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Biomedical subjects

W H Marks

Publications and source records attributed to W H Marks.

At least 37 records · Page 2Linked to original sources

Percutaneous endoscopic gastrostomy for gastric decompression in metastatic gynecologic malignancies.

We report our experience with 28 patients using percutaneous endoscopic gastrostomy (PEG) for decompression of gastrointestinal obstruction as a result of carcinomatosis secondary to gynecologic malignancy. PEG could be performed successfully in 26 of the 28 patients. In two patients, intubation was not possible for technical reasons and the procedure was aborted. PEG is more cost-effective and safer than operative tube placement in these patients and offers a significantly better quality of life to the patient than does chronic nasogastric intubation.

Adult↗

Biochemical detection of small intestinal allograft rejection by elevated circulating levels of serum intestinal fatty acid binding protein.

BACKGROUND: Intestinal fatty acid binding protein (I-FABP) was investigated as a serum marker for acute intestinal allograft rejection. Its behavior was compared with that of another putative marker of intestinal damage, hexosaminidase. METHODS: Transplants were performed in three groups of rats: group 1, Lewis to Lewis; group 2, ACI to Lewis, no immunosuppression; and group 3, ACI to Lewis with cyclosporine given on posttransplant days 0 through 5. Daily serum I-FABP and hexosaminidase levels were quantitated and serial graft biopsy specimens were obtained. RESULTS: Serum I-FABP levels fell to 20 ng/ml or less in all animals between posttransplant days 3 and 4. In group 1, I-FABP levels remained at baseline throughout the experiment. In group 2, I-FABP levels rose dramatically on either day 6 or 7 and declined to baseline within 4 days of the peak. On the day that I-FABP levels increased, findings of biopsy specimens were consistent with early rejection. In group 3 the rise in serum I-FABP levels was delayed 2 to 10 days. Hexosaminidase did not correlate with rejection. CONCLUSIONS: Serum I-FABP content correlated with early histologic manifestations of rejection. Hexosaminidase was insensitive as a marker in this model. I-FABP, which has a human analog, has potential as a biochemical marker for early intestinal allograft rejection.

Animals↗

Intestinal fatty acid binding protein in serum and urine reflects early ischemic injury to the small bowel.

BACKGROUND: Intestinal fatty acid binding protein (I-FABP) is a 15 kd protein that constitutes 2% to 3% of enterocyte protein. Normally I-FABP is undetectable in serum. The purpose of this study was to determine whether I-FABP could be detected in peripheral serum and/or urine early in the evolution of intestinal ischemic injury. METHODS: I-FABP and two putative biochemical markers of mesenteric ischemia, hexosaminidase and lactate dehydrogenase, were quantitated in the serum of rats subjected to mesenteric ischemia produced by: (1) 0.5 hours, 1 hour, or 3 hours of superior mesenteric artery (SMA) occlusion followed by reperfusion; (2) 1 hour of mesenteric occlusion to a 10 cm segment of jejunum followed by reperfusion; and (3) arterial ligation to a 10 cm segment of jejunum without reperfusion. I-FABP was also quantitated in the urine and intestinal mucosa of these animals. RESULTS: The baseline serum I-FABP level was < or = 4.0 ng/ml in all animals. In control animals, I-FABP remained unchanged throughout the experiment. In the ischemia/reperfusion groups, I-FABP immediately appeared in the serum on reperfusion. With segmental arterial ligation, I-FABP was detected in the serum within 15 minutes. Urinary content of I-FABP rose 60 minutes after its initial appearance in the serum, and its elimination paralleled serum I-FABP levels. Serum hexosaminidase and lactate dehydrogenase levels only rose after 3 hours of SMA occlusion with reperfusion. One hour of SMA occlusion and reperfusion resulted in only mild to moderate mucosal injury, whereas 3 hours of SMA ischemia with reperfusion produced areas of transmural necrosis. CONCLUSIONS: I-FABP is released into the peripheral circulation after reversible intestinal ischemic injury and has potential as a biochemical marker to facilitate the early detection of mesenteric ischemia.

