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Biomedical subjects

V K Han

Publications and source records attributed to V K Han.

At least 37 records · Page 2Linked to original sources

Immunolocalization of transforming growth factor beta 1, beta 2, and beta 3 and insulin-like growth factor I in premature cranial suture fusion.

The etiology of craniosynostosis remains unknown. The beta group of transforming growth factors (TGF-beta) and insulin-like growth factors (IGF-I and IGF-II) are known to induce new bone formation and, when added exogenously, cause accelerated closure of calvarial defects. The possible roles of these bone growth factors in premature cranial suture fusion in humans have not been explored. We analyzed a total of 20 cranial suture biopsy samples (10 synostotic and 10 normal) from 10 infants with single-suture craniosynostosis undergoing cranial vault remodeling. Using isoform-specific antibodies for TGF-beta 1, -beta 2, and -beta 3 and IGF-I, we demonstrated immunoreactivity of these growth factors were present in human cranial sutures; the TGF-beta 2 isoform was the most intensely immunoreactive. Most importantly, the TGF-beta isoforms and IGF-I showed more intense immunoreactivity in the actively fusing craniosynostotic sutures compared with the control patent sutures. Specifically, the TGF-beta isoforms and IGF-I were intensely localized in the osteoblasts synthesizing new bone at the suture margin. It is noteworthy that although the patent sutures were less immunoreactive for TGF-beta isoforms than fused sutures, there was a distinct pattern of the TGF-beta 3 isoform that was immunolocalized to the margin of the normal patent sutures. This suggests a possible role for TGF-beta 3 in maintaining cranial suture patency. The increased immunoreactivity of both TGF-beta 2 and IGF-I in the actively fusing sutures compared with the patent control sutures indicates that these growth factors may play a role in the biology underlying premature suture closure. To our knowledge, this is the first study showing the presence of TGF-beta 1, -beta 2, and -beta 3 and IGF-I in prematurely fusing human cranial sutures. In the future, manipulating the local expression of these growth factors at the suture site may enable plastic surgeons to modulate premature suture fusion.

Child, Preschool↗

Effects of mechanical factors on growth and maturation of the lung in fetal sheep.

Previous fetal studies indicated that endocrine factors control surfactant maturation, whereas mechanical forces affect lung growth, but not surfactant. We altered mechanical forces in fetal sheep lungs at 100-108 days gestation by tracheal ligation (TL, n = 15, 7 successful studies) to accelerate lung growth, transection of cervical spinal cord (TCSC, n = 17, 6 successful studies) to produce lung hypoplasia, or sham operation (n = 11, 6 successful studies). The reasons for the high mortality rates are not known. At delivery (130-142 days), groups were similar in gestational age, weight, and cortisol. Effects on lung growth were similar to, but effects on surfactant differed from, previous reports. TL increased lung growth but decreased saturated phosphatidylcholine (SatPC) and surfactant protein (SP)A and apparently decreased SP-B and relative numbers of alveolar type II cells (based on immunohistochemical studies of 1 animal in each group); TCSC had opposite effects. In contrast to a previous study (J. A. Kitterman, G. C. Liggins, G. A. Campos, J. A. Clements, C. S. Forster, C. H. Lee, and R. K. Creasy, J. Appl. Physiol, 51: 384-390, 1981), SatPC did not correlate with cortisol. We conclude that altering mechanical forces in fetal lung affects not only lung growth but also surfactant maturation and possibly alveolar epithelial differentiation and disturbs the normal correlation between cortisol and surfactant. Associated changes in insulin-like growth factor I (IGF-I; increased by TL, P = 0.003) suggest a possible role for IGF-I in these effects.

Animals↗

Chronic fetal placental embolization and hypoxemia cause hypertension and myocardial hypertrophy in fetal sheep.

