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Guiting Lin

Publications and source records attributed to Guiting Lin.

At least 19 recordsLinked to original sources

Upregulation of penile brain-derived neurotrophic factor (BDNF) and activation of the JAK/STAT signalling pathway in the major pelvic ganglion of the rat after cavernous nerve transection.

OBJECTIVES: Increasing attention is being focused on identifying novel approaches to recover cavernous nerve (CN) function after injury or secondary to disease states such as diabetes mellitus. We examined penile brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT-3) expression, and activation of the Janus kinase (JAK)/signal transducer and activator of transcription (STAT) molecular pathway in the major pelvic ganglion (MPG) after CN injury in the rat. METHODS: Five groups of eight male Sprague-Dawley rats (4 mo, 250-300 g) were used in this study. The penis and MPG with attached CN segment were harvested at 0 h (controls), 12, and 24 h, as well as at 5 and 12 d after CN axotomy, for protein, messenger RNA (mRNA), and immunohistochemical analysis. RESULTS: mRNA and protein expression of BDNF was upregulated in the penis after injury (p<0.05). Levels of NT-3 were unchanged. The JAK/STAT pathway was activated in the MPG after transection, as evidenced by increased STAT1 (peak: 24 h) and STAT3 (peak: 5 d) phosphorylation (p<0.01 vs. controls). CONCLUSIONS: This study demonstrates increased expression of penile BDNF and upregulation of phosphorylated STAT1 and STAT3 in the MPG in response to CN transection. Activation of the JAK/STAT pathway after injury represents a promising new molecular target for modulating CN survival and regeneration.

Analysis of Variance↗

Multiple conformations of phosphodiesterase-5: implications for enzyme function and drug development.

Phosphodiesterase-5 (PDE5) is the target for sildenafil, vardenafil, and tadalafil, which are drugs for treatment of erectile dysfunction and pulmonary hypertension. We report here the crystal structures of a fully active catalytic domain of unliganded PDE5A1 and its complexes with sildenafil or icarisid II. These structures together with the PDE5A1-isobutyl-1-methylxanthine complex show that the H-loop (residues 660-683) at the active site of PDE5A1 has four different conformations and migrates 7-35A upon inhibitor binding. In addition, the conformation of sildenafil reported herein differs significantly from those in the previous structures of chimerically hybridized or almost inactive PDE5. Mutagenesis and kinetic analyses confirm that the H-loop is particularly important for substrate recognition and that invariant Gly(659), which immediately precedes the H-loop, is critical for optimal substrate affinity and catalytic activity.

3',5'-Cyclic-GMP Phosphodiesterases↗

Phosphodiesterase-5 isoforms: differential cyclic guanyl monophosphate binding and cyclic guanyl monophosphate catalytic activities, and inhibitory effects of sildenafil and vardenafil.

