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Identification of genes differentially expressed in testes containing carcinoma in situ.

Virtually all testicular germ cell tumours originate from a common precursor, the carcinoma in situ (CIS) cell. The precise nature of the molecular mechanisms leading to CIS remains largely unknown. We performed the first systematic analysis of gene expression in testis with CIS compared to normal testis by the differential display (DDRT-PCR) method, with subsequent analysis by RT-PCR and in situ hybridization (ISH). In tissue containing CIS we identified overexpression of 28 mRNA, some previously reported in CIS and a number of genes not previously described in germ cell neoplasia, including the novel expressed sequence tag (EST) OIC1 (Overexpressed In CIS). The genes could be grouped functionally into genes involved in cell growth, proliferation, differentiation, immunological response, and genes with unknown biological function. Examples of overexpressed genes are SFRP1 that is involved in Wnt signalling and IGFBP6, which is of importance for fetal growth and inhibits cell growth through insulin-like growth factor-II. ISH analysis showed that both mRNA were localized to CIS cells. The results of our search for differentially expressed genes in CIS demonstrated a number of genes linked to testicular development (e.g. DCN, IGFBP6, SFRP1, SALL1), supporting our hypothesis that the origin of CIS is probably associated with disturbances of the fetal development of the testis.

Adolescent↗

Vertebrate sex determination: many means to an end.

The differentiation of a testis or ovary from a bipotential gonadal primordium is a developmental process common to mammals, birds and reptiles. Since the discovery of SRY, the Y-linked testis-determining gene in mammals, extensive efforts have failed to find its orthologue in other vertebrates, indicating evolutionary plasticity in the switch that triggers sex determination. Several other genes are known to be important for sex determination in mammals, such as SOX9, AMH, WT1, SF1, DAX1 and DMRT1. Analyses of these genes in humans with gonadal dysgenesis, mouse models and using in vitro cell culture assays have revealed that sex determination results from a complex interplay between the genes in this network. All of these genes are conserved in other vertebrates, such as chickens and alligators, and show gonad-specific expression in these species during the period of sex determination. Intriguingly, the sequence, sex specificity and timing of expression of some of these genes during sex determination differ among species. This finding indicates that the interplay between genes in the regulatory network leading to gonad development differs between vertebrates. However, despite this, the development of a testis or ovary from a bipotential gonad is remarkably similar across vertebrates.

Alligators and Crocodiles↗

Biomechanical properties of the internal spermatic vein in the normal population and patients with left-sided varicocele testis.

OBJECTIVE: The aim of the study was to investigate a possible decreased strength of the wall of the left internal spermatic vein between patients with varicocele testis and controls. MATERIALS: From 14 patients with varicocele testis, 2 cm of the vein was obtained during operation per varicocele and compared to samples of the left internal spermatic vein taken from the same anatomical localization of 19 patients with no varicocele testis or other conditions with relation to the scrotum; additionally, samples from the right internal spermatic vein similar to those described above were taken from 12 patients. The biomechanical properties of ring-shaped venous specimens were investigated by loading the specimens at a constant deformation rate until rupture. MAIN RESULTS: The regression coefficient, standard error and p value revealed no significant differences in ID (diameter), UC (unit collagen/ID), E-max (ultimate extensibility), Max (maximum strength), Tan-a (maximum stiffness), E-fail (relative failure energy). The trend to significance was shown in ID between the varicocele and left-sided veins (p = 0.05) and between left- and right-sided veins (p = 0.05). CONCLUSIONS: These biomechanical tests of the spermatic veins from healthy subjects and patients operated for varicocele showed that biomechanical differences were associated with age and could play a part in the development of varicocele testis in an age-matched group.

Adult↗

Novel expression of resistin in rat testis: functional role and regulation by nutritional status and hormonal factors.