To examine the cardiovascular effects on the fetus of an elevated umbilical vascular resistance resulting in fetal hypoxemia, we embolized the fetal side of the placenta in pregnant sheep and measured cardiovascular and hormonal changes and cellular growth in fetal heart. Chronically catheterized fetal sheep were embolized (n = 6) for 21 days between 0.74 and 0.88 of gestation into the descending aorta until arterial oxygen content was decreased by 40-50% of the preembolization value. Control animals (n = 6) received saline only. During embolization, fetuses became chronically hypoxemic (P < 0.001) and hypertensive (P < 0.001), with a progressive increase in umbilical artery resistance index (P < 0.001). There was also an increase in fetal plasma norepinephrine throughout the study period (P < 0.05). On day 21 of embolization, fetuses showed asymmetrical growth restriction, increased heart weight (P < 0.01), and increase in right and left ventricular wall thickness (P < 0.05) compared with control animals. The protein-to-DNA ratio, an index of cell size, increased in the right ventricular myocardium in the embolized group (P < 0.001), suggesting myocardial cell hypertrophy. We conclude that, during chronic placental damage leading to fetal hypoxemia with an increase in umbilical artery resistance index, fetuses developed arterial hypertension and asymmetrical growth restriction and that increases in afterload to the heart and plasma norepinephrine likely caused fetal myocardial hypertrophy.

Animals↗

Cellular distribution of insulin-like growth factor binding protein mRNAs and peptides during rat lung development.

A role for IGF binding proteins (IGFBPs) in lung development is suggested by the identification of IGFBPs in lung tissue and production of IGFBPs by fetal lung cells in culture. To characterize the expression of IGFBPs during lung development in the rat in vivo (16 days gestation through adulthood), the expression of IGFBP mRNAs (IGFBP-1 to IGFBP-6) was examined by Northern analysis and in situ hybridization, and IGFBP peptides (IGFBP-2, IGFBP-3, and IGFBP-5) were localized by immunohistochemistry. IGFBP-1 mRNA was not detectable. IGFBP-2 mRNA (1.8 kb) was expressed in both fetal and postnatal life with peak expression during the fetal pseudoglandular stage. IGFBP-2 mRNA was localized mainly to airway epithelium. IGFBP-3 mRNA (2.4 kb) was maximally expressed postnatally in the saccular stage of lung development; it was identified in airway epithelium and interstitium in the fetal lung, but predominantly in airway epithelium after birth. IGFBP-4 (2.6 kb) and IGFBP-5 (6.0 kb) mRNA levels were maximal after birth, from 3 to 21 days postnatal (saccular and alveolar stage). IGFBP-4 mRNA was localized primarily to the interstitium and blood vessels early in development, but was abundant in airway epithelium in the adult. IGFBP-5 mRNA was most abundant in the airway epithelium. IGFBP-3, IGFBP-4, IGFBP-5, and to a lesser extent IGFBP-6 were localized to the large cartilaginous airways in the adult. IGFBP-2, IGFBP-3, and IGFBP-5 peptides were distributed more widely than their respective mRNAs, with a temporal pattern of immunoreactivity following that of their mRNAs. Maximal staining was noted in airway epithelium for IGFBP-2 in the newborn, for IGFBP-3 in the saccular stage (newborn to 3 days postnatal), and for IGFBP-5 in the alveolar stage (5 to 21 days postnatal). Our studies demonstrate that IGFBP-2, IGFBP-3, IGFBP-4, and IGFBP-5 are synthesized and distributed in spatially and temporally different patterns in the developing lung. The widespread distribution of IGFBP immunoreactivity compared with their respective mRNAs suggests that IGFBPs are important paracrine factors in the regulation of IGF action in the developing lung.

Animals↗

Insulin-like growth factor (IGF) and IGF binding protein gene expression in multicystic renal dysplasia.

Multicystic dysplastic kidney disease is the most common form of renal dysplasia that leads to ESRD in children. This study describes the histopathological changes of multicystic dysplasia that occur from early fetal life to the postnatal period. At 14 wk gestation, early cystic enlargement of various segments of the nephron have been identified, in addition to a displaced metanephric blastema adjacent to zones of normal nephrogenesis. At later stages, the predominant features include cyst enlargement with marked fibromuscular collars, architectural disorganization, and replacement of the interstitium with a disarray of mesenchymal tissue. This study investigated the expression of the mRNA encoding the insulin-like growth factors (IGF) and IGF binding proteins (IGFBP) and have demonstrated IGF-II, IGFBP-2, and IGFBP-3 to be altered. Apart from their expression in the displaced metanephric blastema, both IGF-II and IGFBP-2 were overexpressed in abnormal tissue elements in all kidneys from fetal to postnatal life. IGF-II gene expression was localized to mesenchymal tissue, specifically in the periductal fibromuscular collars. IGFBP-2 mRNA was found to be expressed exclusively in the cyst epithelia of all cysts at all ages studied, whereas IGFBP-3 mRNA was absent from these epithelia. This study details the failure of normal IGF expression in the development of multicystic renal dysplasia and suggests a role for the IGF system in the progressive histopathological changes of this disorder.