PURPOSE: We determined the differential cyclic guanyl monophosphate catalytic and cyclic guanyl monophosphate binding activity of phosphodiesterase-5 isoforms and the inhibitory effects of sildenafil (Pfizer, New York, New York) and vardenafil (Bayer Pharmaceutical Research, Wuppertal, Germany). MATERIALS AND METHODS: Coding sequences of the human phosphodiesterase-5 isoforms A1, A2 and A3 were cloned into pBlueBac4.5/V5-His (Invitrogen, Carlsbad, California), which allows the tagging of histidines at the carboxyl terminal of the expressed protein. Isoforms were expressed with the Bac-N-Blue baculoviral system and purified with the ProBond system. Expression clones were identified by polymerase chain reaction using vector and phosphodiesterase-5 specific primers. Purified proteins were verified by Western blotting. Purified proteins were analyzed for cyclic guanyl monophosphate catalytic and cyclic guanyl monophosphate binding activity, and used to determine the differential potencies of the phosphodiesterase-5 selective inhibitors sildenafil and vardenafil. RESULTS: Cloning and expression of phosphodiesterase-5A1 to A3 isoforms in the baculoviral system resulted in the isolation of purified isoform proteins. Mean cyclic guanyl monophosphate catalytic activity (K(m)) +/- SD was 4.76 +/- 0.37, 4.52 +/- 0.09 and 11.39 +/- 0.22 microM for A1 to A3, respectively. Mean cyclic guanyl monophosphate binding activity (K(d)) was 3.24 +/- 0.47, 1.95 +/- 0.60 and 1.70 +/- 0.47 microM for A1 to A3, respectively. Mean IC(50) of sildenafil against phosphodiesterase-5A1 to A3 was 1.20 +/- 0.34, 2.83 +/- 0.56 and 2.28 +/- 0.38 nM, respectively. Mean IC(50) of vardenafil against phosphodiesterase-5A1 to A3 was 0.41 +/- 0.15, 0.23 +/- 0.08 and 0.45 +/- 0.06 nM, respectively. CONCLUSIONS: Phosphodiesterase-5A1 and A2 had similar K(m) values, while phosphodiesterase-5A3 had a much higher K(m) and, thus, lower cyclic guanyl monophosphate catalytic activity. Phosphodiesterase-5A2 and A3 had similar K(d) values, while phosphodiesterase-5A1 had higher K(d) and, thus, lower cyclic guanyl monophosphate binding activity. Vardenafil was more potent (3 to 12-fold) than sildenafil for inhibiting the catalytic activity of all 3 human phosphodiesterase-5 isoforms with phosphodiesterase-5A2 showing the highest differentiation (12-fold).

3',5'-Cyclic-GMP Phosphodiesterases↗

Effects of icariin on phosphodiesterase-5 activity in vitro and cyclic guanosine monophosphate level in cavernous smooth muscle cells.

OBJECTIVES: To investigate the effect of icariin on the cyclic guanosine monophosphate (cGMP)-hydrolytic activity of phosphodiesterase-5 (PDE5) isoforms and the cGMP levels in cavernous smooth muscle cells treated with sodium nitroprusside (SNP). METHODS: PDE5 isoforms (PDE5A1, A2, and A3) were isolated from sf9 insect cells infected with baculoviruses carrying PDE5 isoform cDNA. Icariin was isolated from Epimedii herba. Varying amounts (10(-6) to 10(-11) M) of icariin or zaprinast were added to reaction mixtures containing PDE5 isoforms and cGMP. The inhibitory effects of icariin and zaprinast were analyzed by GraphPad Software and are expressed as concentration that inhibits 50% (IC50) values. Cavernous smooth muscle cells were isolated from 3-month-old rats, treated with icariin (100 and 200 microM) or zaprinast (200 microM) for 15 minutes, and then with 10 microM SNP for 30, 60, 120, 240, and 360 minutes. The cells were then analyzed for the cGMP concentration using an enzyme immunoassay system. RESULTS: Icariin inhibited PDE5A1, A2, and A3 with an IC50 value of 1.0, 0.75, and 1.1 microM, respectively. The corresponding IC50 values for zaprinast were 0.33, 0.23, and 0.32 microM. Icariin consistently outperformed the control (SNP-only treatment) in maintaining greater cGMP levels, particularly at the greater concentration of 200 microM. In contrast, zaprinast at 200 microM did better than the control only at 60 and 360 minutes. CONCLUSIONS: Icariin was inhibitory to all three PDE5 isoforms with similar IC50 values, which were approximately three times greater than those for zaprinast. Icariin was able to enhance cGMP levels in SNP-treated cavernous smooth muscle cells.

3',5'-Cyclic-GMP Phosphodiesterases↗

Serum response factor, its cofactors, and epithelial-mesenchymal signaling in urinary bladder smooth muscle formation.