Resistin, a recently cloned adipose-secreted factor, is primarily involved in the modulation of insulin sensitivity and adipocyte differentiation. However, additional metabolic or endocrine functions of this molecule remain largely unexplored. In this study, a series of experiments were undertaken to explore the potential expression, regulation and functional role of this novel adipocytokine in rat testis. Resistin gene expression was demonstrated in rat testis throughout postnatal development, with maximum mRNA levels in adult specimens. At this age, resistin peptide was immunodetected in interstitial Leydig cells and Sertoli cells within seminiferous tubules. Testicular expression of resistin was under hormonal regulation of pituitary gonadotropins and showed stage-specificity, with peak expression values at stages II-VI of the seminiferous epithelial cycle. In addition, testicular resistin mRNA was down-regulated by the selective agonist of PPARgamma, rosiglitazone, in vivo and in vitro. Similarly, fasting and central administration of the adipocyte-derived factor, leptin, evoked a significant reduction in testicular resistin mRNA levels, whereas they remained unaltered in a model of diet-induced obesity. From a functional standpoint, resistin, in a dose-dependent manner, significantly increased both basal and choriogonadotropin-stimulated testosterone secretion in vitro. Overall, our present results provide the first evidence for the expression, regulation and functional role of resistin in rat testis. These data underscore a reproductive facet of this recently cloned molecule, which may operate as a novel endocrine integrator linking energy homeostasis and reproduction.

Adipocytes↗

Development of the meiotic step in testes of pubertal rats: comparison between the in vivo situation and under in vitro conditions.

The present work aimed to compare some features of the meiotic process which develops in the testis of pubertal rats, in vivo and in vitro, paying special attention to the time-course of the phenomenon. The differentiation of spermatocytes was assessed in testes of 20- to 46-day-old rats and in tubule segments of 20- or 28-day-old rats cultured over a 4-week period. Very similar results were obtained in vivo and in vitro, during the first week of culture, when considering the changes in the cell populations of different ploidy, the gene expression of germ cells, the kinetics of differentiation of BrdU-labeled early or middle pachytene spermatocytes and the levels of apoptosis in the different cell populations. However, during the second week of culture, the decrease in the proportion of the 4C cell population which was only slightly more marked than that observed in vivo between 27 and 34 days, was not associated with an increase in the 1C cell population as large as in vivo. This result could be explained partly by a high proportion of apoptotic 1C cells beyond one week of culture. Concomitantly, the rate of in vitro differentiation of BrdU-labeled spermatocytes slowed down when reaching the stage of middle pachytene spermatocytes and BrdU-labeled round spermatids were observed 6-11 days later than when BrdU-labeled spermatocytes differentiated in vivo. Taken together, our results indicate that the bottleneck for the development of the meiotic cells in vitro is at the transition from middle to late pachytene spermatocytes. Hence, comparing the expression of locally produced regulatory molecules in vivo and in vitro at different days of culture should allow to identify key regulators of the meiotic step of spermatogenesis.

Animals↗

Orexin 1 receptor messenger ribonucleic acid expression and stimulation of testosterone secretion by orexin-A in rat testis.

Orexins are hypothalamic neuropeptides primarily involved in the regulation of food intake and arousal states. In addition, a role for orexins as central neuroendocrine modulators of reproductive function has recently emerged. Prepro-orexin and orexin type-1 receptor mRNAs have been detected in the rat testis. This raises the possibility of additional peripheral actions of orexins in the control of reproductive axis, which remains so far unexplored. To analyze the biological effects and mechanisms of action of orexins in the male gonad, we evaluated testicular expression of orexin receptor 1 (OX(1)R) and orexin receptor 2 (OX(2)R) mRNAs in different experimental settings and the effect of orexin-A on testicular testosterone (T) secretion. Persistent expression of OX(1)R mRNA was demonstrated in the rat testis throughout postnatal development. In contrast, OX(2)R transcript was not detected at any developmental stage. Expression of OX(1)R mRNA persisted after selective elimination of mature Leydig cells and was detected in isolated seminiferous tubules at defined stages of the seminiferous epithelial cycle. In addition, testicular OX(1)R mRNA expression appeared to be under hormonal regulation; it was reduced by long-term hypophysectomy and partially restored by FSH replacement, whereas down-regulation was observed after exposure to increasing doses of the ligand in vitro. Moreover, OX(1)R mRNA expression was sensitive to neonatal imprinting by estrogen. Finally, orexin-A, in a dose-dependent manner, significantly increased basal, but not human choriogonadotropin-stimulated, T secretion in vitro. A similar stimulatory effect was observed in vivo after intratesticular administration of orexin-A. In conclusion, our present results provide the first evidence for the regulated expression of OX(1)R mRNA and functional role of orexin-A in the rat testis. Overall, our data are suggestive of a novel site of action of orexins in the control of male reproductive axis.

Aging↗

Calmodulin level and cAMP-dependent protein kinase activity in rat spermatogenic cells and hormonal control of spermatogenesis.