Child, Preschool↗

Prostaglandin-H synthase-1 (PGHS-1) gene is expressed in specific neurons of the brain of the late gestation ovine fetus.

Prostaglandin (PG) E2 acts on the brain stem to modulate breathing activity in the ovine fetus. The source of this PGE2 is unknown and we hypothesized that it is produced locally in the developing brain and functions in a paracrine and/or autocrine manner. The purpose of the present study was to establish whether prostaglandin-H synthase-1 (PGHS-1), a crucial enzyme in de novo prostaglandin synthesis, is present and its gene expressed in the ovine fetal brain. Immunohistochemical and molecular hybridization techniques were used to identify sites of PGHS-1 immunoreactivity and PGHS-1 mRNA expression respectively in the brain of the ovine fetus in late gestation (approximately 126 days gestation, term 145 days). PGHS-1 immunoreactivity was localized to specific regions of the fetal brain, including the cortex, hypothalamus, hippocampal formation, superior colliculus of the midbrain, parabrachial nucleus of the pons, and the reticular formation, raphe, nucleus of the solitary tract, and gracile and cuneate nuclei of the medulla. The relative abundance of PGHS-1 mRNA in selected brain regions, as determined by Northern blot analysis, correlated qualitatively with the number of PGHS-1 immunoreactive neurons identified in each region. In situ hybridization demonstrated PGHS-1 mRNA to be localized in the same neurons or nuclei as PGHS-1 immunoreactivity. These results indicate that PGHS-1 synthesized de novo in many brain regions including two that are important in respiratory control: the pneumotaxic center (parabrachial nucleus) and the dorsal respiratory group (nucleus tractus solitarius) suggesting that prostaglandins that modulate fetal respiratory activity are synthesized endogenously.

Animals↗

The pattern of expression of insulin-like growth factor (IGF). IGF-I receptor and IGF binding protein (IGFBP) mRNAs in the rhesus monkey placenta suggests a paracrine mode of IGF-IGFBP interaction in placental development.

Insulin-like growth factors (IGFs) and their binding proteins (IGFBPs) act as paracrine factors at or close to the sites of biosynthesis, i.e. cellular sites of expression of specific nRNAs. To determine the developmental pattern of expression of IGF-I, IGF-II, IGF-I R and IGFBP 1-6 mRNAs in the rhesus monkey placenta, in situ hybridization histochemistry was performed in placentae and fetal membranes from 65 days until term (165 +/- 5 days). IGF-I mRNA was not detectable in any of the specimens examined. IGF-II mRNA was localized abundantly in the placenta (syncytiotrophoblasts of the chorionic villi and the anchoring villi, and the extravillous cytotrophoblasts), and in the fetal membranes (chorion and amnion). IGF-I R mRNA was expressed predominantly in the decidua. All IGFBP mRNAs (IGFBP-1 to -6) were expressed in the maternal decidua in variable abundance. Only some IGFBP mRNAs, notably IGFBP-3 mRNA, was expressed in the fetal tissues, such as the chorionic mesoderm, some extravillous cytotrophoblasts and in the amnion and chorion. Gestational age did not alter the localization or relative abundance of all of the mRNAs studied. These findings suggest a role for IGF-II in the regulation of nutrient transport or placental hormone synthesis and/or secretion in the syncytiotrophoblasts, and a role for IGF-II and IGFBPs in the cell to cell communication and interaction at the feto-maternal interface.

Amnion↗

Temporal and spatial expression of tissue inhibitors of metalloproteinases during the natural ovulatory cycle of the mouse.

