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Biomedical subjects

S M Hewitt

Publications and source records attributed to S M Hewitt.

At least 19 recordsLinked to original sources

Biomarker and drug-target discovery using proteomics in a new rat model of sepsis-induced acute renal failure.

Sepsis is one of the common causes of acute renal failure (ARF). The objective of this study was to identify new biomarkers and therapeutic targets. We present a new rat model of sepsis-induced ARF based on cecal ligation and puncture (CLP). We used this model to find urinary proteins which may be potential biomarkers and/or drug targets. Aged rats were treated with fluids and antibiotics after CLP. Urinary proteins from septic rats without ARF and urinary proteins from septic rats with ARF were compared by difference in-gel electrophoresis (DIGE). CLP surgery elevated interleukin (IL)-6 and IL-10 serum cytokines and blood nitrite compared with sham-operated rats. However, there was a range of serum creatinine values at 24 h (0.4-2.3 mg/dl) and only 24% developed ARF. Histology confirmed renal injury in these rats. Forty-nine percent of rats did not develop ARF. Rats without ARF also had less liver injury. The mortality rate at 24 h was 27% but was increased by housing the post-surgery rats in metabolic cages. Creatinine clearance and urine output 2-8 h after CLP was significantly reduced in rats which died within 24 h. Using DIGE we identified changes in a number of urinary proteins including albumin, brush-border enzymes (e.g., meprin-1-alpha) and serine protease inhibitors. The meprin-1-alpha inhibitor actinonin prevented ARF in aged mice. In summary, we describe a new rat model of sepsis-induced ARF which has a heterogeneous response similar to humans. This model allowed us to use DIGE to find changes in urinary proteins and this approach identified a potential biomarker and drug target - meprin-1-alpha.

Acute Kidney Injury↗

Tissue microarray analysis of human FRAT1 expression and its correlation with the subcellular localisation of beta-catenin in ovarian tumours.

The mechanisms involved in the pathogenesis of ovarian cancer are poorly understood, but evidence suggests that aberrant activation of Wnt/beta-catenin signalling pathway plays a significant role in this malignancy. However, the molecular defects that contribute to the activation of this pathway have not been elucidated. Frequently rearranged in advanced T-cell lymphomas-1 (FRAT1) is a candidate for the regulation of cytoplasmic beta-catenin. In this study, we developed in situ hybridisation probes to evaluate the presence of FRAT1 and used an anti-beta-catenin antibody to evaluate by immunohistochemistry the expression levels and subcellular localisation of beta-catenin in ovarian cancer tissue microarrays. Expression of FRAT1 was found in some human normal tissues and 47% of ovarian adenocarcinomas. A total of 46% of ovarian serous adenocarcinomas were positive for FRAT1 expression. Accumulation of beta-catenin in the nucleus and/or cytoplasm was observed in 55% ovarian adenocarcinomas and in 59% of serous adenocarcinomas. A significant association was observed in ovarian serous adenocarcinomas between FRAT1 and beta-catenin expression (P<0.01). These findings support that Wnt/beta-catenin signalling may be aberrantly activated through FRAT1 overexpression in ovarian serous adenocarcinomas. The mechanism behind the overexpression of FRAT1 in ovarian serous adenocarcinomas and its significance is yet to be investigated.

Adaptor Proteins, Signal Transducing↗

Sepsis-induced organ failure is mediated by different pathways in the kidney and liver: acute renal failure is dependent on MyD88 but not renal cell apoptosis.

Toll-like receptors (TLRs) are important in sepsis. Myeloid differentiation factor 88 (MyD88) is a key molecule involved in signal transduction by multiple TLRs. The objective of this study was to investigate the contribution of TLR4 and MyD88 to acute renal failure (ARF) induced by polymicrobial sepsis. Liver dysfunction and apoptosis in the spleen contribute to sepsis severity after cecal ligation and puncture (CLP). Therefore, we also investigated liver injury and splenic apoptosis. We used a mouse model of sepsis-induced ARF using CLP to generate polymicrobial sepsis. Despite fluid and antibiotic resuscitation the mice developed multi-organ failure, including ARF, which resembles human sepsis. We investigated the role of the TLR4 receptor by comparing C3H/HeJ mice (which lack TLR4) with C3H/He0UJ normal controls. The role of MyD88 was investigated by comparing MyD88 knockout mice (MyD88(-/-)) with wild-type controls. Following CLP, mice lacking TLR4 and wild-type mice both developed comparable ARF. However, MyD88(-/-) mice did not develop ARF compared to wild-type controls. In contrast, MyD88(-/-) mice developed liver injury comparable to wild type. After CLP, MyD88(-/-) mice had significantly reduced apoptosis in the spleen compared with wild type. Apoptosis was not detected in the kidney of wild-type or MyD88(-/-) mice after CLP. In summary, ARF induced by polymicrobial sepsis is dependent on MyD88, but not TLR4. The absence of MyD88 dissociates ARF from liver injury; liver injury is MyD88-independent. There was MyD88-dependent apoptosis in the spleen, but no apoptosis in the kidney. MyD88 may be a good drug target for some, but not all, organ dysfunctions following sepsis.