The changes in intracellular calmodulin levels and cAMP-dependent protein kinase activities have been studied in the testis of normally developing and hypophysectomized rats. It appears that the onset of spermatogenesis which occurs on the first days of the postnatal development, is associated with a major (over fivefold) increase in the calmodulin level and enhancement of the cAMP-dependent protein kinase activity. On the contrary, hypophysectomy of adult animals is associated with a progressive decline in the calmodulin level and a rapid and regular decrease in the cAMP-dependent protein kinase activity. Moreover, measurements of the intracellular calmodulin level and cAMP-dependent kinase activity of isolated testicular germ cells or epididymal spermatozoa have shown that testosterone, administered to hypophysectomized rats as subcutaneous implants, maintains the concentration of these regulatory proteins to normal values.

Animals↗

Micropuncture and microanalytic studies of the rat testis and epididymis.

Micropuncture techniques developed for the study of renal physiology have been adapted for investigation of the male reproductive tract. Ultramicro specimens were obtained in vivo from the tubules of the rat testis and epididymis. These samples were analyzed for sperm morphology and concentration. The new methods developed to conduct these studies are discussed in detail. The mean in vivo spermatocrits were 0.411 plus and minus 0.029, 0.355 plus and minus 0.019, and 0;731 plus and minus 0.028 in the seminiferous tubule, caput epididymidis, and caudal spermatocrit was significantly higher than the spermatocrit in the caput or seminiferous tubule. The percentages of abnormal spermatozoa in the caput and cauda were 5.5% plus and minus .7% and 4.3% plus and minus .6%, respectively.

Animals↗

A novel seven transmembrane receptor induced during the early steps of astrocyte differentiation identified by differential expression.

The rat glial progenitor cell line CG-4 can be induced to differentiate into either oligodendrocytes or type-2 astrocytes. In order to identify genes whose expression varies coincident with such phenotypic differentiation, we employed representational difference analysis (RDA) of mRNA. Here, we report 38 cDNAs induced in type-2 astrocytes, oligodendrocytes, or both differentiated states. Among these were known transcription factors, membrane receptors, extracellular matrix proteins, secreted signaling modulators, chromatin regulators and myelin sheath components. In addition several novel genes were identified; among these was a gene induced during the very early stages of astrocyte differentiation that we have named Ieda (induced early in differentiating astrocytes). Several Ieda transcripts were detected by RT-PCR, and appeared to be produced by alternative splicing and promoter usage. The protein deduced from the longest Ieda mRNA exhibited sequence features characteristic of G-protein coupled receptors, including seven putative transmembrane domains, while the shorter Ieda transcripts encoded proteins that lacked several transmembrane segments. In the adult rat, Ieda transcripts were found exclusively in brain and testis. In the developing rat brain, Ieda expression was first detected at embryonic day 16, that is two days before the first appearance of mature astrocytes. Thus, this approach has yielded a potential source of markers for differentiation states of these two cellular types as well as genes predicted to be functionally involved in the differentiation process itself.

Alternative Splicing↗

Phosphodiesterase 11 (PDE11) regulation of spermatozoa physiology.

Fertilization is well correlated with sperm concentration, rate of forward motility, and percentage of live, uncapacitated ejaculated spermatozoa, which is regulated in part by cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP). Phosphodiesterases (PDEs) hydrolyze cyclic nucleotides to their corresponding monophosphates, thereby counterbalancing the activities of cAMP and cGMP, and PDE11 is highly expressed in the testis, prostate, and developing spermatozoa. However, a physiological role of PDE11 is not known. We generated PDE11 knockout (PDE11-/-) mice to investigate the role of PDE11 in spermatozoa physiology. Ejaculated sperm from PDE11-/- mice displayed reduced sperm concentration, rate of forward progression, and percentage of live spermatozoa. Pre-ejaculated sperm from PDE11-/- mice displayed increased premature/spontaneous capacitance. These data are consistent with human data and suggest a role for PDE11 in spermatogenesis and fertilization potential. This is the first phenotype described for the PDE11-/- mouse and the first report of a physiological role for PDE11.

3',5'-Cyclic-GMP Phosphodiesterases↗

A testis-mediated germline chimera production based on transfer of chicken testicular cells directly into heterologous testes.

