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Biomedical subjects

J B Mullen

Publications and source records attributed to J B Mullen.

At least 19 recordsLinked to original sources

Intra-rectal injection of tumour cells: a novel animal model of rectal cancer.

The purpose of this study was to develop an animal model of rectal cancer. Three murine-derived cell lines, B16 melanoma, CT26 and MCA38 colon carcinoma, as well as the human colon cancer cell line LS174T were injected into the submucosa of the mouse rectum. Subcutaneous CT26 anbd B16 tumours and intra-caecal CT26 tumours served as controls for tumourigenicity of the cell lines. B16 melanoma produced a locally aggressive rectal tumour as well as skin and para-aortic lymph node metastases. CT26 produced local tumour when injected intra-rectally and colon tumours and liver metastases when injected into the caecum. MCA38 and LS174T intra-rectal injections resulted in large rectal carcinomas without metastases. We believe that growth of a colon cancer cell line in the rectum approximates the human disease more closely than other models of colorectal cancer. We would expect that the model could similarly be utilized to assess the effects of novel adjuvant treatments for rectal cancer as well as in the study of the tumour biology of rectal cancer.

Adenocarcinoma

Ibuprofen pretreatment does not prevent hemodynamic instability after cemented arthroplasty in dogs.

A bilateral cemented arthroplasty (BCA) in anesthetized mongrel dogs creates pulmonary fat and marrow embolism. A transient increase in plasma concentration of 6-keto prostaglandin F1 alpha and thromboxane B2 has been associated with hemodynamic instability after BCA. We tested whether intravenous ibuprofen (20 mg/kg) could inhibit prostaglandin production, pulmonary hypertension, and decreased arterial blood pressure in this model. We found a decrease in cardiac output from 3.0 +/- 0.5 to 2.2 +/- 1.3 L/min (mean +/- 1 SD) after BCA with a flow probe placed at thoracotomy around the ascending thoracic aorta. Systemic arterial blood pressure decreased from 140 +/- 11 to 100 +/- 15 mm Hg (P less than 0.0001), and pulmonary artery pressure increased from 17.7 +/- 3.3 to 37.1 +/- 9.4 mm Hg (P less than 0.0001). Similar hemodynamic changes were noted in 12 dogs without thoracotomy. Pretreatment with ibuprofen did not significantly attenuate the acute hemodynamic changes despite inhibiting prostaglandin generation. We conclude that decreased arterial blood pressure after BCA is associated with a decrease in cardiac output and that inhibition of prostaglandin production with ibuprofen does not prevent either pulmonary hypertension or systemic hypotension.

6-Ketoprostaglandin F1 alpha

Nuclear morphometry and stereology in nasopharyngeal carcinoma.

The prognostic value of nuclear morphometry in nasopharyngeal carcinoma (NPC) was investigated in 28 patients. Seven morphometric nuclear variables were measured on 100 randomly selected tumor cells in nasopharyngeal biopsies from 18 patients with NPC confined to the nasopharynx. The same variables were measured in 6 patients with metastatic NPC, as well as in lymph node biopsies from 4 patients with metastatic NPC. Nuclear area, nuclear perimeter, long and short nuclear axes, nuclear form factor, nucleolar area, and the ratio of nucleolar area to nuclear area were all measured. Volume-weighted mean nuclear volume was also obtained. Tumor cells from patients with NPC confined to the nasopharynx had significantly larger mean nuclear areas, perimeters, and volume-weighted mean nuclear volumes but significantly smaller nucleolar to nuclear area ratios than tumor cells from patients with nodal metastases. Assessment of nuclear form factor and diameters did not differentiate the two groups.

Carcinoma

The role of dextran 40 and potassium in extended hypothermic lung preservation for transplantation.