Acute Kidney Injury↗

Effect of retroviral endostatin gene transfer on subcutaneous and intraperitoneal growth of murine tumors.

BACKGROUND: Inhibiting tumor angiogenesis is a promising new strategy for treating cancer. Difficulties with the stability, manufacture, and long-term administration of recombinant antiangiogenic proteins have prompted investigators to use gene therapy to generate these proteins in vivo. We investigated whether transfer of the gene encoding the angiogenesis inhibitor endostatin into the murine liver cell line NMuLi could inhibit tumor growth in vivo. METHODS: NMuLi cells were transduced with retroviral vectors containing the murine endostatin gene. The presence and function of endostatin in transduced cell supernatants were confirmed by competitive enzyme immunoassay and endothelial cell proliferation assays. Nude mice were given a subcutaneous or intraperitoneal injection with NMuLi cells, control transduced cells (NEF-null), or endostatin-transduced clones (NEF-Endo1 to 4) and were monitored for tumor growth. All statistical tests were two-sided. RESULTS: Supernatants from the clone secreting the lowest amount of endostatin (NEF-Endo4, 28 ng/mL) inhibited endothelial cell proliferation by 6% (95% confidence interval [CI] = 0% to 12%), and those from the clone secreting the highest amount (NEF-Endo1, 223 ng/mL) inhibited endothelial cell proliferation by 20% (95% CI = 13% to 27%). Increased levels of endostatin were detected in tumor lysates, but not serum, of mice given a subcutaneous injection of NEF-Endo1 cells. After 63 days, mice given a subcutaneous injection of parental NMuLi or NEF-null cells had tumor volumes of 2400 mm(3) (95% CI = 1478 mm(3) to 3300 mm(3)) and 2700 mm(3) (95% CI = 2241 mm(3) to 3144 mm(3)), respectively, compared with mean tumor volumes of less than 30 mm(3) in mice given an injection of NEF-Endo clones, a statistically significant difference (P<.001). After 123 days, all 16 mice given an intraperitoneal injection of parental NMuLi or NEF-null cells had died, compared with only three (9%) of 32 mice given an injection of NEF-Endo clones. CONCLUSIONS: Retroviral endostatin gene transfer leads to secretion of functional endostatin that is sufficiently active to inhibit tumor growth. Further studies of retroviral endostatin gene transfer for the treatment of cancer are warranted.

Angiogenesis Inhibitors↗

Interleukin-10 inhibits ischemic and cisplatin-induced acute renal injury.

BACKGROUND: Acute renal failure (ARF) is caused by ischemic and nephrotoxic insults acting alone or in combination. Anti-inflammatory agents have been shown to decrease renal ischemia-reperfusion and cisplatin-induced injury and leukocyte infiltration. Interleukin-10 (IL-10) is a potent anti-inflammatory cytokine that inhibits inflammatory and cytotoxic pathways implicated in acute renal injury. Therefore, we sought to determine if IL-10 inhibits acute renal injury. METHODS: The effects of IL-10 were studied in mice following cisplatin administration and bilateral renal ischemia-reperfusion, in a rat model of renal transplantation, and in cultured mouse cortical tubule cells. RESULTS: IL-10 significantly decreased renal injury following cisplatin administration and following renal ischemia/reperfusion. Delay of IL-10 treatment for one hour after cisplatin also significantly inhibited renal damage. IL-10 and alpha-melanocyte stimulating hormone (alpha-MSH) increased recovery following transplantation of a kidney subjected to warm ischemia. To explore the mechanism of action of IL-10, its effects were measured on mediators of leukocyte trafficking and inducible nitric oxide synthase (NOS-II). IL-10 inhibited cisplatin and ischemia-induced increases in mRNA for tumor necrosis factor-alpha (TNF-alpha), intercellular adhesion molecule-1 (ICAM-1), and NOS-II. IL-10 also inhibited staining for markers of apoptosis and cell cycle activity following cisplatin administration, and nitric oxide production in cultured mouse cortical tubules. CONCLUSIONS: IL-10 protects against renal ischemic and cisplatin-induced injury. IL-10 may act, in part, by inhibiting the maladaptive activation of genes that cause leukocyte activation and adhesion, and induction of iNOS.

