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Biomedical subjects

J McLachlan

Publications and source records attributed to J McLachlan.

At least 19 recordsLinked to original sources

A cellular function for the RNA-interference enzyme Dicer in the maturation of the let-7 small temporal RNA.

The 21-nucleotide small temporal RNA (stRNA) let-7 regulates developmental timing in Caenorhabditis elegans and probably in other bilateral animals. We present in vivo and in vitro evidence that in Drosophila melanogaster a developmentally regulated precursor RNA is cleaved by an RNA interference-like mechanism to produce mature let-7 stRNA. Targeted destruction in cultured human cells of the messenger RNA encoding the enzyme Dicer, which acts in the RNA interference pathway, leads to accumulation of the let-7 precursor. Thus, the RNA interference and stRNA pathways intersect. Both pathways require the RNA-processing enzyme Dicer to produce the active small-RNA component that represses gene expression.

Animals↗

Comparison of short-term estrogenicity tests for identification of hormone-disrupting chemicals.

The aim of this study was to compare results obtained by eight different short-term assays of estrogenlike actions of chemicals conducted in 10 different laboratories in five countries. Twenty chemicals were selected to represent direct-acting estrogens, compounds with estrogenic metabolites, estrogenic antagonists, and a known cytotoxic agent. Also included in the test panel were 17beta++-estradiol as a positive control and ethanol as solvent control. The test compounds were coded before distribution. Test methods included direct binding to the estrogen receptor (ER), proliferation of MCF-7 cells, transient reporter gene expression in MCF-7 cells, reporter gene expression in yeast strains stably transfected with the human ER and an estrogen-responsive reporter gene, and vitellogenin production in juvenile rainbow trout. 17beta-Estradiol, 17alpha-ethynyl estradiol, and diethylstilbestrol induced a strong estrogenic response in all test systems. Colchicine caused cytotoxicity only. Bisphenol A induced an estrogenic response in all assays. The results obtained for the remaining test compounds--tamoxifen, ICI 182.780, testosterone, bisphenol A dimethacrylate, 4-n-octylphenol, 4-n-nonylphenol, nonylphenol dodecylethoxylate, butylbenzylphthalate, dibutylphthalate, methoxychlor, o,p'-DDT, p,p'-DDE, endosulfan, chlomequat chloride, and ethanol--varied among the assays. The results demonstrate that careful standardization is necessary to obtain a reasonable degree of reproducibility. Also, similar methods vary in their sensitivity to estrogenic compounds. Thus, short-term tests are useful for screening purposes, but the methods must be further validated by additional interlaboratory and interassay comparisons to document the reliability of the methods.

DDT↗

Mitral valve prolapse. A common cardiac diagnosis in women.

Mitral Valve Prolapse (MVP) is the most frequently diagnosed cardiac valvular abnormality. It is a primary disorder with familial occurrence. MVP is a disease of the young with a significantly higher incidence in women compared to men. The most characteristic clinical finding is a midsystolic click and late systolic murmur detected on cardiac auscultation. Two-dimensional echocardiography is the diagnostic tool of choice. 2D echo also helps in stratification of MVP patients at risk of developing serious complications. Although MVP runs a benign course in the majority of patients, significant complications may occur. These include progressive mitral regurgitation with heart failure, infective endocarditis, systemic emboli, cardiac arrhythmias, and rarely sudden death. The focus of therapy is reassurance and symptom relief when possible. It is important to recognize those patients that are at risk of developing significant complications, follow them closely, and intervene appropriately when complications occur.

Female↗

Mechanisms of DES carcinogenicity: effects of the TGF alpha transgene.