We have previously demonstrated that a low-potassium dextran solution provides superior and more reliable preservation of lungs for 12 hours than that provided by the commonly used Euro-Collins solution. This study was designed to examine the individual contributions of dextran 40 and a low (extracellular) potassium concentration to lung preservation. In a randomized, blinded study using an in vivo canine single-lung transplant model, lungs preserved with low-potassium dextran solution (K+, 4 mmol/L; dextran 40, 20 gm/L) were compared to lungs preserved with low-potassium, no-dextran solution (K+, 4 mmol/L) and high-potassium dextran solution (K+, 123 mmol/L; dextran 40, 20 gm/L). The lungs were assessed immediately and 3 days after transplantation. The low-potassium dextran solution provided excellent immediate pulmonary function with little variability (arterial oxygen tension, 519 +/- 12 mm Hg, measured on the transplanted lung alone, inspired oxygen fraction = 1.0, n = 6). Removing the dextran 40 from the flush solution (low-potassium group) led to a significant deterioration in pulmonary function (arterial oxygen tension, 243 +/- 78 mm Hg, n = 6, p less than 0.01). The high-potassium dextran solution provided extremely poor preservation (arterial oxygen tension, 176 +/- 79 mm Hg; n = 6; p less than 0.01). Two animals in this group died within 6 hours of operation. Viability of the transplanted bronchus was significantly improved with the two solutions containing dextran 40. These results indicate that dextran 40 and low potassium concentration both contribute significantly to the uniformly excellent 12-hour lung preservation seen with the low-potassium dextran solution.

Animals

Prostanoid production and pulmonary hypertension after fat embolism are not modified by methylprednisolone.

Bilateral cemented arthroplasty (BCA) in anaesthetized mongrel dogs produces particulate fat and marrow embolism of the lung. Methylprednisolone sodium succinate (MPSS) has been advocated for post-traumatic fat embolism to prevent acute lung injury. We used the BCA procedure to produce acute fat and marrow embolism, and tested the efficacy of MPSS (30 mg.kg-1) in preventing physiological and pathological markers of acute lung injury. Dogs (n = 6) pre-treated with MPSS demonstrated similar acute increases in pulmonary artery pressure (PAP) within one minute of BCA (17.8 +/- 7.3 mmHg) as the untreated (control n = 7) dogs (18.6 +/- 12.6). Pulmonary vascular resistance (PVR) increased to the same degree in both groups (455 +/- 323 and 319 +/- 137 dyne.sec.cm-5) and PaO2 decreased by 18.3 +/- 6.4 mmHg in the control group as opposed to 12.4 +/- 7.7 mmHg in the MPSS group within five minutes of BCA. Circulating arterial and mixed venous plasma concentrations of thromboxane B2 (TxB2) increased within one minute of BCA in both groups with no increase in the transpulmonary gradient. Arterial plasma 6-keto prostaglandin F1 alpha (6-keto PGF1 alpha) increased (0.91 +/- 0.29 ng.ml-1 and 0.87 +/- 0.43 ng.ml-1) in both groups one minute after BCA. Mixed venous 6-keto PGF1 alpha plasma concentration also increased, but a significant transpulmonary 6-keto PGF1 alpha gradient was found.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha

Fibrinogen depletion and control of permeability in oleic acid lung injury.

To determine if the biphasic pulmonary clearance of aerosolized 99mTc diethylene penta acetate (99mTc-DTPA) observed in oleic acid lung injury represents acute epithelial damage followed by sealing as a result of intra-alveolar fibrin deposition, we examined the effect of fibrinogen depletion. 99mTc-DTPA clearance was assessed in three groups of rabbits: Group 1, normal fibrinogen + oleic acid injury; Group 2, fibrinogen-depleted + oleic acid injury; Group 3, fibrinogen-depleted with no oleic acid injury. In Group 3 animals with no lung injury, the 99mTc-DTPA clearance rate, expressed as k, the percent decrease in thoracic radioactivity, was similar to that previously reported for healthy rabbits (k = 1.16 +/- 0.57%/min, mean +/- SD). Oleic acid administration to Groups 1 and 2 resulted in significantly faster clearance rates, with identical biphasic curves in all animals, irrespective of fibrinogen status. There were no significant differences between either the initial fast phase (k, Group 1 = 5.26 +/- 1.83%/min, Group 2 = 5.70 +/- 1.77%/min) or the subsequent slow phase (k, Group 1 = 1.67 +/- 0.63%/min, Group 2 = 1.57 +/- 0.55%/min, p greater than 0.05). On histologic examination, Groups 1 and 2 showed greater cellular interstitial infiltrate, alveolar edema, and hemorrhage than did Group 3. Fibrinogen depletion plus oleic acid injury resulted in greater alveolar cellular exudate, edema, and hemorrhage than did either oleic acid or fibrinogen depletion alone. We conclude that fibrinogen is not necessary to produce biphasic 99mTc-DTPA clearance in oleic acid lung injury.