Little is known about the mechanism of bladder smooth muscle differentiation. We hypothesize that epithelial-mesenchymal signaling induces the expression of smooth muscle proteins in bladder mesenchyme resulting in smooth muscle differentiation. We confirmed that smooth muscle differentiation in the mouse urinary bladder occurs first at gestational day 14 (E14) based upon immunohistochemical localization of smooth muscle alpha-actin (SMAA). To investigate murine bladder smooth muscle differentiation and epithlelial-mesenchymal signaling in the developing bladder, we analyzed gene expression profiles of intact embryonic murine bladders and separated epithelial and mesenchymal components at embryonic days E13, E14, E15, E16, and postnatal day 1 (P1). Using cDNA microarray, we identified regulators of vascular smooth muscle differentiation in bladder mesenchyme, including serum response factor (SRF) and its cofactors, ELK1 and SRF accessory protein (SAP)1, as well as two SRF-associated pathways, angiotension receptor II and transforming growth factor- beta2. Immunohistochemistry showed diffuse expression of SRF in the bladder at E12 with localization of expression to the peripheral mesenchyme at E13 and E14. Our results suggest that bladder smooth muscle differentiation may share a similar gene expression program as occurs during vascular smooth muscle differentiation. The unique structure of the urinary bladder makes it an ideal model for studies of smooth muscle differentiation and epithelial-mesenchymal signaling.

Animals↗

Neuron-like differentiation of adipose tissue-derived stromal cells and vascular smooth muscle cells.

Adipose tissue-derived stromal cells (ADSC) have previously been shown to possess stem cell properties such as transdifferentiation and self-renewal. Because future clinical applications are likely to use these adult stem cells in an autologous fashion, we wished to establish and characterize rat ADSC for pre-clinical tests. In the present study, we showed that rat ADSC expressed stem cell markers CD34 and STRO-1 at passage 1 but only STRO-1 at passage 3. These cells could also be induced to differentiate into adipocytes, smooth muscle cells, and neuron-like cells, the latter of which expressed neuronal markers S100, nestin, and NF70. Isobutylmethylxanthine (IBMX), indomethacin (INDO), and insulin were the active ingredients in a previously established neural induction medium (NIM); however, here we showed that IBMX alone was as effective as NIM in the induction of morphological changes as well as neuronal marker expression. Finally, we showed that vascular smooth muscle cells could also be induced by either NIM or IBMX to differentiate into neuron-like cells that expressed NF70.

1-Methyl-3-isobutylxanthine↗

Brain-derived neurotrophic factor (BDNF) acts primarily via the JAK/STAT pathway to promote neurite growth in the major pelvic ganglion of the rat: part I.

INTRODUCTION: Identification of the molecular mechanism of cavernous nerve regeneration is essential for future development of neuroprotective and regenerative strategies. AIM: To identify specific signal transduction pathway(s) associated with brain-derived neurotrophic factor (BDNF) enhanced cavernous nerve regeneration in an in vitro model. MATERIALS AND METHODS: Using 6-month-old male Fisher rats, inhibitors of four candidate signaling pathways were added to BDNF-treated explant cultures of major pelvic ganglia with attached cavernous nerve fragments. Study groups comprised of controls, BDNF alone at 50 ng/mL, or BDNF 50 ng/mL and inhibitors against MEK, PI3-K, PKA, and JAK/STAT pathways at increasing concentrations. MAIN OUTCOME MEASURE: The maximal neurite length for each tissue culture was measured and the mean maximal length +/- standard deviation was determined for all groups at 24, 36, and 48 hours. RESULTS: The JAK/STAT specific inhibitor AG490 significantly reduced BDNF-enhanced neurite growth. Maximum neurite lengths at 24, 36, and 48 hours for BDNF 50 ng/mL treated groups were 182.3, 348.1, and 528.1 microm, compared with AG490 at 25 microM (86.4, 165.1, 278.3 microm), 50 microM (78.8, 151.7, 235.3 microm), and 100 microM (71.83, 107.0, 219.6 microm) (P < 0.05). Neurite measures for BDNF with 25 and 50 microM U0126 (MEK pathway) were reduced to 402.0 and 424.3 microm at 48 hours, respectively (P < 0.05), likely reflecting an accessory molecular pathway. A similar observation was made for 100 uM LY294002 (PI3-K). No difference was observed for PKA inhibition. CONCLUSION: The JAK/STAT pathway is the major signal-transduction pathway of BDNF-enhanced cavernous nerve growth in an in vitro rat model.