Inappropriate estrogen exposure during critical periods of development will cause numerous abnormalities in the female reproductive tract. Epigenetic effects on the expression of estrogen-regulated genes is proposed to be one of the mechanisms by which neonatal estrogen elicits teratogenic and carcinogenic effects. Of note is the existence of an integral relationship between the regulation of members of the epidermal growth factor (EGF) gene family and estrogen effects on the growth and differentiation of the reproductive tract. To determine whether the EGF gene family plays a critical role in mediating the pathogenic effects of estrogen, we have used transforming growth factor-alpha (TGF alpha) transgenic mice to investigate the effects of constitutive TGF alpha expression in the reproductive tract and whether TGF alpha would potentiate carcinogenesis induced by the potent estrogen, diethylstilbestrol (DES), and by the carcinogen, 7,12-dimethylbenz[a]anthracene (DMBA). The animals were homozygous TGF alpha transgenic female mice from the MT42 line and the parental CD-1 outbred mice. Constitutive TGF alpha expression was found to augment the effects of both DES and DMBA in eliciting hyperplastic and differentiation changes in the reproductive tract. The presence of the TGF alpha transgene significantly increased the incidence of DES-induced vaginal adenosis, uterine endometrial hyperplasia, hypaspadia, and benign ovarian cysts. In addition TGF alpha potentiated the effects of DMBA in eliciting uterine polyps and benign ovarian cysts, and in the retention of Wolffian Duct remnants. However, the incidence of reproductive tract neoplasia was not promoted by the presence of the TGF alpha transgene. This study indicates that TGF alpha plays a role in the developmental and morphogenic events of both the Müllerian duct and urogenital sinus, and that deregulation is associated with pathogenesis of these tissues. Furthermore, the fact that constitutive expression of the TGF alpha did not substitute for DES as a reproductive tract carcinogen or act as a promoter of DES-induced uterine neoplasia suggest that DES carcinogenesis involves more than aberrant expression of this single growth factor.

9,10-Dimethyl-1,2-benzanthracene↗

Potentiation of diethylstilbestrol-induced alterations in the female mouse reproductive tract by transforming growth factor-alpha transgene expression.

Neonatal estrogen exposure causes numerous abnormalities in the female reproductive tract, including carcinogenesis. One mechanism by which neonatal estrogen elicits teratogenic and carcinogenic effects is epigenetic and involves the modulation of a number of estrogen-regulated genes including epidermal growth factor (EGF). Because of the evidence that there is an integral relationship between the EGF family, estrogen action, and the regulation of the growth and differentiation of the reproductive tract, we used transforming growth factor-alpha (TGF alpha) transgenic mice to investigate the interaction of constitutive TGF alpha expression with the potent estrogen diethylstilbestrol (DES) in the induction of reproductive-tract alterations. Our study was designed to determine whether TGF alpha expression could modulate DES-induced carcinogenesis of the female mouse reproductive tract. The animals were homozygous TGF alpha transgenic female mice from the MT42 line and the parental CD-1 outbred mice. The presence of the TGF alpha transgene significantly increased the incidence of DES-induced vaginal adenosis, uterine endometrial hyperplasia, uterine polyps, hypospadia, benign ovarian cysts, and pituitary adenomas. However, constitutive TGF alpha expression did not promote reproductive-tract neoplasia. This study demonstrates that TGF alpha participates in the regulation of developmental and morphogenic events in the Müllerian duct and urogenital sinus, suggesting a role for TGF alpha in the pathogenesis of reproductive-tract diseases. Furthermore, we showed that although constitutive expression of the TGF alpha transgene did have an effect on the reproductive tract, TGF alpha overexpression alone could not substitute for DES as a reproductive-tract carcinogen or as a promoter of uterine neoplasia, indicating that DES-induced carcinogenesis requires events in addition to the overexpression of this single peptide growth factor.

Animals↗

Coordinate regulation by diethylstilbestrol of the platelet-derived growth factor-A (PDGF-A) and -B chains and the PDGF receptor alpha- and beta-subunits in the mouse uterus and vagina: potential mediators of estrogen action.