The role of tissue inhibitors of metalloproteinases (TIMPs) in ovarian function has primarily been documented by studies that utilize hormone-primed animals. In this study, our objectives were to elucidate the spatiotemporal expression of individual TIMP genes during the natural ovulatory cycle, and to correlate these with specific biological events. Two models of spontaneous ovulation used were the murine estrous cycle and the first ovulation postpartum. Ovaries were collected from mice at diestrus, estrus, and metestrus, or at early and late proestrus, and from pregnant females on Days 17 and 18 of gestation (D17, D18) and within 24 or 48 h postpartum (PP1, PP2). We observed that TIMP-1 mRNA was elevated at early proestrus and D18 and was maximal at late proestrus and PP1. The TIMP-3 pattern was distinct from that of TIMP-1, maximal expression occurring at early proestrus and D17 and D18. In both models, TIMP-2 mRNA remained constant and at very low levels throughout ovulation. In situ hybridization localized TIMP-1 mRNA to the corpus luteum at D18 and PP1, and to oocytes at specific stages of follicular development. Expression of TIMP-1 in granulosa and thecal cells was not observed at any stage. Demonstrating a distinct distribution, TIMP-3 mRNA was localized to oocytes, thecal and granulosa cells of small and large follicles, and corpora lutea only at D17. These data suggest specific hormonal regulation of individual TIMP gene expression in the ovary associated with distinct physiological functions. We propose that in the natural ovulatory process, TIMP-1 is probably a factor that regulates corpus luteum regression while TIMP-3 is important in maintaining the structural integrity of the corpus luteum.

Animals↗

Insulin-like growth factor-I and type I insulin-like growth factor receptor in 85% O2-exposed rat lung.

The expression of insulin-like growth factor I (IGF-I) and insulin-like growth factor II (IGF-II) was studied in the lungs of adult rats exposed to air or 85% O2, using Northern analysis, in situ hybridization, and immunohistochemistry. Distribution of the type I insulin-like growth factor receptor (IGF-IR) was assessed by immunohistochemistry. IGF-I, but not IGF-II, was localized to airway epithelium, while IGF-IR was localized to perivascular and peribronchial cells, in the lungs of animals breathing air. IGF-II mRNA did not increase with exposure to 85% O2, but IGF-II was localized to sites of perivascular edema and to occasional peribronchial cells. A widespread increase in IGF-I mRNA and peptide was seen after both a 6-day and a 14-day exposure to O2, with maximal expression in the airway and alveolar epithelium, and lesser expression in interstitial cells. After 6 days in 85% O2, increased IGF-IR immunoreactivity was localized to both perivascular and peribronchial cells and to endothelial cells. By 14 days in 85% O2, IGF-IR immunoreactivity was also localized to alveolar epithelial cells. The distribution of IGF-IR immunoreactivity was consistent with a paracrine role for IGF-I in O2-mediated pulmonary hypertension and airway hyperreactivity, by mediating smooth muscle cell hyperplasia, as well as a role in endothelial cell repair and late pneumocyte hyperplasia. The relative insensitivity of IGF-IR immunohistochemistry did not allow us to identify cells with low abundance IGF-IR, and potential cellular targets for IGF-I actions after O2-exposure may be even more extensive than those recognized here.

Animals↗

The ontogeny of growth hormone, insulin-like growth factors and sex steroids: molecular aspects.

Insulin-like growth factors (IGF-1 and IGF-2) are synthesized by many tissues in response to GH treatment and regulate cellular growth and differentiation. Fetal serum contains abundant GH, and many fetal tissues express GH receptors, but the clinical significance of GH in fetal development in humans is uncertain because hypopituitary newborns have normal birth size. The biological actions of IGFs are modulated by a family of binding proteins (IGFBPs). The demonstration of IGF and IGFBP transcripts in preimplantation embryos indicates that the influence of IGFs and IGFBPs in fetal development begins even prior to implantation. IGF and IGFBP mRNAs, except IGFBP-1 mRNA, are expressed at variable levels in many fetal tissues throughout gestation. Although the IGF mRNAs are widely expressed, IGFBP mRNAs manifest in specific cell types in a spatially and temporally specific manner, suggesting that they indicate sites of IGF action. Conditions of undernutrition and chronic hypoxemia, known to cause intrauterine growth retardation in fetuses, alter IGFBP and IGF-1 but not IGF-2 gene expression, thus indicating the role for IGF-1 and IGFBPs as mediators of altered growth. IGF and IGFBP genes are also expressed in many fetal endocrine tissues including those secreting sex steroids. Null mutation of the IGF-1 gene leads to retarded development of the primary sex organs. In the fetal adrenal gland, IGF-2 mRNA is localized to 3 beta-hydroxysteroid hydrogenase (3 beta-HSD) immunoreactive cells, suggesting a close relationship to steroid hormone biosynthesis. IGFBPs are important paracrine modulators of IGF action during development, and are crucial regulators of cellular growth and differentiation by modulating IGF-dependent or -independent actions in all tissues including developing endocrine glands.