Animals↗

A three-year experience with serum anodal trypsinogen as a biochemical marker for rejection in pancreatic allografts. False positives, tissue biopsy, comparison with other markers, and diagnostic strategies.

Serum values of immunoreactive anodal trypsinogen (sAT) have been claimed to correlate well with rejection occurring in pancreatic allografts. We have studied the behavior of sAT in serial serum samples obtained from 39 type I diabetics undergoing whole-organ pancreas transplantation during the past 3 years. Patients had either received a pancreatic allograft simultaneously with a transplanted kidney (SPK, n = 33) or after a previous kidney transplant (pancreas after kidney [PAK] n = 6). The behavior of sAT was studied in relation to the clinical diagnosis of rejection. Graft amylase output for all 39 patients and serum creatinine for the 33 SPK recipients were also studied. Tissue biopsies were obtained from 11 patients with elevated sAT values and a presumptive diagnosis of rejection. Nine of these patients had SPK grafts and simultaneously elevated creatinine values. Tissue was obtained from the simultaneously transplanted kidney; all specimens revealed rejection. Two of the 11 patients had PAK allografts. Biopsies performed on the graft duodenum were consistent with acute rejection. Three additional patients with unchanged sAT values had biopsies for other reasons; these biopsies failed to demonstrate signs of acute rejection. Thus graft biopsy correlated exactly with sAT behavior in every case in which rejection was suspected. Five patients had elevations of sAT not associated with rejection: one resulted from direct trauma, two had outlet obstruction, and two had clinical diagnoses of graft pancreatitis. The sAT was more sensitive and specific than GAO and as sensitive as creatinine for SPK recipients. These studies confirm that sAT is a reliable, graft-specific biochemical marker for the early diagnosis of pancreatic rejection. The use of sAT should allow for the proper timing of graft biopsies and the judicious use of immunosuppressive agents, which will result in increased allograft survival for PAK and pancreas-alone allografts.

Algorithms↗

The effect of cyclosporine administration on the cellular distribution and content of cyclophilin.

Cyclophilin (CYP), an intracellular protein sharing amino acid sequence identity with the enzyme peptidyl-prolyl cis-trans isomerase has become the leading candidate for the receptor responsible for cyclosporine biological effects. Avid binding of CYP to cyclosporine and immunosuppressive cyclosporine metabolites has been demonstrated, while nonimmunosuppressive cyclosporine metabolites have tended not to bind to cyclophilin. A previous immunohistochemical analysis documented that CYP localized principally to the cytoplasmic cellular compartment, but nuclear staining was observed among some cells. This study was undertaken to more precisely define the ultrastructural distribution of CYP, and to determine whether CYP cellular content was affected by CsA therapy. Untreated Wistar rats or those receiving 7 days of CsA (15 mg/kg/day, i.p.) were anesthetized, perfusion-fixed in situ, and sacrificed. Analyses of lymph node, spleen, thymus, kidney, liver, heart, brain, and ileum used an affinity purified, rabbit anticyclophilin IgG. Transmission electron microscopy was performed after staining with anti-CYP using a horseradish peroxidase/biotin/avidin technique. Quantitative immunofluorescence was measured by confocal microscopy using anti-CYP, with a biotin/avidin/phycoerythrin technique. Cyclophilin localized to the cytoplasmic compartment--however, association with mitochondria endoplasmic reticulum, Golgi, and with the nuclear membrane among lymphocytes, as well as cells from kidney, liver and ileum--was documented. Cyclophilin was not identified within the nucleus proper. Tissues obtained from animals receiving CsA exhibited a generalized increase in CYP content compared with tissues from untreated controls, suggesting the possibility that CsA may exert a regulatory influence upon CYP gene activation. Collectively, the data were consistent with the hypothesis that CYP exerts a central role in cellular metabolism, and that CsA-mediated biologic effects result from the CsA/CYP interaction.