Animals

Acute lung injury induced by phospholipase A2. Structural and functional changes.

On the basis of the observation that serum levels of phospholipase A2 (PLA2) are elevated in pancreatitis and systemic sepsis, and the association of these conditions with the subsequent development of acute lung injury, the present investigation examined the structural and physiologic consequences of intratracheal administration of PLA2 to adult male rats. Rats received direct intratracheal instillation of either control vehicle or 40,000 units/kg of PLA2 repurified from Naja naja venom. Animals treated with PLA2 showed higher cumulative mortality (33% versus 0%, n = 79; p less than 0.01) than did their control littermates. The PLA2-treated animals showed histologic evidence of acute lung injury characterized by interstitial and alveolar edema, accumulation of inflammatory cells, and alveolar wall thickening, which reached maximal severity 48 h after enzyme instillation. Forty-eight hours after PLA2 administration experimental animals had lower arterial oxygen tensions (73.9 +/- 7.66 mm Hg versus 96.7 +/- 2.52 mm Hg, mean +/- SEM; p less than 0.01), higher alveolar-arterial oxygen gradients (35.3 +/- 6.3 mm Hg versus 18.8 +/- 1.42 mm Hg, p less than 0.01), and higher wet-dry lung weight ratios (5.08 +/- 0.26, mean +/- SEM, n = 7 versus 3.29 +/- 0.08, n = 3; p less than 0.002) than did control animals. Lung lavage from experimental animals 48 h after PLA2 instillation showed increased total cell counts [(26.6 +/- 5.04) x 10(6) cells versus (4.69 +/- 1.48) x 10(6) cells; p less than 0.01], an increased percentage of neutrophils (34.2 +/- 4.6% versus 1.25 +/- 0.25%, mean +/- SEM; p less than 0.01), and increased protein concentrations in lavage fluid (0.38 +/- 0.06 mg/ml, mean +/- SEM, n = 4 versus 0.27 +/- 0.02 mg/ml, n = 5; p less than 0.05). The histologic and physiologic abnormalities had largely resolved by 240 h. These results suggest that PLA2 may be a potent mediator of lung inflammation and that intratracheal administration of PLA2 to adult rats may provide a useful experimental model of acute lung injury.

Acute-Phase Reaction

Comparative biodistribution and antibody-dependent cellular cytotoxicity of native and heavy chain chimeric antibody.

We have recently chimerized the heavy chain of the pan-carcinoma monoclonal antibody (mAb) B72.3. Studies were undertaken to compare the IgG1 chimeric antibody, B72.3-1-3 with native murine B72.3 (nB72.3). Using fluorescence-activated cell sorting analysis, B72.3-1-3 demonstrated specific binding to fresh LS174T tumor cells. Biodistribution of 131I B72.3-1-3 was similar to 131I nB72.3 in nude mice bearing LS174T xenografts. Peak radiolocalization indices were noted on day 6 for B72.3-1-3 and day 8 for nB72.3. Both antibodies were capable of imaging LS174T tumors by radioimmunoscintigraphy. Antibody-dependent cellular cytotoxicity of LS174T by human peripheral blood lymphocytes was tested in 8h 51Cr release assays. With either no antibody or nB72.3, lymphocytes were not capable of killing LS174T cells. However, B72.3-1-3 at a concentration of 5 and 50 micrograms/ml mediated significant lysis of tumor cells by human lymphocytes. These results suggest that chimeric antibodies retain their binding properties to tumor cells and display biodistribution patterns similar to their unmodified counterparts. Such modifications may reduce the deleterious human antimouse antibody response to murine mAbs as well as augment antibody-dependent cellular cytotoxicity of tumor cells by human effectors.

