the brain.

Adolescent↗

Substitutions of tyrosine 601 in the human thyrotropin receptor result in increase or loss of basal activation of the cyclic adenosine monophosphate pathway and disrupt coupling to Gq/11.

Constitutively activating mutations of the thyrotropin (TSH) receptor have been identified as a molecular cause of toxic adenomas, nonautoimmune familial hyperthyroidism, and sporadic congenital hyperthyroidism. By analyzing genomic DNA from a toxic adenoma, we detected a novel somatic mutation in codon 601, tyrosine to asparagine (Y601N), a residue located in the carboxyterminal part of the fifth transmembrane helix. This codon is also notable for the presence of a polymorphic variant, Y601H. These two naturally occurring substitutions (Y601N and Y601H) were analyzed together with an artificial mutation, Y601F, to study the role of this residue for receptor function further. Transient transfection assays revealed that the Y601N mutation results in constitutive activation of the cyclic adenosine monophosphate (cAMP) pathway, but that it is unable to couple to Gq/11. Y601H and Y601F do not display basal activity while retaining responsiveness to TSH, but also lose the ability to induce inositol phosphate accumulation in response to TSH. These studies define Y601N as a mutation that selectively activates the cAMP pathway, and they confirm that Y601H is not a silent polymorphism. In conclusion, residue Y601 has an important role for the characteristic constitutive basal activity of the TSH receptor and coupling to Gq/11.

Adult↗

Combined pituitary hormone deficiency caused by a novel mutation of a highly conserved residue (F88S) in the homeodomain of PROP-1.

Mutations in the pituitary-specific paired-like homeodomain transcription factor, PROP-1, result in combined pituitary hormone deficiency. We studied a Brazilian girl, offspring of first cousins, who presented with short stature and deficiencies of GH, TSH, PRL, LH, and FSH. Her cortisol response to hypoglycemia was determined at age 4.9, 10.7, and 14.1 yr and remained normal. Magnetic resonance imaging at the age of 9 yr revealed an anterior pituitary lobe of diminished height (3 mm; normal, 4.5 +/- 0.6), but radiography revealed a sella turcica volume above the normal mean. Direct sequencing of the PROP-1 gene revealed homozygosity for a novel 263T>C transition that results in the replacement of a highly conserved phenylalanine by serine at codon 88 (F88S). F88 constitutes the hydrophobic core of the first helix of the homeodomain of PROP-1, and the substitution by the polar residue serine is expected to alter the secondary structure and impair binding of the mutated PROP-1 to DNA target sequences. The F88S mutation (which corresponds to murine F85S) was introduced into the murine Prop-1 complementary DNA and its consequences on DNA binding and trans-activation were assessed in vitro. In contrast to wild-type Prop-1, the F88S mutant showed no significant DNA binding to a PRDQ9 Prop-1 response element in gel shift assays. Transcriptional activation of a luciferase reporter gene containing a PRDQ9 site upstream of a simian virus 40 promoter was reduced to approximately 34% compared with that of wild-type Prop-1 in transiently transfected TSA-201 human embryonic kidney cells. The F88S mutation further expands the repertoire of mutations in PROP-1.

Amino Acid Sequence↗

A dominant negative CREB (cAMP response element-binding protein) isoform inhibits thyrocyte growth, thyroid-specific gene expression, differentiation, and function.

cAMP mediates the effects of TSH by regulating thyroid follicular cell proliferation, differentiation, and function. To assess the functional importance of the cAMP response element binding protein (CREB) in thyroid follicular cell regulation in vivo, we targeted the expression of a dominant negative (DN) CREB isoform to the thyroid glands of transgenic mice using a tissue-specific promoter. Transgenic mice exhibited severe growth retardation and primary hypothyroidism. Serum levels of TSH were elevated 8-fold above normal levels, and T4 and T3 levels were low. Histologically, the mutant thyroid glands were characterized by poorly developed follicles that were heterogeneous in size with diminished colloid. Ciliated thyroid epithelial cells were observed in the transgenic thyroid glands, suggesting a failure of follicular cell differentiation. Consistent with this hypothesis, the DN CREB transgene inhibited the expression of an array of genes including thyroglobulin, thyroperoxidase, and the TSH receptor in semiquantitative RT-PCR experiments. Altered expression of the thyroid transcription factors Pax-8, TTF-1, and TTF-2 was also observed. These results demonstrate a critical role for CREB in thyroid growth, differentiation, and function in vivo.

Amino Acid Sequence↗

[The financial impact of maintenance treatment in heroin addictive behavior: the case of Subutex].