The effects of estrogen on the reproductive tract involve cell proliferation, migration, and differentiation, which need to be well coordinated. Polypeptide growth factors are believed to play a vital role in a number of these cellular processes. Among the growth factors now documented to be associated with estrogen action are epidermal growth factor, transforming growth factor-alpha (TGF alpha), transforming growth factor-beta 1 (TGF beta 1), TGF beta 2, TGF beta 3, and insulin-like growth factor-I (IGF-I). Platelet-derived growth factors (PDGFs) are also potent mitogens, which consist of two peptide chains, denoted A and B, that dimerize to isoforms (PDGF-AA, -AB, and -BB) which differ in their functional properties, secretory behavior, receptor binding, and physiological effects. To study the role of the PDGF-A and -B chains and the PDGF receptor subunits, alpha and beta, during estrogen action in the mouse reproductive tract, time-dependent changes in the expression of these genes were examined by Northern and in situ RNA analyses and by immunohistochemistry after a single treatment of immature CD-1 (17- to 19-day-old) mice with the synthetic estrogen, diethylstilbestrol (DES). Our results demonstrate estrogen modulation of the expression of messenger RNA (mRNA) and protein for the PDGF ligands and receptors in both the uterus and vagina of the mouse. Northern and in situ RNA analyses demonstrate time-dependent estrogen induction of the mRNA levels for these genes in both tissues within 3 h after treatment. However, distinctive mRNA expression profiles for the PDGF ligand and receptor genes are exhibited by the uterus and vagina in response to DES, especially in that the induction of transcripts for PDGF-A and both receptor subunits is more transient in the vagina than in the uterus. Steroid specificity studies demonstrate predominant estrogen-specific regulation of mRNA induction for these genes. Analysis of cell-specific RNA expression by in situ hybridization reveals prominent induction of transcripts for the PDGF chains and receptor subunits in the uterine and vaginal epithelium after estrogen treatment, although enhanced expression of mRNA is also noted in the stroma, particularly for the PDGF receptor subunit genes. Cellular localization of the PDGF ligand and receptor protein molecules by immunohistochemistry detected significant immunostaining for all of these proteins in both the uterus and vagina of control animals. After DES treatment, the uterus exhibits a significant decrease in the level of PDGF ligand and receptor proteins immunostained within 6 h, whereas less dramatic effects ar observed in the vagina.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Cytogenetic analysis of murine cell lines from diethylstilbestrol-induced uterine endometrial adenocarcinomas.

Treatment of female CD-1 mice with the synthetic estrogen diethylstilbestrol (DES) on days 1 through 5 after birth results in a 90% incidence of endometrial adenocarcinomas by 18 months of age Three cell lines were established from DES-induced uterine carcinomas and studied for specific chromosomal changes. Each cell line exhibited numerical decreases in chromosomes 9, 11, 13, and X as common abnormalities. Structural alterations involving chromosomes 3, 6, 11, and 19 occurred nonrandomly among the three cell lines. Every cell line showed a rearrangement in the long arm of chromosome 3 (3q+), a translocation between chromosomes 3 and 19 [t(3;19)], isochromosome of chromosome 11 [i(11)], and a marker chromosome (M2) either as common abnormalities or recurrent abnormalities. t(3;19), i(11), and M2 were observed also in the primary colonies from which the cell lines arose. The changes were not observed in a cell line derived from the uterus of one untreated control mouse, suggesting that these chromosomal alterations may have occurred during DES-induced neoplastic transformation. The chromosomal alterations found in the present study may prove useful in investigating the genetic changes involved in DES carcinogenesis.

Adenocarcinoma↗

Practice-based training in nurse management development: a case study.

One hundred and twenty nurse managers within the Central Sydney Area Health Service completed a program designed to concurrently strengthen professional skills and management systems. The program was based on functional review of work practices. It required consultation with the unit staff and collaboration with other sections of the organisation in designing and implementing quality improvement projects. The success of the program supports the idea that adult learners benefit from the opportunity to reflect on their experience at work. The program demonstrated that nurse managers will make major contributions to improvements in an organisation when the review process is legitimised, when they can participate in developing a framework for the review, and when organisational support is provided.

Education, Nursing, Continuing↗

Transforming growth factors beta 1, beta 2, and beta 3 messenger RNA and protein expression in mouse uterus and vagina during estrogen-induced growth: a comparison to other estrogen-regulated genes.