Animals↗

IGF-binding protein mRNAs in the human fetus: tissue and cellular distribution of developmental expression.

Insulin-like growth factors (IGF-I and IGF-II) are synthesized by most embryonic and fetal tissues, and regulate cellular growth and differentiation as autocrine/paracrine factors. A family of six IGF-binding proteins (IGFBPs) modulate IGF biological actions as both negative (inhibitory) and positive (potentiating) modulators. To determine the tissue distribution of IGFBP mRNA expression, we performed Northern blot analysis and in situ hybridization of human fetal tissues during gestational ages 10-16 weeks (n = 8). IGFBP-1 mRNA was expressed only in the liver, whereas other IGFBP mRNAs were expressed in variable abundance in every tissue examined. IGFBP-2 mRNA was expressed in moderate abundance in every tissue with the highest level observed in the liver; IGFBP-3 mRNA was expressed most abundantly in the skin, muscle and heart; IGFBP-4 mRNA was expressed in moderate abundance equally in all tissues; IGFBP-5 mRNA was expressed most abundantly in the skin, muscle and stomach, and IGFBP-6 mRNA was expressed in low abundance in all tissues. Notable exceptions were that liver expressed little or no IGFBP-4, -5 and -6 mRNAs, spleen and thymus expressed low levels of IGFBP-5 mRNA, and brain expressed little or no IGFBP-5 and IGFBP-6 mRNA. In situ hybridization of human fetal tissues showed IGFBP mRNAs were expressed in both epithelial and mesenchymal cells depending on the specific IGFBP and the stage of development. IGFBP-3, -4, and -5 mRNAs were localized mainly in the mesenchymal cells, and IGFBP-2 mRNA was localized predominantly in the epithelial cells. IGFBP-6 mRNA was localized in low abundance in both epithelial and mesenchymal cells. These studies indicate that IGFBPs are important paracrine modulators of IGF action on cellular growth and differentiation, by modulating IGF-dependent or IGF-independent actions.

Fetus↗

Expression of insulin-like growth factor-II and IGF-binding protein-1 mRNAs in term rhesus monkey placenta: comparison with human placenta.

The patterns of expression insulin-like growth factor-II (IGF-II) and IGF-binding protein-1 (IGFBP-1) mRNAs were compared between term human and rhesus monkey placenta using in situ hybridization histochemistry. Since IGFs and IGFBPs are paracrine factors, the identification of the sites of synthesis of the IGFs and their binding proteins indicate the potential sites of biological action. In both species, IGF-II mRNA was found in highest abundance in the extravillous cytotrophoblasts. The major difference was observed in placental villi. In the human placenta, IGF-II mRNA was expressed in the chorionic mesoderm of the placental villi, whereas, in the rhesus placenta, it was expressed in the syncytiotrophoblasts and not in the chorionic mesoderm. In both species, IGFBP-1 mRNA was expressed only in the decidua. Therefore, the pattern of expression of IGFBP-1 mRNA in the maternal decidua is similar between rhesus monkey and human placenta, but that of IGF-II mRNA in the fetal placental villi is different. These data suggest that the IGF-II-IGFBP-1 interaction in the paracrine regulation of placental growth and/or function in the rhesus monkey and human placentae may have similarities and differences.

Animals↗

Functional maturation of the primate fetal adrenal in vivo: I. Role of insulin-like growth factors (IGFs), IGF-I receptor, and IGF binding proteins in growth regulation.