Animals

Identification of somatostatin receptors in human small cell lung carcinoma.

Biopsy specimens obtained from eight patients with lung cancer were tested for content of somatostatin receptors by autoradiography. Somatostatin receptors were detected in two of three patients with small cell lung cancer (SCLC) but in none of five patients with non-small cell lung cancer (NSCLC) including adenocarcinoma (two), squamous cell carcinoma (two), and bronchoalveolar carcinoma (one). In those with SCLC, specific somatostatin receptor binding was evidenced only in tumor foci and not in surrounding stroma or normal lung parenchyma. Further tissue characterization by immunoperoxidase staining with the pancytokeratin monoclonal antibody, mAB-lu-5, revealed labeling to all of the NSCLC but to none of the SCLC specimen. Selective immunoreactivity was detected in both the SCLC and the NSCLC specimen to chromogranin and neuron-specific enolase (NSE) whereas none of the specimen had detectable immunostaining to somatostatin, bombesin, serotonin, adrenocorticotropic hormone, neurofilament, calcitonin, and synaptophysin. The identification of somatostatin receptors in primary human lung cancer may have a bearing on the biology of this disease and perhaps on the clinical application of somatostatin analogues in patients with SCLC.

Aged

Comparison of cellular immunotherapies and anti-CD3 in the treatment of MCA-38-LD experimental hepatic metastases in C57BL/6 mice.

An experimental model of hepatic metastases in C57BL/6 mice was used to compare the antitumor effects of lymphokine-activated killer (LAK) cells, anti-CD3-activated T-cells (ATC), and anti-CD3 alone. Liver metastases were produced by in vivo passage of MCA-38-LD adenocarcinoma via the ileocolic vein. LAK cells and ATC were generated by 3-day in vitro incubation of spleen cells in interleukin 2 and anti-CD3, respectively. Percentage of tumor volume in livers was determined with a morphometric technique. With less than therapeutic LAK cell doses (0.5-1.0 x 10(7) cells), no effect was seen in mean (+SE, -SE) percentage of tumor volume of control [23.3 (29.3, 18.5)] compared to LAK cell-treated [21.6 (29.3, 15.9)] animals. The same number of ATC significantly reduced the mean percentage of tumor volume [2.7 (4.7, 1.4)] (P less than 0.005). High dose interleukin 2 also significantly decreased tumor volume. More strikingly, a single dose of anti-CD3 alone had a beneficial effect on mean percentage of tumor volume when given i.p. [1.0 (1.9, 0.4)] or i.v. [1.2 (1.7, 0.7)] (P less than 0.0003). A total of 33% of anti-CD3-treated mice had no detectable liver metastases. In 51Cr release assays, the cytotoxicity of ATC was shown to be partially mediated by nylon wool-adherent accessory cells. The effectiveness of anti-CD3 in this immunotherapy model suggests that a similar approach may be taken to immunotherapy of human malignancies, without the requirements for in vitro-generated killer cells or exogenously administered interleukin 2.

Adenocarcinoma

Amiloride impairs lung water clearance in newborn guinea pigs.

To determine whether epithelial ion transport is physiologically important for lung water clearance after birth, the sodium transport inhibitor amiloride or its vehicle saline was given intratracheally to newborn full-term guinea pigs before the first breath. Guinea pigs given saline intratracheally breathed normally and had arterial O2 saturations (SaO2) greater than 94%. In contrast, guinea pigs that had an estimated 10(-4) M intra-alveolar concentration of amiloride had chest wall retractions and 88 +/- 3.6% (SD) SaO2 (P less than 0.01). Extravascular lung water (EVLW) per gram of dry lung weight 4 h after birth was significantly greater in newborns that received amiloride (8.3 +/- 1.1, n = 5) than in those that received saline (5.6 +/- 0.9, n = 7, P less than 0.01). The degree of perivascular fluid cuffing at 25 cmH2O inflation was quantitatively similar in amiloride- and saline-treated animals. The effect of amiloride was dose dependent. Intratracheal amiloride did not affect EVLW in 9-day-old guinea pigs. This study demonstrates that intratracheal amiloride before the first breath results in respiratory distress, hypoxemia, and an abnormally high EVLW. Epithelial sodium transport contributes normal lung liquid clearance after birth.