Increasing evidence suggests that the differential regulation of multiple peptide growth factors by steroid hormones contributes significantly to the pleiotropic effects elicited in target tissues. We report here an evaluation of the effects of the potent estrogen, diethylstilbestrol, on the expression of the three mammalian transforming growth factor beta (TGF beta) isoforms, TGF beta 1, TGF beta 2, and TGF beta 3, in both the uterus and the vagina of the prepubescent mouse. Immunohistochemical protein detection, in situ hybridization, and Northern RNA analyses demonstrate overlapping but distinct time-dependent and site-specific induction of all three TGF beta genes in the reproductive tract in response to estrogen. Temporal analysis of steady-state levels of the TGF beta mRNAs in the uterus by Northern blotting clearly demonstrates that diethylstilbestrol significantly but transiently up-regulates TGF beta 3 mRNA within 30 min and TGF beta 1 and TGF beta 2 mRNAs by 3 h with decreases to/or below control levels by 6 h. The vagina also responds to diethylstilbestrol with similar kinetics of induction for TGF beta 2 and TGF beta 3 mRNAs as that observed in the uterus; however, TGF beta 1 mRNA levels increase gradually and peak around 16 h after treatment. Investigation of the steroid specificity demonstrates predominant estrogen specificity in the control of TGF beta expression in the immature mouse reproductive tract. In situ hybridization localizes the mRNAs for all three TGF beta isoforms, primarily to the uterine and vaginal epithelium. Unlike the transient nature of TGF beta mRNA induction elicited by estrogen, immunohistochemistry demonstrates that estrogen treatment results in a more prolonged elevation of the proteins for TGF beta 1, TGF beta 2, and TGF beta 3 in the epithelium of both tissues. Investigation of specific binding of 125I-TGF beta 1 by affinity labeling reveals the existence of the receptor/binding proteins (types I, II, and III) in the uterus. Estrogen treatment significantly reduces binding to each of these components in the uterus, which suggests that estrogen may modulate TGF beta responsiveness at the receptor level. A comparison of TGF beta mRNA expression to the induction of other estrogen-regulated genes, TGF alpha, insulin-like growth factor-1, c-myc, progesterone receptor and lactotransferrin reveals that, in general, the TGF beta transcript levels are regulated in a more transient manner by estrogen.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Expression of epidermal growth factor in suprabasal cells of stratified squamous epithelia: implications for a role in differentiation.

There is a disparity in the fact that epidermal growth factor (EGF) can stimulate proliferation of a wide variety of cells in vitro, yet sites of synthesis for this polypeptide in vivo are generally associated with nonproliferative or differentiated cell populations. Unlike other known mitogenic members of the EGF family of ligands, EGF derives from a large (M(r) approximately 130,000) protein that contains multiple EGF-like domains; some of these domains contain putative Ca(2+)-binding sites. In the present study, the mouse vaginal epithelium was used as a prototype tissue to investigate expression of the EGF precursor by stratified squamous epithelia. Stratification and cornification in this tissue are estrogen dependent. In the fully differentiated epithelium, EGF precursor transcripts were detected by in situ hybridization in suprabasal cells; labeling was not observed in the proliferative basal cell compartment. Amplified transcripts of predicted size were detected in the vaginal organ by the reverse transcription-polymerase chain reaction and Northern hybridization of polyadenylated RNA. Antisera to mature EGF or to the COOH-terminal (cytoplasmic) domain of the precursor localized reactivity exclusively to cells of the granular layer. The staining with the precursor antiserum was localized along cell borders, which supports that this protein is translocated to the cell membrane following synthesis, a known property for precursors of EGF-like ligands. EGF expression was not apparent in the atrophic vaginal epithelium of castrates, which did not present a granular layer. Other stratified squamous epithelia in organs such as skin, esophagus, and tongue also revealed EGF/EGF precursor immunoreactivity in the granular layer.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Exposure to diethylstilbestrol during a critical developmental period of the mouse reproductive tract leads to persistent induction of two estrogen-regulated genes.