Amino Acid Isomerases↗

Decreased tissue inhibitor of metalloproteinases (TIMP) in abdominal aortic aneurysm tissue: a preliminary report.

Important concepts underlying the pathophysiology of abdominal aortic aneurysm (AAA) disease include a genetic predisposition, male predominance, and increased proteolysis. Proteolytic activity is carefully controlled by an abundance of protease inhibitors and the increased proteolysis may reflect a decrease in inhibitory activity. The recent assignment for the major tissue inhibitor of metalloproteinases (TIMP) to the X chromosome provides a potential link between the male predominance and increased proteolysis noted in AAA. The purpose of this investigation was to measure the amount of TIMP in normal and diseased aorta. A polyclonal antibody to recombinant human TIMP was produced in rabbit and used to establish an immunoassay. Immunoreactive TIMP in normal and diseased aorta was then measured. There was more TIMP in the matrix-associated fraction than in the soluble fraction. There was significantly less immunoreactive TIMP in aortic extracts from AAA than from control as measured both by Western blot and radioimmunoassay. These results suggest that a diminished amount of TIMP in the aortic matrix in AAA patients may contribute to the increased proteolysis observed in AAA.

Aorta, Abdominal↗

Ultrasound imaging of pancreatico-duodenal transplants.

A preliminary investigation of the role of ultrasound, including color and duplex Doppler, was performed in recipients of cadaveric pancreatico-duodenal transplants. Twenty such examinations were done on three patients. Three different complications were noted: rejection, pancreatitis, and peripancreatic abscess. The mean normal resistive index (RI) was 0.71 +/- 0.12. The normal allograft anteroposterior (AP) dimension ranged from 1.5 to 2.0 cm. Intraparenchymal and main feeding vessels were demonstrated easily. RI calculations alone were not helpful in diagnosing graft rejection. However, this diagnosis can be made using a new biochemical marker, serum anodal trypsinogen. We conclude that when used in conjunction with a reliable biochemical marker for rejection (serum anodal trypsinogen), ultrasound, including color and duplex Doppler, provides an important adjunct for the rapid, inexpensive, and complete evaluation of patients with pancreatico-duodenal transplants.

Cadaver↗

The immunochemical distribution of cyclophilin in normal mammalian tissues.

Cyclophilin, a 17 Kd proline cis-trans isomerase, high-affinity (Kd 10(-8) M) target for the immunosuppressive drug cyclosporine has ubiquitous phylogenic distribution, but its tissue localization in mammals has not been detailed. To explore a potential relationship between the multiple systemic effects of CsA and the cellular and tissue distribution of CYP, thirty-three different normal porcine tissues were examined using an immunohistochemical technique. Tissue was obtained from farmbred pigs, immediately fixed in buffered formalin, and prepared as embedded 5-mu sections. Immune-specific staining was accomplished using an ABC immunoperoxidase method and an affinity-purified, monospecific, rabbit anti-CYP IgG. Cut sections served as their own blanks and controls, and all tissues were stained in batch to minimize the effects of variation in technique. Consistent with earlier reports, CYP was present in all tissues studied, however, there was remarkable heterogeneity in CYP distribution. Renal parenchymal cells, cardiac and striated muscle, pulmonary and skin demonstrated cytoplasmic immunospecific CYP--however, the cellular localization varied. Cytoplasmic staining of endothelial, neural, and glandular elements was consistently observed. Contrasting with previous reports, CYP localized to the nucleus as well as the cytoplasm of some lymphoid cells, hepatocytes, and cells of the large intestine. Generally, greater CYP-specific staining was noted in organs amenable to CsA immunosuppression (heart, liver, kidney), compared with organs deemed more immunologically vulnerable when allografted under CsA (pancreas, lung, small bowel). Similarly, CYP-immunospecific staining was abundant in tissues susceptible to CsA toxicities (neural tissue, smooth muscle, kidney, liver). This detailed immunohistological examination affords a correlation between CYP content and sensitivity to CsA. It also raises some new questions about tissues with little extractable CYP but significant histological staining.