Animals↗

Intramedullary spinal cord metastasis from renal cell carcinoma: detection by positron emission tomography.

Although positron emission tomography (PET) is an established diagnostic method in brain and lung cancer, its use is often confined to research. The authors report a case of a minimally symptomatic intramedullary spinal cord metastasis, an uncommon and often diagnostically challenging lesion, that was confirmed by PET. A 37-year-old man with a history of metastatic renal cell carcinoma treated with systemic agents, an autologous stem cell transplant, and local palliative radiotherapy with a 2-month history of vague right foot numbness and right leg dysesthesias was found to have an intramedullary lesion at the level of T12. Although the findings of magnetic resonance imaging suggested central necrosis, a PET scan revealed a metabolically active lesion and confirmed the diagnosis of intramedullary metastasis. PET can be used to detect and confirm intramedullary spinal cord metastatic carcinoma. PET imaging may have a vital role in clinical diagnosis by helping to distinguish diagnostically troublesome lesions based on metabolic activity.

Adenocarcinoma, Clear Cell↗

Intraoperative ultrasound during renal parenchymal sparing surgery for hereditary renal cancers: a 10-year experience.

PURPOSE: We review our 10-year experience with intraoperative ultrasound during renal parenchymal sparing surgery in patients with hereditary renal cancers. MATERIALS AND METHODS: Between 1991 and 2000, 68 nephron sparing procedures were performed on 26 women and 27 men, all but 1 of whom had a hereditary predisposition to renal cancer, for example von Hippel-Lindau, hereditary papillary renal cancer. Intraoperative ultrasound was performed after the surgeon removed all visible or palpable lesions. High frequency transducers (7 MHz.) and color Doppler were used in all cases. Lesions were characterized as simple cysts, complex cysts or solid masses, and were recorded on a map. RESULTS: A total of 935 lesions (mean 12.8 lesions per kidney) were removed in 68 nephron sparing operations performed on 53 patients. Of these lesions 870 were removed without while 65 required intraoperative ultrasound. In 17 of 68 (25%) procedures intraoperative ultrasound identified renal cancers that were not detectable by the surgeon. Mean tumor size of ultrasound detected lesions was 1.0 cm. (range 2 mm. to 4 cm.). Of the 32 cystic lesions identified by intraoperative ultrasound 5 contained renal carcinoma, and 29 of the 33 solid renal masses were renal cell carcinomas. During reoperations ultrasound enabled the surface of the kidney to be evaluated even when it was inaccessible due to scar tissue or adherent perinephric fat. CONCLUSIONS: Intraoperative ultrasound can be performed after all visible lesions have been removed and identifies additional tumors in 25% of patients with hereditary renal cancer, thus ensuring that as many tumors as possible have been removed during renal parenchymal sparing surgery.

Carcinoma, Renal Cell↗

Loss of annexin 1 correlates with early onset of tumorigenesis in esophageal and prostate carcinoma.

Annexin I protein expression was evaluated in patient-matched longitudinal study sets of laser capture microdissected normal, premalignant, and invasive epithelium from human esophageal squamous cell cancer and prostatic adenocarcinoma. In 25 esophageal cases (20 by Western blot and 5 by immunohistochemistry) and 17 prostate cases (3 by Western blot and 14 by immunohistochemistry), both tumor types showed either complete loss or a dramatic reduction in the level of annexin I protein expression compared with patient-matched normal epithelium (P < or = 0.05). Moreover, by using Western blot analysis of laser capture microdissected, patient-matched longitudinal study sets of both tumor types, the loss of protein expression occurred in premalignant lesions. Concordance of this result with immunohistochemical analysis suggests that annexin I may be an essential component for maintenance of the normal epithelial phenotype. Additional studies investigating the mechanism(s) and functional consequences of annexin I protein loss in tumor cells are warranted.

Adenocarcinoma↗

Endothelial monocyte activating polypeptide II induces endothelial cell apoptosis and may inhibit tumor angiogenesis.