Exposure to estrogens during critical periods of development induces teratogenic and carcinogenic lesions in the reproductive tracts of humans and experimental animals. It is important to determine the molecular and cellular targets of estrogenic chemicals and to establish the mechanisms by which interactions of estrogens with the developing genital tract results in permanent lesions of growth and differentiation. The experiments presented here were designed to examined the effects of neonatal estrogen exposure on the expression of two genes, lactoferrin and epidermal growth factor, that are subject to steroid hormone regulation. Using in situ and Northern RNA hybridization, immunoblotting, and immunohistochemistry, our data demonstrate that exposure to the synthetic estrogen, diethylstilbestrol, during a critical neonatal period results in the persistent ovary-independent induction of mRNA and protein encoded by these two genes in the mouse uterus and vagina. The constitutive expression of lactoferrin and EGF, and probably other estrogen-regulated genes, may contribute to the establishment of a permanently "estrogenized" phenotype which is then instrumental in the development of abnormal tissue morphogenesis, function, and neoplasia in the rodent reproductive tract.

Animals↗

Use of APAAP technique on paraffin wax embedded bone marrow trephines.

The immunoalkaline phosphatase (APAAP) technique was applied to the labelling of decalcified sections of formalin fixed, paraffin wax embedded bone marrow trephine biopsy specimens. A panel of monoclonal antibodies reactive with haemopoietic and epithelial antigens, which survive routine formalin fixation, was assessed on 72 cases of haematological malignancy (including acute and chronic leukaemias and lymphomas) showing bone marrow infiltration. The APAAP method showed clear distinct labelling of antigen positive cells without loss of antigens due to decalcification. Both normal or reactive single cells present in the sample and neoplastic cell populations could be identified morphologically and their antigenic phenotype and cellular origin, whether lymphoid or myeloid, established. The application of the APAAP method to routinely prepared paraffin wax embedded trephines has many advantages over the assessment of specially prepared cryostat sections of bone marrow.

Alkaline Phosphatase↗

Molecular structures of metabolites and analogues of diethylstilbestrol and their relationship to receptor binding and biological activity.

A series of indanyl derivatives of diethylstilbestrol (DES) have recently been identified as inv vivo metabolites of DES. These compounds are of interest because they possess effective uterine estrogen receptor-binding affinity but poor biological activity. The X-ray crystal structures of three of these derivatives were determined and their conformations were compared with those of estradiol and DES. The more active derivatives, indenestrol A (I) and indenestrol B (II) have nearly identical conformations, in which the overall molecule is highly planar, the phenyl ring is twisted out of the plane of the indene rings by approximately 30 degrees, and the distance between the hydroxyl groups is 11.6 A. In the least active derivative, idanestrol (III), the methyl, ethyl, and phenyl substituents were found to be in the same side of the indane ring so that the molecule is constrained to an L-shape. The crystallographically observed conformations of I, II, III, DES, and estradiol, their competative binding affinities, and their in vivo biological activities are consistent with the proposal that the steroid A-ring plays a dominant role in initiating receptor binding while the D-ring orientation relative to the A-ring has a more decisive influence upon activity. The reduction in estrogen receptor-binding affinity and associated reduced activity of III is almost certainly due to its L-shape conformation. The extended conformation of I and II in which both phenolic rings are exposed permitting ready access to both surfaces of either ring probably accounts for the ability of these derivatives to compete so successfully with estradiol for estrogen receptor binding. There are eight different ways in which the molecules of the racemic mixtures of I and II could initiate receptor binding. The reduced biological activity of I and II is probably due to the fact that not all eight binding orientations are compatible with eliciting estrogenic response. Comparison of the observed conformations of I, II, DES, and estradiol suggests that it is the alpha-ring of I and II that minics the steroid A-ring in receptor binding, and that two of the four possible alpha-ring/A-ring matches are most conducive to eliciting hormone activity.

Animals↗

Uptake of zinc by human placental microvillus border membranes and characterization of the effects of cadmium on this process.

The uptake of Zinc (Zn) by microvillus border membrane vesicles formed from the trophoblast of term human placentae is markedly increased over brief periods of incubation with much slower increases persisting for up to 2 h of incubation. Zinc is both bound to membrane components and transported into intravesicular osmotically active space. Uptake is saturable, temperature dependent from 4 to 37 degrees C with a Q10 of 1.7, and is inhibited by the sulphydryl agent DTNB. About 20 per cent of the uptake is susceptible to inhibition by Cadmium (Cd) at concentrations from 5 to 50 microM, a significant part of the action of this metal being on the transmembrane component of Zn uptake.

Cadmium↗