BACKGROUND: The development of maintenance treatment for subjects with addictive behavior is an important public health issue. As such, the social effectiveness of maintenance products must be examined from an economical and social point of view. This paper aims at presenting the financial costs involved in the use of Subutex, a product commercialized since 1996. METHODS: A complete typology of costs related to drug addiction and its consequences was set up. Some of these costs were estimated on the basis of data drawn from the literature. The cost of Subutex use for maintenance treatment was assessed and compared with the financial stakes including the potential reduction of the economic and social cost of drug addiction. RESULTS: Monthly treatment cost of Subutex was 1252 FrF per drug abuser on maintenance treatment. By extrapolation, for a population of 40,000 drug abusers, the direct medical cost of Subutex during a course of maintenance treatment with general practitioner follow-up was estimated at 600 millions FrF. US data sources were applied to France to assess the cost of illnesses attributable to drug addiction. The cost reached 4.8 billions FrF. The cost of delinquency associated with drug addiction, which mostly concerns money laundered to purchase substances was an estimated 6.4 billions FrF. Finally, the cost of public anti-drug abuse programs was nearly 4.7 billions FrF. Thus, the direct cost of drug addiction consequences reached 15.6 billions FrF. This cost should be compared with the annual cost of Subutex for public organizations which was an estimated 600 millions FrF. CONCLUSIONS: The "profit" threshold of maintenance treatment with Subutex in terms of direct costs is very low. A decrease of only 4% of the costs associated with drug addiction would make it possible to balance the financial budget for the community. Our analysis does not take into acount absolutely all the public health and safety aspects involved in the use of Subutex. It does however provide a useful assessment of the financial aspects of the question and justification for this therapeutic strategy from a budgetary point of view.

Buprenorphine↗

A novel mutation (R97C) in the neurophysin moiety of prepro-vasopressin-neurophysin II associated with autosomal-dominant neurohypophyseal diabetes insipidus.

Autosomal-dominant familial neurohypophyseal diabetes insipidus (adFNDI) is caused by heterozygous mutations in the gene encoding vasopressin-neurophysin II (AVP-NPII) on chromosome 20p13. We analyzed the AVP-NP II gene in a family with adFNDI by direct sequencing. A novel C to T transition (289C-->T in the cDNA, resulting in the substitution of Arg 97 by Cys (R97C) in the prepro-AVP-NPII precursor molecule) was identified in the gene region encoding neurophysin II in the index patient. This amino acid change is thought to result in the formation of an incorrectly folded hormone precursor, which may lead to chronic neurotoxicity and explain the dominant inheritance of the disease.

Arginine Vasopressin↗

Combined pituitary hormone deficiency in an inbred Brazilian kindred associated with a mutation in the PROP-1 gene.

Mutations in the pituitary-specific paired-like homeodomain transcription factor PROP-1 result in combined pituitary hormone deficiency (CPHD) which includes all anterior pituitary hormones with the exception of ACTH. In an inbred pedigree with CPHD, direct sequencing of the PROP-1 gene revealed a deletion of two base pairs (301-302delAG) in exon 2, resulting in a frameshift and a premature stop in codon 109 in the homeodomain. The clinical characteristics of this family support the notion that this truncation results in a more severe phenotype than missense mutations in the aminoterminal part of the homeodomain.

Adult↗

Rehabilitation of breast cancer.

Breast cancer is a complicated disease treated with multimodality therapy. Adult women of any age can develop breast cancer, and most will be cured. Treatment of primary disease is associated with more side effects than the cancer. The process of metastatic cancer to death can be long. The entire family is affected by breast cancer whether early or late. A rehabilitation program must address the physical and psychosocial aspects of breast cancer, both at presentation and at recurrence. For a patient with early breast cancer, lifestyle changes may be important. A primary goal of a rehabilitation program is that each breast cancer patient should become well informed regarding treatment and its consequences (Table 9) in order to continue with her life. Treatment to recover the patient to her former physical and psychosocial state, and therapy for chronic problems from breast cancer or its treatment, requires an approach distinct from that given to other malignancies. Issues regarding survival prevail in any rehabilitation program for both early and late breast cancer.

Breast Neoplasms↗

Thyrotropin receptor mutations in hyperfunctioning thyroid adenomas from Brazil.