Animals↗

Brain-derived neurotrophic factor (BDNF) acts primarily via the JAK/STAT pathway to promote neurite growth in the major pelvic ganglion of the rat: part 2.

INTRODUCTION: Surgical and radiation therapies of bladder and prostate cancers may damage cavernous nerves and cause erectile dysfunction (ED). We previously showed that brain-derived neurotrophic factor (BDNF) could restore erectile function in a neurogenic ED rat model. We now investigated the signaling mechanism of BDNF in major pelvic ganglia (MPG) explants. AIM: To identify the signaling mechanism that mediates the neurotrophic effect of BDNF in cultured MPG. METHODS: Major pelvic ganglia was isolated from male rats for immunohistochemistry and immunofluorescence staining to locate BDNF receptors, pan-neurotrophin 75 (p75), tropomyosin-related kinase B (TrkB), and tropomyosin-related kinase C (TrkC). The dorso-caudal region of MPG was treated with BDNF to determine the optimal dosage for promoting neurite growth. Specific kinase inhibitors AG490, KT5720, LY294002, and U0126 were then used to treat MPG either alone or prior to BDNF treatment. The treated MPG was examined for neurite growth and for expression and phosphorylation of JAK2, STAT1, and STAT3 by Western blot analysis. MAIN OUTCOME MEASURES: Lengths of neurite growth from MPG were measured to quantify the effects of BDNF and to identify specific signaling pathways. Ratios of phosphorylated vs. unphosphoryated proteins of JAK2, STAT1, and STAT2 in control and treated MPG were determined to confirm JAK/STAT as the principal signaling pathway. RESULTS: Tropomyosin-related kinase B and TrkC were localized to neurons whereas p75 to perineuronal satellite glial cells (SGC). The optimal dosage of BDNF for promoting MPG neurite growth was between 25 and 50 ng/mL. Among the four specific kinase inhibitors, AG490 was the strongest in suppressing MPG neurite growth as well as BDNF-induced phosphorylation of JAK2, STAT1, and STAT3. CONCLUSIONS: In rat MPG, TrkB and TrkC were expressed in neurons, whereas p75 in SGC. Optimal BDNF dosage for promoting MPG neurite growth was between 25 and 50 ng/mL. BDNF promotes MPG neurite growth primarily by activating the JAK/STAT pathway.

Animals↗

Expression, distribution and regulation of phosphodiesterase 5.

Phosphodiesterase 5 (PDE5) is one of eleven members of the mammalian phosphodiesterase family that hydrolyzes cyclic guanosine monophosphate (cGMP) and cyclic adenosine monophosphate (cAMP). Best known as the target of the impotence drug sildenafil, PDE5 degrades cGMP in smooth muscle cells so as to maintain the contracted state of contractile organs such as the penis, blood vessels, uterus, and intestines. In addition, it regulates numerous other physiological processes such as neurogenesis and apoptosis. Like all other PDEs, PDE5 is dimeric; each subunit is approximately 100 kd in size and has two allosteric cGMP-binding sites and a catalytic domain. Protein kinase G (PKG)-mediated phosphorylation and allosteric cGMP binding upregulate PDE5 activity, while PP1 phosphatase-mediated dephosphorylation downregulates. Sildenafil and other selective inhibitors inhibit PDE5 by binding to the catalytic site. From two promoters a single PDE5A gene at human chromosome 4q26 encodes three alternatively spliced isoforms (PDE5A1-3) that differ in the N-terminus. The PDE5A promoter is located upstream of the three isoform-specific first exons (in the order of A1-A3-A2) and consists of a 139-bp core, a 308-bp upstream enhancer, and a 156-bp downstream enhancer. The weaker 182-bp PDE5A2 promoter is located between the A3- and A2-specific exons and contains an indispensable Sp1-binding sequence. Both promoters are responsive to cGMP or cAMP stimulation, and several studies have demonstrated regulation of PDE5 expression possibly through these promoters. Virtually all tissues and cell types express PDE5, with heart and cardiomyocytes being contentious. PDE5A1 and PDE5A2 are ubiquitous, but PDE5A3 is specific to smooth muscle.