In this study, we proposed a testis-mediated germline chimera production system based on the transplantation of testicular cells directly into heterologous testes. The testicular cells of juvenile (4-wk-old) or adult (24-wk-old) Korean Ogol chickens with a recessive pigmentation inhibitory gene, with or without prior culture, were injected (2 x 10(7) cells/head) into the seminiferous tubules of juvenile or adult recipients with White Leghorn with a dominant pigmentation inhibitory gene in a 2 x 2 factorial arrangement. The localization of transplanted cells into the inner space of the seminiferous tubules was confirmed within 24 h after injection. Subsequent testcross analyses showed that 7.8% (5/64) of the recipients had chimeric status in their testes. The periods of time from transfer to hatching of the first progeny with black feathers were 38 and 45 days for adult cells transplanted into an adult recipient, 188 days for adult cells into a juvenile recipient, and 137 days for juvenile cells into a juvenile recipient. Culture of the testicular cells derived both colony-forming and monolayer-forming cells. The colony-forming cells were stained positively for periodic acid Schiff solution, and further reacted with anti-SSEA-1, anti-SSEA-3, and anti-SSEA-4 antibodies both before and after culture for 15 days. In conclusion, it may be possible to develop the testis-mediated germline chimera production technique, which extends the feasibility of genetic manipulations in avian species.

Aminosalicylic Acid↗

Signs of testicular insufficiency in adrenomyeloneuropathy and neurologically asymptomatic X-linked adrenoleukodystrophy: a retrospective study.

X-linked adrenoleukodystrophy (X-ALD) is characterized by central nervous system demyelination, and impaired steroidogenesis in the adrenal cortex and testis. Most patients develop adrenocortical insufficiency. We studied retrospectively the frequency and severity of testicular dysfunction in 26 men with X-ALD. Twenty-one had adrenomyeloneuropathy and five patients were neurologically asymptomatic. In addition to obtaining a routine history and physical examination, we studied plasma levels of testosterone, sex hormone binding globulin, the free androgen index, and the plasma concentrations of dehydroepiandrosterone-sulphate, LH and FSH. In a subset of patients, the testosterone response to hCG and the LH and FSH responses to GnRH were also determined. Clinical signs of gonadal dysfunction were manifested by diminished libido (46%), largely overlapping with erectile dysfunction (58%), and failure of the testes to descend (15%). Physical examination revealed diminished body sexual hair (50%), gynaecomastia (35%), and small testes (12%). Laboratory studies showed low plasma total testosterone levels in 12%, and an insufficient increase after stimulation with hCG in 88% (15 of 17 patients tested). Plasma LH concentration was increased in 16%, and the plasma FSH level was elevated in 32%. The response of LH concentrations to GnRH stimulation was abnormally high in 47% (nine of 19 patients studied), and the response of FSH levels was too low in 16% (three of 19 patients tested). In conclusion, in a retrospective study of 26 men' with X-ALD, in 20 some signs of clinical hypogonadism were found. Plasma testosterone values were generally in the normal range, but upon testing of the hypothalamo-pituitary-testis axis some abnormalities became apparent.

Adolescent↗

Developmental and behavioral effects of postnatal amitraz exposure in rats.

The effects of postnatal amitraz exposure on physical and behavioral parameters were studied in Wistar rats, whose lactating dams received the pesticide (10 mg/kg) orally on days 1, 4, 7, 10, 13, 16 and 19 of lactation; control dams received distilled water (1 ml/kg) on the same days. A total of 18 different litters (9 of them control and 9 experimental) born after a 21-day gestation were used. The results showed that the median effective time (ET50) for fur development, eye opening, testis descent and onset of the startle response were increased in rats postnatally exposed to amitraz (2.7, 15.1, 21.6 and 15.3 days, respectively) compared to those of the control pups (1.8, 14.0, 19.9 and 12.9 days, respectively). The ages of incisor eruption, total unfolding of the external ears, vaginal and ear opening and the time taken to perform the grasping hindlimb reflex were not affected by amitraz exposure. Pups from dams treated with amitraz during lactation took more time (in seconds) to perform the surface righting reflex on postnatal days (PND) 3 (25.0 +/- 2.0), 4 (12.3 +/- 1.2) and 5 (8.7 +/- 0.9) in relation to controls (10.6 +/- 1.2; 4.5 +/- 0.6 and 3.4 +/- 0.4, respectively); the climbing response was not changed by amitraz. Postnatal amitraz exposure increased spontaneous motor activity of male and female pups in the open-field on PND 16 (140 +/- 11) and 17 (124 +/- 12), and 16 (104 +/- 9), 17 (137 +/- 9) and 18 (106 +/- 8), respectively. Data on spontaneous motor activity of the control male and female pups were 59 +/- 11 and 69 +/- 10 for days 16 and 17 and 49 +/- 9, 48 +/- 7 and 56 +/- 7 for days 16, 17 and 18, respectively. Some qualitative differences were also observed in spontaneous motor behavior; thus, raising the head, shoulder and pelvis matured one or two days later in the amitraz-treated offspring. Postnatal amitraz exposure did not change locomotion and rearing frequencies or immobility time in the open-field on PND 30, 60 and 90. The present findings indicate that postnatal exposure to amitraz caused transient developmental and behavioral changes in the exposed offspring and suggest that further investigation of the potential health risk of amitraz exposure to developing human and animal offsprings may be warranted.