Amino Acid Isomerases↗

Tissue inhibitor of metalloproteases (TIMP) is matrix associated in aortic tissue: report of a radioimmunoassay.

Tissue inhibitor of metalloproteinases (TIMP) is the major inhibitor of collagenase, gelatinase, proteoglycanase, stromelysin, and metalloelastases. An imbalance between proteases and inhibitors has been implicated in numerous disease processes including tumor invasion, rheumatoid arthritis, emphysema, and aortic aneurysm disease. The purpose of this investigation was to develop a polyclonal antibody to recombinant TIMP and establish an immunoassay to measure immunoreactive protein in normal and diseased tissues. A polyclonal antibody was produced in rabbit against recombinant human TIMP which was characterized and used to establish a radioimmunoassay. The assay was used to measure immunoreactive protein in fibroblast conditioned medium, human serum, and aortic extracts. There was more immunoreactive TIMP in matrix associated urea extracts than soluble salt extracts from human aorta, suggesting that TIMP is matrix associated. The sensitivity of the assay enables the specific measurement of this inhibitor in serum, fibroblast culture medium, and tissue extracts.

Aorta, Abdominal↗

Serum immunoreactive anodal trypsinogen and urinary amylase as biochemical markers for rejection of clinical whole-organ pancreas allografts having exocrine drainage into the urinary bladder.

Rejection of pancreas allografts is best measured today by co-monitoring the creatinine of a simultaneously transplanted kidney allograft from the same donor. This methodology discourages pancreas transplantation for patients who have previously received a kidney allograft and preuremic patients. Thus, an early, graft-specific marker of rejection is desirable. In this study we compared 2 putative biochemical markers for rejection of pancreas allografts, serum immunoreactive anodal trypsinogen and urinary amylase, with serum creatinine in 15 simultaneously transplanted type I diabetics. Serial values during hospitalizations were determined. Follow-up ranged from 18 to 134 postoperative days. Rejection was diagnosed clinically and considered real if the patient received a course of anti-rejection medication. Ten of these 15 patients experienced a total of 21 rejection episodes. For all episodes of rejection, serum trypsinogen rose from a baseline of 398.1 +/- 25 ng/ml to 1686.2 +/- 317.9 ng/ml (P less than 0.001) on the day of rejection. Urinary amylase fell from 88,310 +/- 7877 U/24 hr to 37,508 +/- 7142 U/24 hr (P less than 0.001). For 10 patients in whom rejection was diagnosed on the initial hospitalization so that serial prediagnosis sera and urines were available, anodal trypsinogen rose from a baseline of 756 +/- 263 ng/ml to 1936 +/- 582 ng/ml (P less than 0.001). Urinary amylase values for these same 10 patients did not change significantly (baseline = 55,788 +/- 18,404 U/24 hr, rejection = 47,133 +/- 14,737 U/24 hr, (P = 0.7). We conclude that serum anodal trypsinogen behaves as a graft-specific biochemical marker for rejection of vascularized pancreas allografts.

Amylases↗

Immunoreactive anionic and cationic trypsin in human serum.

A simple method for the purification of anionic and cationic trypsinogen and trypsin from human pancreatic juice applying affinity chromatography on aprotinin coupled Sepharose is described together with the N-terminal amino acid sequences for both trypsinogens. In addition, enzyme-linked immunoabsorbent assay (ELISA) methods for the determination of anionic and cationic trypsin-like immunoreactivity (irAT and irCT) are described. Normal serum levels are 21.3 +/- 7.4 micrograms/l and 27.8 +/- 9.0 microgram/l for irAT and irCT respectively and the accuracy of these assays is 6-10%. In our population, the normal ratio between irCT and irAT in serum is 1.36 +/- 0.42. In normal serum trypsin-like immunoreactivity consists solely of trypsinogen. In acute pancreatitis there is an increase over normal of both irAT and irCT with a proportionally greater increase in irAT than irCT. Similar changes are also found in uremic patients.

Acute Disease↗