3',5'-Cyclic-GMP Phosphodiesterases↗

Improving erectile function by silencing phosphodiesterase-5.

PURPOSE: We investigated whether phosphodiesterase-5 (PDE5) can be down-regulated by a specific small interfering RNA (siRNA) and whether this would improve erectile function. MATERIALS AND METHODS: A PDE5 siRNA encoding oligonucleotide was inserted into pSUPER-retro vector, resulting in the siRNA expressing construct, pPDE5-silencer. The construct was packaged into oncoretroviral particles and then transduced into rat cavernous smooth muscle cells (CSMCs). Cells were examined for PDE5 expression by reverse transcriptase-polymerase chain reaction, Western blotting and immunofluorescence microscopy. Cells were then treated with 10 microM sodium nitroprusside (SNP) and examined for cyclic guanosine monophosphate (cGMP) at 0, 10, 30, 60 and 240 minutes. The siRNA expressing cassette was transferred from the oncoretrovirus to lentivirus, which was then injected into rat penises. Three months later erectile function was examined by electrostimulation and PDE5 expression in cavernous smooth muscle was determined by immunohistochemistry. RESULTS: CSMCs transfected with pPDE5-silencer (CSMC plus siRNA) showed an 88.2% decrease in PDE5 compared with CSMCs transfected with control vector (CSMCs plus vector). Within 10 minutes of SNP treatment cells (CSMCs, CSMCs plus vector and CSMCs plus siRNA) showed similar sharp increases in cGMP. However, while cGMP levels in CSMCs and CSMCs plus vector returned to almost baseline in 1 hour, the cGMP level in CSMCs plus siRNA remained high even 4 hours after SNP treatment. Rats injected with the siRNA expressing lentivirus showed increased electrostimulated erectile function, as measured by peak intracorporeal pressure and the intracorporeal pressure increase, compared with rats injected with control lentivirus. PDE5 expression was decreased in the siRNA treated cavernous smooth muscle. CONCLUSIONS: PDE5 expression could be decreased by siRNA, resulting in prolonged cGMP accumulation and improved erection.

3',5'-Cyclic-GMP Phosphodiesterases↗

Cyclic nucleotide signaling in cavernous smooth muscle.

INTRODUCTION: Penile erection depends on cavernous smooth muscle relaxation that is principally regulated by cyclic nucleotide signaling. It is hoped that a comprehensive review of publications relevant to this subject will be helpful to both scientists and clinicians who are interested in the sciences of erectile function/dysfunction. AIMS. To review the roles of extracellular signaling molecules, their receptors, intracellular effectors, and phosphodiesterases in cyclic nucleotide signaling that leads to cavernous smooth muscle relaxation. The involvement of these molecules in the development of erectile dysfunction and the possibility of using them as therapeutic agents or targets are also discussed. METHODS: Entrez, the search engine for life sciences, was used to search for publications relevant to the topics of this review. Keywords used in the searches included vascular, cavernous, penis, smooth muscle, signaling molecules (adenosine, nitric oxide, etc.), and key elements in the cyclic nucleotide signaling pathways (cAMP, cGMP, cyclases, PKG, PKA, etc.). Articles that are dedicated to the study of erectile function/dysfunction were prioritized for citation. RESULTS: More than 1,000 articles were identified, many of which are studies of the vascular system and are therefore reviewed but not cited. Studies on erectile function have identified both cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) signaling pathways in cavernous smooth muscle. Many signaling molecules of these two pathways have been shown capable of inducing erection when administered intracavernously. However, for sexually induced erection, nitric oxide (NO) is the responsible signaling molecule and it passes on the signal through soluble guanyl cyclase (sGC), cGMP, and protein kinase G (PKG). CONCLUSIONS: The NO/sGC/cGMP/PKG pathway is principally responsible for sexually stimulated erection. Detumescence is mainly carried out by the degradation of cGMP by phosphodiesterase 5. Both cAMP and cGMP signaling pathways are susceptible to genetic and biochemical alterations in association with erectile dysfunction. Several key elements along these pathways are potential therapeutic targets.