The rapid growth of the primate fetal adrenal from midgestation until term is regulated by ACTH secreted by the fetal pituitary. Previous studies suggest that the trophic actions of ACTH are mediated by insulin-like growth factor II (IGF-II) synthesized by fetal adrenal cortical cells. To characterize further the role of IGF-II in the regulation of fetal adrenal growth, we investigated the expression of the messenger RNAs (mRNAs) encoding IGF-I, IGF-II, IGF-I receptor (IGF-IR) and IGF binding protein (IGFBP) 1-6 in the fetal rhesus monkey adrenal in vivo from 109 days of gestation until term (165 +/- 5 days) using in situ hybridization. To assess the role of ACTH in the regulation of expression of the IGF system in vivo, we administered metyrapone (3-7 days) to late gestation fetal rhesus monkeys (n = 4) in utero to increase fetal pituitary ACTH secretion. IGF-II mRNA was abundant in the definitive, transitional and fetal zones of the adrenal cortex from 109 days until term. IGF-IR mRNA was expressed in the definitive, transitional and fetal zones and decreased to nondetectable levels at term. IGFBP-2 and IGFBP-6 mRNAs were expressed in the definitive, transitional, and fetal zones, whereas IGFBP-1, -3, -4, and -5 were not detected in adrenal cells. The effects of increasing ACTH secretion on the growth of the specific zones of the adrenal were determined using morphometric techniques. Metyrapone treatment approximately doubled adrenal weight, which was due to an increase in the area of the definitive, transitional, and fetal zones with decreased cell density of the definitive, transitional, and fetal zones compared with controls and not due to a change in total cell number. Therefore, the increase in adrenal weight after metyrapone treatment was due to hypertrophy of the three cortical zones; there was no effect on adrenal medullary growth. The relative abundance of the mRNAs encoding IGF-II and the IGF-IR was increased after metyrapone treatment, whereas the localization and relative abundance of IGFBP 1-6 mRNAs were not altered by metyrapone treatment. We conclude that the ontogenetic increase in adrenal growth may be regulated, at least in part, by locally synthesized IGF-II, and the cessation of adrenal growth that occurs at term may be mediated by the decrease in the IGF-IR. The adrenal cortical expression of IGFBP-2 and IGFBP-6 suggests that these IGFBPs may modulate the IGF-IGF-IR interaction. Metyrapone treatment, which likely increased fetal pituitary ACTH secretion, causes a coordinated increase in expression of IGF-II and IGF-IR in fetal adrenal cortical cells, which may be an important mechanism of regulation of fetal adrenal cortical growth.

Adrenal Glands↗

The expression of insulin-like growth factor (IGF) and IGF-binding protein (IGFBP) genes in the human placenta and membranes: evidence for IGF-IGFBP interactions at the feto-maternal interface.

The placenta synthesizes insulin-like growth factors (IGFs) and their binding proteins (IGFBPs), which are believed to regulate its growth and development in an autocrine/paracrine manner. To delineate the cellular sites of expression of IGP and IGFBP messenger ribonucleic acids (mRNAs) in human placenta throughout pregnancy, we used in situ hybridization histochemistry with 35S-labeled IGF and IGFBP complementary RNA probes on human placentas and fetal membranes of gestational ages 6 weeks to term (40 weeks). In placental regions where trophoblasts (fetal) or decidua (maternal) coexist (e.g. basal plate), the identity was delineated by their cytokeratin or vimentin immunoreactivity, respectively. Except for IGF-II, mRNAs encoding peptides of the IGF system were expressed in a similar spatial pattern and relative abundance throughout gestation. Both IGF mRNAs showed similar tissue distribution, but the IGF-II mRNA was more abundant than IGF-I mRNA at all gestational ages. IGF-II mRNA was expressed in the chorionic mesoderm of placental villi and chorionic plate in moderate abundance, and it decreased with gestation. It was also expressed in the trophoblasts of the cytotrophoblastic shell and Langhan's layer of placental villi only in the first trimester, suggesting an autocrine role for IGF-II in early cytotrophoblastic proliferation and/or differentiation. IGF-II mRNA was expressed most abundantly in the columns of intermediate trophoblasts in the anchoring villi and chorionic and basal plates. A gradient of IGF-II mRNA abundance was observed in the trophoblasts of the cytotrophoblastic column, with greater IGF-II mRNA levels in those at the invading front, suggesting a role for IGF-II in trophoblastic invasion. In the fetal membranes, IGF-II mRNA was identified in the amnion and chorion laeve. IGF-I receptor mRNA was expressed in low abundance in all cell types of the placenta. All six IGFBP mRNAs were identified in variable abundance in the decidualized stromal cells of the maternal decidua basalis and parietalis, with IGFBP-1 mRNA being expressed in the greatest abundance. The spatial pattern of expression of each IGFBP mRNA also differed among decidual cells, with IGFBP-1, IGFBP-2, IGFBP-4, and IGFBP-6 mRNAs being expressed in most cells, whereas IGFBP-3 and IGFBP-5 mRNAs were expressed in only some cells. IGFBP-1 mRNA was expressed initially in the epithelium of endometrial glands and in a population of decidualized stromal cells in early gestation, and subsequently in the majority of decidualized stromal cells. IGFBP-3 mRNA was expressed in both the decidua and certain intermediate trophoblasts of the basal plate and anchoring villi of placenta and in amnion and chorion laeve of fetal membranes. IGFBP-4 and IGFBP-5 mRNA were expressed additionally in low abundance in the chorionic mesoderm. IGFBP-6 was expressed in greater abundance in the decidua parietalis than in decidua basalis, although the general level of expression was low. The spatial pattern and relative abundance of expression of IGFBP mRNAs suggest IGFBP-1 to be the predominant IGFBP synthesized by the maternal decidual cells, interacting with the IGF-II that synthesizes fetal intermediate trophoblasts. Presumably, IGF-II and IGFBPs are used for cell to cell communication between fetal trophoblasts and maternal decidual cells at the feto-maternal interface for placental development and/or function.