Animals↗

FSH-induced Sertoli cell proliferation in the developing rat is modified by beta-endorphin produced in the testis.

To probe the possible role of endogenous opiates in Sertoli cell proliferation during testicular development, the effect of interfering with beta-endorphin action either in vivo or in vitro was determined. The percent of Sertoli cells dividing was measured with quantitative autoradiography in [methyl 3H]-thymidine-exposed fetal testes maintained in organ culture with or without FSH, in the presence or absence of the opiate blocker naloxone. After 1 or 2 days in culture, naloxone enhanced the rise in Sertoli cell proliferation seen with FSH alone, while 2 days of incubation with naloxone alone markedly raised the percent of Sertoli cells dividing above that in untreated cultures. Moreover, when endorphin antiserum was injected directly into testes of pups and Sertoli cell proliferation in vivo measured 8 or 19 h later, there was a dramatic increase in the percent of Sertoli nuclei labeled by [methyl 3H]-thymidine compared to controls. These findings suggest that beta-endorphin produced within the testis is a paracrine modifier of the proliferative response of Sertoli cells to FSH. This implies that communication occurs between Leydig and Sertoli cells during development via endogenous testicular opiates.

Animals↗

Morphogenesis of the bovine rete testis: the intratesticular rete and its connection to the seminiferous tubules.

The development of the intragonadal rete testis and the establishment of the connection between seminiferous and straight testicular tubules was studied using ultrastructural and histochemical methods in 60 bovine embryos and fetuses ranging from day 39 through day 225 post conceptionem. The methodology included a modified acetylcholinesterase (AChE) reaction as a selective marker for pre-Sertoli cells and a modified microsomal aminopeptidase (MAP) reaction as a selective marker for the epithelia of rete testis and straight testicular tubules. Between 40 and 45 days, the rete testis is predominantly an extratesticular rete situated in the cranial peduncle of the gonadal fold and in broad contact with the pro/mesonephric giant corpuscle. During this period, the intragonadal rete enters the gonad proper from its craniodorsal pole and extends into the cranial fourth of the testis. Between 60 and 110 days the rete testis attains its definitive position, extending into the central longitudinal axis as far as to the caudal fourth of the testis. For the caudal expansion of the rete testis the preceding proliferation of the mediastinal stroma is an important prerequisite. In the 40 to 45-day-old embryo the area of the testicular cords may be divided into two zones. A narrow outer zone contains plate-like cords with a thick diameter, and a larger central zone is filled with a network of thinner cords. Only the thick outer cords transform into the permanent seminiferous tubules, whereas the thinner cords in the central zone are transitory structures that disappear between 45 and 110 days. One important function of these transitory cords is to establish a continuous system of basal laminae that allows a direct connection between the central ends of the growing seminiferous tubules and the peripheral extensions of the rete testis (future straight testicular tubules). The first true straight testicular tubules become visible between 85 and 110 days. Due to a strong proliferation of the tubulus rectus-cells the straight testicular tubules elongate continuously, and the border between the rete system and the seminiferous tubules is slowly shifted towards the testicular periphery. This shift is not restricted to the prenatal period, but proceeds until after birth. At the cytological level, the formation and elongation of the straight testicular tubules is effected by proliferating cells that advance along the continuous basal lamina into the area of the seminiferous tubules. The pre-Sertoli and germ cells in this zone of invasion are separated from each other and overgrown by the tubulus rectus-cells. Exposed to the special milieu of the straight testicular tubules, pre-Sertoli and germ cells apparently cannot survive and finally disappear.