Cyclic AMP↗

Activating transcription factor 3 is up-regulated in patients with hypospadias.

Hypospadias is a congenital anomaly of the genitalia characterized by abnormalities of the urethra and foreskin, with the urethral meatus located in an abnormal position anywhere from the distal ventral penile shaft to the perineum. Because the incidence of hypospadias is approximately 1/200-1/300 live male births, it is one of the most common congenital malformations, but its etiology is largely uncharacterized. Genomic analysis of hypospadic tissue indicated a potential role for activating transcription factor 3 (ATF3) in the development of this anomaly. ATF3 may be involved in homeostasis, wound healing, cell adhesion, or apoptosis, and normally it is expressed at a steady-state in quiescent cells. Additionally, it has been shown to be an estrogen-responsive gene, and the etiology of hypospadias may be related to in utero exposure to estrogenic or anti-androgenic compounds. We examined the expression of ATF3 in tissues from 28 children with hypospadias compared with 20 normal penile skin tissue samples from elective circumcision. Eighty-six percent of the hypospadias samples were immunohistochemically positive, compared with 13% of normal tissue samples. Seventy-five percent of hypospadias samples were positive from in situ hybridization, compared with 1% of circumcision samples. Our results indicate that ATF3 is up-regulated in the penile skin tissues of boys with hypospadias, suggesting a role for this transcription factor in the development of this abnormality. Because the etiology of hypospadias may include exposure to estrogenic compounds, the responsiveness of ATF3 to estrogen is also discussed.

Activating Transcription Factor 3↗

Effect of cell passage and density on protein kinase G expression and activation in vascular smooth muscle cells.

It has been shown that rat aortic smooth muscle cells (AoSMCs) lost PKG-I expression when propagated repetitively or grown at low densities. Conversely, AoSMCs isolated from PKG-I deficient mice are indistinguishable from those isolated from normal mice in morphology and growth characteristics. In this study, human AoSMCs were grown from passage 9 (p9) to passage 15 (p15) and rat AoSMCs were isolated and cultured from p1 through p15. Western blotting and immunofluorescence microscopy showed little difference in PKG-I expression among different passages. Next, rat AoSMCs of p4 were grown and harvested at different cell densities. Western blotting again showed little difference among cells seeded or harvested at different densities. To test the effect of cell passage on PKG-I activation, rat AoSMCs of p4 and p11 were treated with cGMP and analyzed by Western blotting for phosphorylated vasodilator-stimulated phosphoprotein (P-VASP). The results showed that p4 had higher level of PKG-I activation than p11.

Actins↗

[Report of a case of penile epithelioid sarcoma].

OBJECTIVE: To enhance the knowledge and the effect of the diagnosis and treatment of primary epithelioid sarcoma of the penis. METHODS: One rare case of primary epithelioid sarcoma of the penis was studied with regard to its primary clinical process and characteristics, differential diagnosis and method of treatment. RESULTS: An operation was performed on the penis to treat the epithelioid sarcoma. The diagnosis was confirmed by immunohistological and pathological techniques. There was no evidence of relapse during the three-year follow-up after operation. CONCLUSION: The possibility of primary epithelioid sarcoma of the penis should be considered if a mass or induration of the proximal penis and the symptoms of urethremphraxis are found. Total phallectomy could be chosen as an appropriate method of treatment. Unless adenopathy is palpable, node dissections are not recommended.

Adult↗

Up and down-regulation of phosphodiesterase-5 as related to tachyphylaxis and priapism.

