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Biomedical subjects

B Lane

Publications and source records attributed to B Lane.

At least 91 records · Page 5Linked to original sources

Combination treatment for massive cavernous hemangioma of the face: YAG laser photocoagulation plus direct steroid injection followed by YAG laser resection with sapphire scalpel tips, aided by superselective embolization.

A massive cavernous hemangioma of the face in an 11 month old child has been successfully resected utilizing a combination of laser and non-laser techniques. The hemangioma was initially treated twice with YAG laser photocoagulation plus direct injection of steroids. This treatment promptly stopped the rapid growth and induced blanching as well as a 25% shrinkage with each treatment. Arteriogram with superselective embolization produced a further shrinkage of the hemangioma. Finally, the contact YAG laser with sapphire scalpel tips was utilized for complete and cosmetically satisfactory hemangioma resection. The treatment of a massive cavernous hemangioma by a combination of modalities is discussed.

Combined Modality Therapy↗

Benefits of contact and noncontact YAG laser for periorbital hemangiomas.

Twenty patients with capillary/cavernous hemangiomas of the periorbital area (eyelid, eyebrow, nose extending to canthus) have been treated with a variety of techniques. Six patients were treated by yttrium-aluminum-garnet (YAG) laser photocoagulation and direct injection of steroids. Rapid shrinkage of the hemangiomas occurred in all patients, and 2 infants whose eye was totally occluded by the hemangioma had their eyes rapidly opened. YAG laser excision with or without previous photocoagulation plus injection and with arteriogram plus superselective embolization was performed in the other 14 patients. Results were satisfactory in all patients.

Adrenal Cortex Hormones↗

Protective effects of trifluoperazine on the microcirculation of cold-stored livers.

Previous studies have shown a protective effect of trifluoperazine (TFP), a calmodulin inhibitor, upon the microcirculation of cold-stored kidneys. The present study points to similar beneficial effects of TFP on the microcirculation of cold-stored livers; 25 canine livers were preserved for 24 hr with Euro-Collins' solution (EC) (n = 8), University of Wisconsin solution (UW) (n = 7), or UW + TFP (n = 10). The stored livers underwent heterotopic transplantation (HLTX); hepatic-artery and portal-vein pressure and flow were monitored; oxygen consumption and extraction were measured before HLTX and at 15-min intervals after reperfusion, for 1 hr. Mean hepatic-artery and portal-vein flow (HAF & PVF) prior to donor hepatectomy were 172 and 530 cc/min, respectively. Poor HAF and PVF occurred in EC-HLTX (mean 35, 175 cc/min, respectively). The damaged EC-flushed livers could not compensate to the decreased hepatic blood flow by increased oxygen extraction (oxygen consumption and extraction, 8.7 vol.% and 48%, respectively). Light and electron microscopy showed severe liver necrosis and periportal hemorrhages. Improved hepatic-artery and portal-vein flows were seen in UW HLTX (105 and 254 cc/min), and oxygen consumption and extraction were 16.4 vol.% and 66%, respectively. Liver biopsy taken just before reperfusion revealed well-preserved liver architecture. Liver biopsy obtained 1 hr after reperfusion revealed marked edema of the portal triad, sinusoid congestion, and hemorrhage. Electron-microscopy biopsies obtained during reperfusion at 15-min intervals revealed severe vasospasm of the terminal hepatic arterioles and progressive damage to the liver microcirculation. The addition of TFP to the UW-flush solution resulted in excellent protection of the liver microcirculation. Marked increase in hepatic-artery and portal-vein blood flow was noted after reperfusion (mean 167 and 421 cc/min, respectively (P 0.02 vs. UW: P 0.001 vs. EC). The recovery of metabolic activity was evident by the high oxygen consumption and extraction (25.8 vol.% and 80%, respectively). And serial liver biopsies obtained after reperfusion have shown excellent protection of liver architecture and the absence of hepatic arteriolar vasospasm. Taken together, these data suggest that the addition of TFP to the UW solution protects the liver microcirculation by rendering the hepatic microcirculation insensitive to vasospastic stimuli during reperfusion, thus permitting better metabolic recovery after transplantation.

Adenosine↗

Benign versus pathologic compression fractures of vertebral bodies: assessment with conventional spin-echo, chemical-shift, and STIR MR imaging.