Endothelial monocyte activating polypeptide II (EMAP-II) is a tumor-derived cytokine with potent effects on endothelial cells in vitro and in vivo including upregulation of tissue factor and the sensitization of human melanoma to systemic TNF treatment via its effects on the tumor vasculature. We investigated the effects of EMAP-II on tumor growth, angiogenesis, vasculogenesis, and apoptosis. EMAP-II inhibited endothelial cell proliferation, vasculogenesis, and neovessel formation. In vivo growth of human melanoma lines expressing high amounts of EMAP-II demonstrated slower growth, smaller tumors, and increased amounts of tumor necrosis than those expressing lower amounts of EMAP-II. EMAP-II induced endothelial-cell-specific apoptosis via a pathway that includes upregulation of the Fas-associated death domain and downregulation of Bcl-2. EMAP-II appears to have important effects on angiogenesis and may play a role in regulating tumor vascular growth.

3T3 Cells↗

Utilization of microdissection and the polymerase chain reaction for the diagnosis of adrenal cortical carcinoma in fine-needle aspiration cytology.

BACKGROUND: Loss of heterozygosity (LOH) for several tumor suppressor genes (including loci on 3p, 1p, and 17p,) has been documented in surgical specimens of adrenal cortical carcinomas (ACCA) without accompanying losses in benign hyperplastic and adenomatous adrenal cortical lesions (ACL). This disparate pattern of LOH raises the possibility of exploitation of these differences for diagnostic utilization. Cytologic differentiation of benign versus malignant ACL may be impossible based solely on fine-needle aspiration (FNA) material. The authors attempted to extrapolate the genetic findings on surgical specimens to FNA specimens of ACL to determine whether LOH studies could be utilized as a definitive diagnostic tool. METHODS: Microdissection of archival material was performed on FNAs of ten ACCAs (stained with the Papanicolaou and Diff-Quik stains) with corresponding histologic material (stained with hematoxylin and eosin), one FNA of a benign ACL, and three touch preparations of benign adrenal cortex. LOH analysis was performed by polymerase chain reaction (PCR) with flanking markers for the following putative tumor suppressor genes: p53 (17p13; TP53), 1p (1p36; D1S165), and the von Hippel-Lindau gene at 3p25 (D3S1038 and D3S1110). RESULTS: Similar results were obtained with cytologic and histologic material. As expected, benign ACL showed no LOH for the markers examined. Of the informative ACCA cases, 70% showed LOH for at least 1 of the 3 markers tested on both FNA and histologic samples. For all cases with amplifiable DNA, there was a 100% concordance rate for LOH between cytologic and histologic material, with at least 7 of the 10 cytologic samples originating from metastatic lesions and all of the surgical material originating from the primary adrenal neoplasm. CONCLUSIONS: The results of this study suggest that the combination of microdissection and PCR for LOH of p53, 1p, and 3p25 from FNA material has the potential to be utilized to distinguish ACCA from benign ACL in informative cases. It also shows a 100% concordance rate between metastatic and primary ACCAs for the losses observed, a finding that can be extremely useful for the definitive identification of metastatic lesions. Archival cytologic preparations of ACCA are a reliable source of DNA for LOH studies. [See editorial counterpoint on pages 173-5 and reply to counterpoint on pages 176-7, this issue.] Cancer (Cancer Cytopathol)

Adrenal Cortex Neoplasms↗

Differential function of Wilms' tumor gene WT1 splice isoforms in transcriptional regulation.

The Wilms' tumor gene, WT1, encodes a zinc finger transcription factor that can repress transcription of a number of genes. WT1 mRNA undergoes alternative splicing at two locations, yielding four different mRNA species and protein products. One alternative splice alters the zinc finger region of WT1, resulting in the addition of three amino acids, Lys-Thr-Ser (KTS), between zinc fingers 3 and 4, altering the binding of WT1 to DNA. Here, we show that the WT1 protein with and without the KTS tripeptide can repress transcription from the human full-length WT1 promoter. Repression of transcription by WT1 has been shown to require two WT1 binding sites. We examined WT1 repression of the human minimal WT1 promoter, which contains two potential WT1 binding motifs. WT1 lacking the KTS tripeptide (WT1-KTS) was unable to repress transcription from a minimal WT1 promoter of 104 base pairs, whereas WT1 containing the KTS tripeptide (WT1+KTS) repressed transcription from the minimal promoter. The ability of WT1+KTS to repress transcription where WT1-KTS could not provided a functional assay to define differential WT1 binding motifs based on the presence or the absence of the KTS tripeptides. We present data defining the differential consensus DNA binding motifs for WT1-KTS and WT1+KTS. We demonstrate that WT1 zinc finger 1 plays a role in the differential DNA binding specificity of WT1-KTS and WT1+KTS.