PURPOSE: We identify whether tachyphylaxis and priapism effects of sildenafil are related to regulation of phosphodiesterase-5 (PDE-5) expression. MATERIALS AND METHODS: Cavernous smooth muscle cells (CSMCs) were isolated from young rats and treated with 0, 1, 10 and 25 microM sildenafil with or without 100 microM of sodium nitroprusside for 3 and 7 days. The cells were subjected to reverse transcriptase-polymerase chain reaction and Western blot analysis for PDE-5 expression. Plasmid constructs carrying PDE-5A1 and PDE-5A2 promoters were transfected into COS-7 cells, treated with 25 microM sildenafil and analyzed for promoter activities. To simulate priapism, CSMCs were cultured under anoxia or hypoxia and then analyzed for PDE-5 expression. Furthermore, rats underwent bilateral pudendal arterial ligation for 1 day to 14 weeks, and corpus cavernous tissues were subjected to reverse transcriptase-polymerase chain reaction analysis for PDE-5 expression. RESULTS: Up-regulation of PDE-5 was noted in CSMCs treated with 25 microM sildenafil for 7 days. PDE-5 messenger RNA and protein levels were significantly increased in the 7-day sildenafil treated cultures. Sodium nitroprusside appeared to down-regulate PDE-5 expression. Sildenafil significantly increased the activities of PDE-5A1 promoter. PDE-5 expression was significantly reduced under anoxia and hypoxia. The corpus cavernous tissue showed a gradual decrease in PDE-5 expression under ischemia. CONCLUSIONS: Repeated treatment with sildenafil at high concentrations was needed to simulate tachyphylaxis in our cell culture system. Adequate oxygenation was important for PDE-5 expression. Thus, sicklemic patients may express PDE-5 at abnormally low levels, predisposing them at risk of stuttering priapism.

3',5'-Cyclic-GMP Phosphodiesterases↗

[Studies on the testis regression related gene profile in aged male].

OBJECTIVE: To understand the mechanism of testis regression in aging male. METHODS: Human testis tissues were obtained during related operation with informed consent (normal young male 3 cases and aged male 3 cases). Total RNA was isolated by QIAGEN RNAeasy kit. Differentiations of gene expression were studied by Clon-Tech cDNA microarray methods and the differential expression gene in aged male were classified by Venter's classify system and the candidate genes were investigated by RT-PCR analysis. RESULTS: In the results of cDNA microarray we found 117(1.46%) gene differentiations in aged male at least more than 1.0 fold. Among them, the 83 genes were down-regulated and the 34 genes up-regulated. The down expressed genes related to metabolism were 16(19.3%), gene or protein expression 18(21.7%), cell signaling or cell communication 16(19.3%), cell division 19(22.9%), cell structure or motility 6(7.2%) and unknown function 4 genes (4.8%). The up expressed genes related to cell division were 11 (32.4%), gene or protein expression 10(29.4%) and metabolism 3 (8.8%). It is interesting to find that respiratory chain related gene cox7a2 was up-regulated and atp50 down-regulated significantly which as further confirmed by RT-PCR analysis with sequence analysis in the products of the RT-PCR by T-A cloning. CONCLUSION: The gene expression profile in aged male testis was changed significantly as compared with that in normal young controls; testis regression in aging male may relate multi-gene differentiations, especially the differentiations of respiratory chain related gene cox7a2, atp50, which may be an important candidate gene in the study of the mechanism of testis regression in aging male.

Cell Differentiation↗

Upregulation of monocyte chemoattractant protein 1 and effects of transforming growth factor-beta 1 in Peyronie's disease.

Peyronie's disease (PD) is characterized by fibrosis in the tunica albuginea (TA) of the penis, which becomes bent as a result. We have previously shown that transforming growth factor-beta 1 (TGF-beta1) is upregulated in the TA of patients with PD and can initiate PD-like lesions in rat models. In this study we isolated three types of fibroblasts: P cells from the lesions of PD patients, C cells from the normal-appearing areas of the TA of the same patients, and N cells from the TA of patients without PD. We examined these cells for the expression of two fibrogenic cytokines, connective tissue growth factor (CTGF), and Monocyte Chemoattractant Protein 1 (MCP-1). We found that CTGF was expressed at similar levels in P, C, and N cells, whereas MCP-1 was significantly more expressed in P cells than in C cells and more in C cells than in N cells. Higher MCP-1 expression was also found in the lesions than in normal TA. Treatment with TGF-beta1-induced higher expression of MCP-1 but not CTGF in all three types of cells, with C cells being the most responsive. Based on these observations, we propose that MCP-1 could be a novel therapeutic target in PD.

Chemokine CCL2↗