Differentiation of benign from pathologic compression fractures of vertebral bodies was evaluated with magnetic resonance imaging in a prospective study of 53 patients. Twenty-six patients had 34 benign posttraumatic compression fractures. Twenty-seven patients had metastatic disease to the vertebral column and seven pathologic fractures. T1- and T2-weighted spin-echo (SE) sequences (1.5 T) were performed in all patients. A presaturation technique was used to obtain "fat" and "water" images to better assess the degree of normal fatty marrow replacement in fractured vertebrae. Short inversion-time inversion-recovery (STIR) images were also obtained. Discrimination between benign and pathologic compression fractures was generally possible with the SE sequences. Chronic benign fractures demonstrated isointense marrow signal intensity (SI), compared with that of normal vertebrae with all sequences. Pathologic fractures showed low SI on T1-weighted images and high SI on T2-weighted images. Fat images revealed complete replacement of normal fatty marrow, shown as absent SI in the involved vertebral body. Water and STIR images showed diffuse high SI in pathologic fractures, with STIR images having the highest contrast between abnormal and normal marrow. Acute benign compression fractures also demonstrated high SI on T2-weighted, water, and STIR images, but the SI was less pronounced and the pattern was generally more inhomogeneous than that of pathologic compressions. In general, fat images showed only partial replacement of normal fatty marrow by low SI, in contrast to the complete absence of marrow SI typical of pathologic fractures.

Adolescent↗

Hemorrhage in intracerebral arteriovenous malformations: angiographic determinants.

The most serious and frequent complication of intracranial arteriovenous malformations (AVMs) is intracranial hemorrhage. Identification of patients at greatest risk for intracranial bleeding would be beneficial. Detailed analysis of vascular architecture was performed in 65 patients with intracranial AVMs to identify the vascular characteristics that correlated with hemorrhage. Fifteen characteristics were assessed. Hemorrhage was present in 45 patients (69%). The following characteristics correlated positively with hemorrhage (Fisher-Irwin exact test): central venous drainage (P less than .0001), periventricular or intraventricular location of the AVM (P = .0002), and intranidal aneurysm (P = .028). The following characteristics correlated negatively with hemorrhage: angiomatous change (P = .0005), peripheral venous drainage (P = .005), and mixed venous drainage (P = .021). Multivariate linear discriminant analysis demonstrated that central venous drainage, angiomatous change (negatively predictive), intranidal aneurysm, and periventricular or intraventricular location of the AVM were the most discriminating or predictive characteristics of hemorrhage. Detailed analysis of the vascular architecture of intracranial AVMs helped identify features that strongly correlate with clinical hemorrhage and have important prognostic implications for the treatment of patients with these lesions.

Adult↗

Polyaspartic acid inhibits gentamicin-induced perturbations of phospholipid metabolism.

We investigated whether polyaspartic acid (PAA) can inhibit aminoglycoside-induced perturbations of phospholipid metabolism in cultured renal cells of opossum and rabbit and examined the mechanism involved. Cells incubated in medium containing gentamicin (10(-3) M) manifested a time-dependent increase in total phospholipid in association with the appearance of lysosomal myeloid bodies, impaired degradation of phospholipid, and disruption of the phosphatidylinositol (PI) cascade in response to bradykinin stimulation. These alterations of phospholipid metabolism were either completely or almost completely prevented in cells grown in medium containing gentamicin (10(-3) M) and PAA (3 x 10(-4) M, mol wt 11,000) even though PAA did not inhibit the cellular accumulation of gentamicin (40 +/- 1 vs. 42 +/- 1 micrograms/mg protein). In other in vitro studies, we demonstrated that gentamicin depressed the permeability of phosphatidylcholine (PC)/PI liposomes to glycerol and promoted liposomal aggregation. Both effects were blocked by prior addition of PAA. Methylene blue, a cationic dye, was shown to form an electrostatic complex with PAA; gentamicin competitively displaced methylene blue bound to PAA. Our results support the conclusion that the protective effect of PAA is related to its ability to serve as an anionic substrate that electrostatically binds aminoglycoside antibiotics and, thereby, prevents these polycationic drugs from interacting electrostatically with anionic phospholipid of cell membranes.

Animals↗

Changing patterns of keratin expression during progression of cervical intraepithelial neoplasia.