Constitutively activating mutations in the thyrotropin (TSH) receptor have been identified as a major molecular cause of hyperfunctioning thyroid adenomas. A smaller subset of these benign tumors is caused by constitutive activation of the adenylyl cyclase cascade by somatic mutations in the Gsalpha gene. In this study, we analyzed hyperfunctioning thyroid adenomas from seven Brazilian patients for TSH receptor and G(s)alpha gene mutations. Solitary autonomous thyroid adenomas were identified by ultrasound and scintigraphy, and DNA was extracted from adenomatous and periadenomatous tissue. Exons 9 and 10 of the TSH receptor gene, and exons 8 and 9 of the G(s)alpha gene, were amplified by polymerase chain reaction (PCR) and subjected to direct sequence analysis. Six of seven adenomas harbored heterozygous mutations known to confer constitutive activity to the TSH receptor. In one case, aspartate 619 was substituted by glycine (D619G). In four adenomas, alanine 623 was replaced by valine (A623V). Both residues are located in the third intracellular loop. In one instance, aspartate 633 located in the sixth transmembrane domain was replaced by tyrosine (D633Y). In this patient, one allele also contained a change of aspartate 727 to glutamate (D727E). This substitution is thought to be a polymorphic variant of the wild-type but it has also been associated with toxic multinodular goiters. Functional comparison of D727 with E727 did not reveal differences in basal or TSH-stimulated cyclic adenosine monophosphate (cAMP)-dependent luciferase activity in transiently transfected cells. These results demonstrate a high prevalence of activating TSH receptor mutations in toxic adenomas in this small series from Brazil (approximately 86%). These findings are in agreement with reports from other countries with a marginal iodine intake but contrast with studies from regions with a high iodine intake where these mutations appear to be less prevalent.

Adenoma↗

Expression of transforming growth factor beta1, beta2, and beta3 in multinodular goiters and differentiated thyroid carcinomas: a comparative study.

The various isoforms of transforming growth factor-beta (TGFbeta) are growth-inhibiting cytokines for cells of epithelial origin. In malignant thyroid tumors, several studies documented a high expression of TGFbeta in the majority of thyroid follicular cells suggesting a possible role as an inhibitor of cell proliferation. In contrast to this uniform pattern of TGFbeta expression in thyroid cancer, scarce and controversial data have been reported on the expression of TGFbeta in benign multinodular goiter. In the present study, we therefore analyzed the expression of TGFbeta1, TGFbeta2, and TGFbeta3 in normal thyroid tissue, multinodular goiters and papillary thyroid carcinomas by immunohistochemistry. In normal thyroid tissue, expression of the 3 TGFbeta isoforms was barely detectable. However, in the carcinomas, almost all epithelial cells displayed immunoreactivity for the three TGFbeta isoforms. In the nodules from multinodular goiters, all 3 isoforms were found to be expressed although the immunolocalization of the 3 proteins was highly variable. TGFbeta-immunostaining was found in scattered clusters of variable size and, its expression pattern was heterogenous among individual cells within single follicles. TGFbeta-positivity was present in spite of immunostaining for proliferating cell nuclear antigen (PCNA), a marker for actively proliferating cells. In conclusion, this study shows that thyroid carcinomas and benign tumors express the TGFbeta1, TGFbeta2, and TGFbeta3 isoforms. In contrast to the abundant and homogeneous expression in differentiated thyroid carcinomas, TGFbeta expression displays a highly variable interfollicular and intrafollicular pattern in multinodular goiters, suggesting an important role of TGFbeta isoforms in tumorigenesis of thyroid cells.

Adenocarcinoma, Follicular↗

Structural analysis of the thyrotropin receptor in four patients with congenital hypothyroidism due to thyroid hypoplasia.

Sporadic congenital hypothyroidism is most commonly caused by developmental abnormalities of the thyroid gland. More rarely, it is due to defects in gene products involved in the regulation of the hypothalamic-pituitary-thyroid axis or thyroid hormone synthesis. Loss of function mutations in the thyrotropin (TSH) receptor have been shown to result in resistance to biologically active TSH. In complete resistance to TSH, the thyroid gland is hypoplastic and unable to synthesize and secrete sufficient amounts of thyroid hormones. In partial resistance, referred to as euthyroid hyperthyrotropinemia, the size of the gland and the thyroid hormone levels are normal at the expense of an elevated TSH. Four patients with sporadic congenital hypothyroidism and properly located hypoplastic thyroid glands were included in this study. Serum TSH concentrations were 150 mU/L or higher, serum thyroglobulin levels were within normal limits (6.1 to 8.2 ng/mL; normal range: 2.1 to 32 ng/mL), and thyroid autoantibodies were absent. The coding region of the TSHbeta subunit gene, the TSH receptor gene, and exons 8 and 9 of Gsalpha were analyzed by direct sequencing and found to be normal in all patients. One patient was heterozygous for a G to A transition in the TSHbeta gene resulting in a substitution of alanine by threonine at position -7 of the signal peptide. This substitution was also found in her euthyroid father. In addition, Southern analysis of the TSH receptor gene excluded major structural alterations. These findings support previous reports that indicate that TSH resistance is genetically heterogeneous. In addition to mutations in the TSH receptor or the Gsalpha genes, other genetic defects can lead to an identical phenotype. These observations also suggest that TSH receptor mutations might be a relatively rare cause of congenital thyroid hypoplasia.

Blotting, Southern↗