Extraembryonic Membranes↗

Expression of insulin-like growth factors in two bovine oviductal cultures employed for embryo co-culture.

We have investigated the patterns of expression and cellular localization of polypeptides and mRNAs encoding IGF-I and IGF-II in intact bovine oviduct and two bovine oviductal primary cultures (monolayers and vesicles) which are utilized for supporting development in vitro. IGF-I and IGF-II polypeptides were localized by immunocytochemistry in intact oviduct and in both primary cultures for an 8-day culture interval, but IGF-II polypeptide displayed a more restricted distribution in day 8 monolayer cultures. IGF-I and IGF-II mRNAs were localized in both oviductal cell cultures as assessed by in situ hybridization. We were unable to detect IGF-I and IGF-II mRNAs in intact oviduct by in situ hybridization; however, transcripts encoding IGF-I and IGF-II mRNAs were detected in intact oviduct cell preparations and all primary culture samples by reverse transcription-PCR methods. The origin and phenotypic stability of these cultures was assessed by immunostaining with antibodies raised against vimentin (mesenchymal cell marker) and cytokeratin (epithelial cell marker). Over the culture period, the proportion of vimentin-immunoreactive cells increased in the monolayer cultures but remained at a low level in the vesicle cultures which were predominantly composed of cytokeratin-positive cells. The results suggest that oviductal cell co-culture may facilitate early mammalian development, in part, by the establishment of paracrine growth factor circuits.

Animals↗

The pathogenesis of multicystic dysplastic kidney disease: insights from the study of fetal kidneys.

The pathogenesis of multicystic dysplastic kidney disease (MCDKD) is unknown. Most morphologic studies of MCDKD kidneys have been performed when the kidneys are resected postnatally, when their architecture has been distorted by massive cyst enlargement. We obtained two MCDKD kidneys at an early stage of development (14 and 19 weeks' gestation) and examined the pattern of nephrogenesis in detail. In both affected kidneys, we identified islands of spatially dislocated metanephric blastema adjacent to zones containing all the normal structural elements of nephrogenesis, including aggregates of induced mesenchyme, S-shaped bodies and maturing glomerull, and proximal and distal tubules. Metanephric blastemal cells displayed characteristic vimentin and smooth muscle actin immunoreactivity and insulin-like growth factor II gene expression, whereas induced elements exhibited appropriate cytokeratin immunoreactivity and Wilms' tumor gene expression. In most other zones, renal cysts were lined with epithelia varying from a flattened squamous to a cuboidal morphology and expression of markers suggested their origin to be from all portions of the nephron including Bowman's space, proximal tubule, and collecting duct. In some cysts, small clusters of epithelial cells were identified within the cyst lumen. These studies suggest that in the early stages of MCDKD, normal nephrogenesis occurs in what seems to be a normal metanephric blastema; however, an intrinsic abnormality in the branching morphogenesis of the ureteric duct might be responsible for the development of the histopathologic changes described.