The expression of keratins in normal cervical epithelia, metaplastic epithelium, and cervical intraepithelial neoplasia (CIN) grades I, II, and III is investigated with a panel of keratin polypeptide-specific monoclonal antibodies. This approach allowed the detection of individual keratins 4, 7, 8, 10, 13, 14, 18, and 19 at the single-cell level. By using an antibody recognizing keratins 5 and 8 (RCK 102) and two antibodies specific for keratin 8 (CAM 5.2 and M 20), it was also possible to derive information on the distribution of keratin 5. Our results show that during immature squamous metaplasia there is an acquisition of keratins typical of squamous epithelium, ie, keratins 4, 5, 13, and 14. This process continues during further differentiation to mature squamous metaplasia. In premalignant lesions the expression pattern of the progenitor reserve cells and immature squamous metaplastic epithelium is partly conserved. However, in most cases an induction in the expression of the keratins 4, 13, and 14 was observed. Furthermore, CIN III shows a more extensive expression of keratins typical of simple epithelia, ie, keratins 8 and 18, as compared to CIN I and CIN II.

Adult↗

Precise, easy measurement of glass pipet tips for microinjection or electrophysiology.

We describe a simple procedure to measure precisely the tip diameter of glass micropipets. This procedure can improve the precision of microinjection and some electrophysiological measurements due to their extreme sensitivity to the pipet's exact geometric dimensions. The technique is nondestructive and readily carried out as a brief, extra step in these applications. Digital measurements of the threshold pressures for gas bubbling from (gas filled) pipets submerged in methanol were used to calculate the corresponding inner tip diameters using the LaPlace equation. Direct measurements of the inner tip diameters (from 0.2-5.0 mu) using scanning electron microscopy confirmed the validity of this indirect, simple procedure.

Electrophysiology↗

Role of epidermal growth factor in the expression of A431 cancer cell protease and red blood cell cytotoxicity.

The role of epidermal growth factor in the regulation of the proteolytic and RBC cytolytic activity of the A431 cancer cell line has been evaluated using our previously described gelatin/polyacrylamide electrophoretic assay and tumor-induced RBC cytolysis assay, respectively. A431 cells maintained in 10% fetal bovine serum were actively cytolytic for RBC (release index, 53.0 +/- 2.9%), whereas serum-starved cells maintained in serum-free medium were not cytolytic for RBC. RBC cytotoxicity was restored by adding as little as 3.4 pM epidermal growth factor to the serum-deprived cells. The RBC cytolytic stimulating activity of epidermal growth factor could be mimicked by the metal chelating agent 1,10-phenanthroline, suggesting a possible role for calcium ions in the action of epidermal growth factor and proteases. An enriched cell membrane preparation of A431 cells was also cytolytic for RBC but was unaffected by metal chelating agents. RBC-induced cytotoxicity was inhibited by the protease inhibitor leupeptin. Gelatin substrate gels of enriched A431 cell membrane preparations and serum-free supernatants revealed a pattern of high- and low-molecular-weight proteases that were stimulated by metal chelators and inhibited by leupeptin. The activity of these proteases appears to be regulated by epidermal growth factor by a process that may involve divalent cations.

Carcinoma, Squamous Cell↗

Cell lineage analysis of maize bundle sheath and mesophyll cells.

Maize leaves are divided into repeated longitudinal units consisting of vascular tissue, bundle sheath (BS), and mesophyll (M) cells. We have carried out a cell lineage analysis of these cell types using six spontaneous striping mutants of maize. We show that certain cell division patterns are preferentially utilized, but not required, to form the characteristic arrangement of cell types. Our data suggest that early in development a central cell layer is formed, most frequently by periclinal divisions in the adaxial subepidermal layer of the leaf primordium. Lateral and intermediate veins are initiated in this central layer, most often by divisions which contribute daughter cells to both the procambium and the ground meristem. These divisions generate "half vein" units which comprise half of the bundle sheath cells around a vein and a single adjacent M cell. We show that intermediate veins are multiclonal both in this transverse direction and along their lengths. BS cells are more closely related to M cells in the middle layer of the leaf than to those in the upper and lower subepidermal layers. An examination of sector boundaries has shown that photosynthetic differentiation in M cells is affected by the phenotype of neighboring BS cells.

Cell Differentiation↗

Effect of gentamicin on phospholipid metabolism in cultured rabbit proximal tubular cells.