Amiloride

MRI and neck metastases: a clinical, radiological, pathological correlative study.

In a previous report CT was shown to have no advantage over physical examination in the detection of metastatic neck disease. Therefore, a study was undertaken to evaluate whether MRI would show superiority to the CT in the diagnosis of neck nodes. A series of 35 patients with various head and neck tumors were evaluated clinically, radiographically and pathologically. Eight patients were excluded from the study because of various problems involving the MRI. Therefore, 27 patients with 30 neck dissections were analyzed. There was little advantage of MRI over clinical examination in the detection of metastatic neck disease. The present size criterion for the diagnosis of occult malignant nodes is not reliable. The soft tissue contrast resolution reported by MRI is inadequate to detect minimal morphological changes in lymph nodes involved by metastases, and MRI is difficult in patients who have airway or foodway obstruction.

Head and Neck Neoplasms

Capnography is not as sensitive as pulmonary artery pressure monitoring in detecting marrow microembolism. Studies in a canine model.

We studied several methods for detecting pulmonary embolic events in a model of fat and marrow microembolism during canine cemented arthroplasty procedures. The cardiopulmonary effects of bilateral cemented arthroplasty in this model include increased pulmonary artery pressure and pulmonary vascular resistance accompanying a decrease in arterial oxygen tension. We documented significant fat and marrow microembolism by postmortem quantitative morphometry of lung sections. Vessels occluded ranged in diameter from 0.5 to 190 microns. The acute increases in pulmonary artery pressure (PAP) (to 26.8 +/- 4.4 mm Hg from 15.3 +/- 3.3 mm Hg) after cemented arthroplasty were not detected by changes in continuously monitored end-tidal CO2 or in right atrial or arterial blood pressures. Although capnography is a useful intra-operative monitor, in this model it is less sensitive than PAP monitoring in detection of fat and marrow microemboli.

Animals

Alveolar epithelial damage. A critical difference between high pressure and oleic acid-induced low pressure pulmonary edema.

The present study was designed to compare high pressure pulmonary edema (HPPE) and oleic acid-induced low pressure pulmonary edema (OAPE) in dogs when similar amounts of extra vascular water were present in the lung. The high pressure edema was produced by intravenous fluid overload and by inflating an aortic balloon catheter (n = 6). The low pressure edema was produced by the injecting 0.08 mg/kg oleic acid suspended in 5 ml saline (n = 6). Comparison of the difference between initial control measurements and final measurements in the edematous states showed that the animals with OAPE had a greater fall in percent oxygen saturation and a greater increase in shunt fractions. The light microscopic studies showed that OAPE was associated with greater amounts of alveolar flooding than HPPE where the edema fluid was located to a greater extent in the peribronchial interstitial space. The electron microscopy studies showed that the alveolar flooding in OAPE was associated with epithelial disruption, and tracer studies carried out in rabbits showed that dextran (150,000 mol wt) could pass from blood to airspace and that dextran (40,000 mol wt) could pass from air-space to blood in OAPE. We conclude that epithelial disruption is responsible for the excessive alveolar flooding in OAPE and that this results in a greater impairment in gas exchange.

Animals

Acute hyperesthesia after spinal trauma.

Four cases of acute hyperesthesia after spinal trauma are presented. An attempt is made to characterize the natural history of this syndrome. In the three cases with truncal sensory aberration, hyperesthetic zones developed only anteriorly. All four patients demonstrated spontaneous relief of pain within 2 weeks after injury. The pain was modified by transcutaneous stimulation in one case and by l-dopa in another case. It is suggested that the "lesion" responsible for the hyperesthetic response is partial damage to dorsal root fibers at a point medial to the dorsal root ganglion.

Acute Disease