Acetylcholinesterase↗

Phasic response of the photoperiodic clock to wavelength and intensity of light in the redheaded bunting, Emberiza bruniceps.

We have investigated phasic response of the photoperiodic clock to wavelength (color) and intensity of light in the male redheaded bunting (Emberiza bruniceps). Two experiments were performed. Experiment I examined whether varying the wavelength and intensity of first (entraining, E) and/or second (inducing, I) light pulse will alter the effects of a skeleton photoperiod. Birds were subjected for a period of 6 weeks to skeleton photoschedules (6L:5D:1L:12D; 6 h E-light pulse, 1 h I-light pulse) containing either an E-pulse at 5 or 20 lx coupled with I-pulse at 100 lx, or an E-pulse at 100 lx, coupled with I-pulse at 5- or 20-lx intensity. Additional two groups that received both E- and I-pulses at 100 lx served as controls. All photoschedules were employed in two colors-white and red (654 nm). There was the wavelength- and intensity-dependent stimulation of the testis growth and development. Long wavelengths of light (red light) induced faster and greater gonadal response, but the effects were also intensity dependent. Experiment II tested whether in the photostimulated birds held on long photoperiods the change in wavelength and intensity of light hours in the morning (entraining period) or the evening (inducing period) will influence the maintenance of the photoperiodic sensitivity. Birds were subjected initially to a long photoperiod of 14L:10D (L = approximately 500 lx; D = 0 lx) and then after 3 weeks, a 4-h light period in the morning (zeitgeber time, zt, 0-4) or in the evening (zt 10-14) of 14 L was substituted with white, green (528 nm), or red (654 nm) light at approximately 20-lx intensity. One group maintained on 14L:10D and other exposed to 10L:14D served as controls. After another 7 weeks, all birds were subjected to 16L:8D for a further 4 weeks to test for their responsivity to long-day photostimulation as a consequence of exposure to different experimental photoperiods. Testes regrew under 16L:8D only in birds that were exposed to 10L:14D or to 14L:10D with a green light pulse. However, there was no effect of the timing (morning, evening) of the light pulse. Taken together, the results from both the experiments indicate that in the redheaded bunting (1) the photoperiodic clock responds differentially to different wavelengths (colors, spectra) and intensities of light, and (2) the effects of wavelength and intensity of light on the clock are phase dependent, and such phasic effects can be seen in skeleton photoperiods in which light is applied discretely at different circadian phases.

Animals↗

Presence of H-Y antigen in patients with Ullrich-Turner syndrome and X-chromosome rearrangements.

Cells from eight of ten patients with gonadal dysgenesis and an isochromosome for the long arm of X, (i(Xq)), have been found to be H-Y antigen-positive, using an assay that employs rat antiserum and Raji cells. In addition, two patients with del(Xq) were also found to be H-Y antigen-positive, whereas four patients in whom only a 45,X line was detected were H-Y antigen-negative. These findings suggest that the X chromosome plays a role in the expression of H-Y antigen in the absence of a Y chromosome. Since our patients with i(Xq) show no evidence of testicular differentiation, it is clear that there is not enough H-Y antigen on these patients' cells to direct the development of a testis. These findings are consistent with the view that the normal functioning of genes on the X and the Y chromosomes is necessary for testicular organogenesis to occur.

Chromosome Deletion↗

Overexpression of connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 decreases bone density in adult mice and induces dwarfism.

Connective tissue growth factor/hypertrophic chondrocyte-specific gene product 24 (CTGF/Hcs24) is a multifunctional growth factor for fibroblasts, chondrocytes, and vascular endothelial cells. In the present study, we established transgenic (Tg) mice that overproduce CTGF/Hcs24 under the control of mouse type XI collagen promoter. Tg mice could develop and their embryonic and neonatal growth occurred normally. But they showed dwarfism within a few months of birth. X-ray analysis revealed that their bone density was decreased compared with normal mice. The femurs in the hindlimbs in particular showed an apparent low density. These results indicated that overexpression of CTGF/Hcs24 affects certain steps of endochondral ossification. In addition, the testes were much smaller than normal and fertility was affected in Tg mice, indicating that CTGF/Hcs24 may also regulate the embryonic development of the testis.

Animals↗