We examined the hypothesis that the accumulation of phospholipid in cells exposed to gentamicin is due to impaired degradation. Experiments were performed in rabbit proximal tubular cells grown in primary culture. Cells exposed to 10(-3) M gentamicin manifested myeloid body formation and a progressive increase in total phospholipid that by day 6 was 44% higher than that of control cells and reflected increases of phosphatidylinositol of 235%, phosphatidylcholine of 60%, phosphatidylethanolamine of 90%, and phosphatidylserine of 55% above control values. Gentamicin impaired the degradation of these phospholipids. The t1/2 of the phospholipid pool labeled with [3H]myoinositol increased 146% from 1.17 (control) to 2.88 days (gentamicin); the t1/2 of the [3H]choline pool increased 34% from 1.77 to 2.38 days; the t1/2 of the [3H]ethanolamine pool increased 57% from 3.14 to 4.93 days; the t1/2 of the [3H] serine pool increased 37% from 6.30 to 8.63 days. Exposure of cells to gentamicin for 2 days also stimulated increased incorporation of [3H]myoinositol (68%) and [3H]ethanolamine (59%) into phospholipid. The data are consistent with the hypothesis that gentamicin inhibits the activity of lysosomal phospholipases that results in the accumulation of phospholipid within the lysosome in the form of myeloid bodies. Increased phospholipid synthesis may represent a compensatory response to the impaired lysosomal degradation of phospholipid. We postulate that the preferential increase of phosphatidylinositol reflects the capacity of the polycationic gentamicin to interact electrostatically with the anionic phosphoinositides and inhibit their turnover.

Animals↗

Leukemia derived from intermediately differentiated lymphocytic lymphoma.

The availability of monoclonal antibodies has facilitated the immunophenotypic characterization of malignant lymphocytes from patients with lymphoma and leukemia. The chronic lymphocytic leukemias are diseases of both clinical and morphological diversity and the application of monoclonal antibodies can prove helpful in their classification. Enzyme cytochemistry, surface markers, mouse rosetting, and electron microscopy were used to determine the phenotype of cells from an atypical case of B-CLL. The use of monoclonals Leu-1, CALLA and BA-2 on bone marrow and peripheral blood provided the opportunity to diagnose this patient's disease as intermediately differentiated lymphoma. Leu-1 was found to be a useful alternative to mouse rosetting, a technique not easily performed in a routine setting. Ultrastructural studies helped to prove the prolymphocytic component of this patient's disease. It was concluded that phenotypic characterization of lymphoid cells using monoclonal antibodies directed against membrane antigens facilitated the assessment of this patient's disease.

Antigens, Surface↗

Germin. Molecular cloning of cDNA that selects germin mRNA from bulk wheat mRNA.

(1) Bulk mRNA from germinated wheat embryos was denatured with methylmercury and subjected to electrophoresis in agarose gel to obtain a fraction of mRNA that was modestly enriched with respect to its complement of translatable germin mRNA. This fraction of mRNA was used as a source of primary templates for preparing a cDNA library. (2) Escherichia coli JM101 was transfected with recombinant pUC8 plasmids containing cDNA inserts. Colonies of transformed bacteria (ca. 4 x 10(3)) were differentially screened by hybridizing them with cDNA probes that were prepared from RNA populations containing different proportions of translatable germin mRNA. (3) A 160 base pair (bp) cDNA, which hybridized more strongly to the probe made from the RNA population containing the greater proportion of translatable germin mRNA in colony hybridizations, also hybridized more strongly to the RNA population containing the greater proportion of translatable germin mRNA when it was used as a probe for Northern analysis. (4) As judged by peptide mapping of a protein made by cell-free translation, the 160-bp cDNA selected virtually pure germin mRNA from the bulk mRNA of germinated wheat embryos when it was used in "hybrid release" experiments. The same 160-bp cDNA was used to select a "full length" germin cDNA from a library prepared by the Gubler-Hoffman method.

Cloning, Molecular↗

Oncogene ras p21- and v-src pp60-transformed cells exhibit altered expression of proteases.

To evaluate the proteolytic activities of oncogene-transfected 3T3 cells, we have developed a copolymerized substrate electrophoretic assay that permits the detection of picogram quantities of proteases produced by cells in culture. Our assay involves a gelatin substrate copolymerized in a polyacrylamide gel. Purified cell membrane preparations were run on gels and various protease activities were detected by amido black. Ras-transfected 3T3 cells appear to have a soluble metalloprotease that may be transiently membrane bound and responsible for destruction of red blood cells (RBC). Oncogene-transfected NIH-3T3 cells have been demonstrated to have RBC cytolytic activity. We have previously shown that v-src-transfected 3T3 cells and their cell membranes cause RBC cytolysis which is inhibited by the protease inhibitor leupeptin. Here we report that both H-ras- and K-ras-transfected 3T3 cells and their cell membranes are cytolytic for RBC, but are inhibited by the metalloprotease inhibitor ethylene diamine tetraacetic acid. Using the gelatin substrate gel assay, we determined that some of the proteases were intrinsic to the oncogene expressing cells, while other proteases were secreted into the culture growth medium.

Cell Line, Transformed↗