Alternative Splicing↗

Regulation of the proto-oncogenes bcl-2 and c-myc by the Wilms' tumor suppressor gene WT1.

The Wilms' tumor gene WT1 functions as a tumor suppressor gene, repressing transcription of several growth factors and growth factor receptors. The bcl-2 and c-myc proto-oncogenes are essential for regulation of apoptosis and cell proliferation with roles in development and oncogenesis. We found that WT1 can repress transcription of both the bcl-2 and c-myc promoters. This suggests that WT1 regulates bcl-2 and c-myc during renal development, and the loss of functional WT1 results in deregulation of bcl-2 and c-myc, contributing to tumor formation.

Amino Acid Sequence↗

Transcriptional silencer of the Wilms' tumor gene WT1 contains an Alu repeat.

Expression of the Wilms' tumor gene WT1 is tightly regulated throughout development. In contrast, the WT1 promoter is promiscuous, functioning in all cell lines tested. We have cloned a transcriptional silencer that is involved in regulation of the WT1 gene. The transcriptional silencer is located in the third intron of the WT1 gene, approximately 12 kilobases from the promoter, and functions to repress transcription from the WT1 promoter in cell lines of non-renal origin. The 460-base pair silencer region is unusual in that it contains a full-length Alu repeat. We have also cloned an enhancer like-element located 1.3 kilobases upstream of the WT1 promoter.

Base Sequence↗

Rhabdomyolysis following acute alcohol intoxication.

The case of a fit young man who developed rhabdomyolysis after a short period of immobilization following acute alcohol intoxication is described. Rhabdomyolysis should be considered in an intoxicated patient presenting with muscle tenderness, particularly after immobilization.

Adult↗

Transcriptional regulation of the human Wilms' tumor gene (WT1). Cell type-specific enhancer and promiscuous promoter.

The Wilms' tumor gene, WT1, is expressed in few tissues, mainly the developing kidney, genitourinary system, and mesothelium, and in immature hematopoietic cells. To develop an understanding of the role of WT1 in development and tumorigenesis, we have identified transcriptional regulatory elements that function in transient reporter gene constructs transfected into kidney and hematopoietic cell lines. We found three transcription start sites of the WT1 gene and have identified an essential promoter region by deletion analysis. The WT1 promoter is a member of the GC-rich, TATA-less, and CCAAT-less class of polymerase II promoters. Whereas the WT1 promoter is similar to other tumor suppressor gene promoters, the WT1 expression pattern (unlike Rb and p53) is tissue-restricted. The WT1 GC-rich promoter is promiscuous, functioning in all cell lines tested, independent of WT1 expression. This finding suggests that the promoter is not tissue-specific, but that tissue-specific expression of WT1 is modulated by additional regulatory elements. Indeed, we have identified a transcriptional enhancer located 3' of the WT1 gene > 50 kilobases downstream from the promoter. This orientation-independent enhancer increases the basal transcription rate of the WT1 promoter in the human erythroleukemia cell line K562, but not in any of the other cell lines tested.

Base Sequence↗

Manipulation under sedation in the accident and emergency department.

The Royal College of Surgeons of England recently published guidelines for sedation by non-anaesthetists. The report emphasizes sedation for endoscopy and dental surgery, but the recommendations are equally relevant to accident and emergency (A&E) medicine. Current sedation practice for orthopaedic manipulations was determined by questionnaire in 58 A&E and orthopaedic junior staff in one teaching and one district general hospital. Of the 50 doctors who completed the questionnaire, 14 (28%) respondents made an inadequate pre-sedation assessment. Over half were unable to name the antagonist to benzodiazepine drugs. Eleven (22%) doctors administered supplemental oxygen to all their patients, 12 (24%) did not consider it necessary. Pulse oximetry was used for patient monitoring by one respondent (2%). None of the junior staff had received any formal training in sedation techniques. Thirty-one (62%) had attended a resuscitation refresher course within the last year. These results emphasize the need for training in sedation techniques for A&E and orthopaedic juniors and the importance of appropriate supervision.

Clinical Competence↗