Actins↗

Alterations in fetal and placental deoxyribonucleic acid synthesis rates after chronic fetal placental embolization.

OBJECTIVE: Fetal growth and development are closely related to normal placental growth and function. We performed a study to determine the effect of a 10-day period of fetal hypoxemia induced by umbilical-placental hypoperfusion on tissue deoxyribonucleic acid synthesis rates in the 0.84 to 0.91 of gestation ovine fetus and placenta. STUDY DESIGN: Daily fetal placental embolization was performed in four chronically catheterized sheep fetuses until fetal arterial oxygen content decreased by approximately 30% compared with preembolization values. Five control fetuses received vehicle only. On experimental day 10, the deoxyribonucleic acid synthesis rate was determined by injecting tritiated thymidine (1 mCi/kg) intravenously approximately 8 hours before the end of the study. RESULTS: Fetal arterial oxygen decreased from 3.2 +/- 0.1 (SEM) mmol/L preembolization to 2.2 +/- 0.2 mmol/L on day 10 (p < 0.001) and remained unchanged in controls. On day 10 deoxyribonucleic acid synthesis rates were significantly reduced in embolized fetuses compared with controls, by 38% in cotyledons (83.0 +/- 15.1 vs 133.7 +/- 9.9 disintegrations/min/micrograms deoxyribonucleic acid, p < 0.05), 28% in the left ventricular wall (36.8 +/- 3.7 vs 51.0 +/- 4.7 disintegrations/min/micrograms deoxyribonucleic acid, p < 0.05), and 45% in the quadriceps muscle (15.4 +/- 4.0 vs 28.1 +/- 3.0 disintegrations/min/micrograms deoxyribonucleic acid, p < 0.05). Tritiated thymidine autoradiography demonstrated that cotyledonary deoxyribonucleic acid synthesis occurred exclusively in the fetal trophoblasts cells. CONCLUSION: We concluded that a reduction in cotyledonary, quadriceps muscle, and left ventricular myocardium deoxyribonucleic acid synthesis rates are the earliest adaptive mechanisms of fetal growth associated with development of umbilical-placental insufficiency. We speculate that alteration in the myocardial deoxyribonucleic acid synthesis rate could be a major contributing factor in the deterioration of fetal myocardial function associated with increased placental vascular resistance.

Analysis of Variance↗

Characteristics of trophoblast cells migrating from first trimester chorionic villus explants and propagated in culture.

We developed a method of propagating pure first trimester human trophoblast cells growing out of primary explants of mechanically derived chorionic villus fragments (Yagel et al, 1989; Graham et al, 1992). We have now extensively characterized these cells during their initial outgrowth and in long-term culture, employing a variety of markers and techniques as outlined below. By double label immunofluorescence using epithelial (cytokeratin) and mesenchymal (vimentin) cell markers, we identified the chorionic villus migrant cell populations as pure trophoblast (39 per cent of outgrowths) or a mixture of trophoblast and fibroblast (61 per cent). Further phenotyping of the pure trophoblast outgrowths by double label immunostaining using anti-cytokeratin antibody and a panel of other primary antisera revealed that these cells exhibit a variety of markers characteristic of extravillous invasive trophoblast cells in situ: insulin-like growth factor (IGF)-II, NDOG-5, proliferating cell nuclear antigen (PCNA), human leucocyte antigen framework antigen (W6/32) and a distinct set of integrins including alpha 1, alpha 3, alpha 5, alpha v and beta 1 subunits and alpha v beta 3/beta 5 vitonectin receptor. They were negative for alpha 6 and beta 4 integrin subunits. Immunogold electron microscopy of explants grown on type IV collagen gel revealed the production of conventional and oncofetal types of fibronectin by mononucleate trophoblast cells and human placental lactogen by multinucleate cells. Immunolabelling, flow cytometry and immunoprecipitation revealed that this phenotypic profile was retained with complete fidelity in the long-term culture; thus, trophoblasts migrating out of first trimester chorionic villus explants and their propagated progeny belong to the invasive extravillous trophoblast of the placenta.

Cell Movement↗