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Biomedical subjects

M Kapadia

Publications and source records attributed to M Kapadia.

17 recordsLinked to original sources

Bioremediation of crude oil contamination with Acinetobacter sp. A3.

Acinetobacter sp. A3 is able to extensively degrade Bombay High Crude Oil (BHCO) and utilize it as the sole source of carbon. A total degradation of 70% BHCO was noted by the end of 120 h of growth of Acinetobacter sp. A3 under shake flask condition, 60% of which was due to biodegradation. In crude oil-contaminated soil (5%) amended with Acinetobacter sp. A3, there was both an increase in colony-forming units (CFU) and crude oil degradation. This is in contrast to a decrease in CFU of the indigenous microorganisms and lower degradation in unamended soil within the same 30-day period. Also, Acinetobacter sp. A3-treated soil permitted better germination of Mung beans (Phaseolus aureus) and growth as evidenced by better length and weight of the plants and chlorophyll content of its leaves, which was attributed to the reduction in phytotoxicity of the crude oil owing to its degradation. This crude oil degradative capability of Acinetobacter sp. A3 could be exploited for bioremediation purposes.

Acinetobacter

Spatial integration and cortical dynamics.

Cells in adult primary visual cortex are capable of integrating information over much larger portions of the visual field than was originally thought. Moreover, their receptive field properties can be altered by the context within which local features are presented and by changes in visual experience. The substrate for both spatial integration and cortical plasticity is likely to be found in a plexus of long-range horizontal connections, formed by cortical pyramidal cells, which link cells within each cortical area over distances of 6-8 mm. The relationship between horizontal connections and cortical functional architecture suggests a role in visual segmentation and spatial integration. The distribution of lateral interactions within striate cortex was visualized with optical recording, and their functional consequences were explored by using comparable stimuli in human psychophysical experiments and in recordings from alert monkeys. They may represent the substrate for perceptual phenomena such as illusory contours, surface fill-in, and contour saliency. The dynamic nature of receptive field properties and cortical architecture has been seen over time scales ranging from seconds to months. One can induce a remapping of the topography of visual cortex by making focal binocular retinal lesions. Shorter-term plasticity of cortical receptive fields was observed following brief periods of visual stimulation. The mechanisms involved entailed, for the short-term changes, altering the effectiveness of existing cortical connections, and for the long-term changes, sprouting of axon collaterals and synaptogenesis. The mutability of cortical function implies a continual process of calibration and normalization of the perception of visual attributes that is dependent on sensory experience throughout adulthood and might further represent the mechanism of perceptual learning.

Animals

Purinergic receptors in ocular ciliary epithelial cells.

Adenosine and ATP have been shown to activate separate cell surface purinergic receptors which have been designated P1 for adenosine and P2 for ATP. The pharmacological characterization of P1 and P2 purinergic receptor-mediated signal transduction has been performed in cultured cell lines of the ciliary epithelium. In ODM Clone-2, a cell line derived from human nonpigmented ciliary epithelium (NPE) and in a clone derived from bovine pigmented ciliary epithelium (PE), we observed that adenosine inhibits adenylate cyclase activity at high potency (nM) and stimulates adenylate cyclase activity at low potency (microM) suggesting the presence of P1 subtypes on these cell membranes. The selective agonist cyclopentyladenosine (CPA) was effective at inhibiting forskolin-stimulated adenylate cyclase in these cells. The IC50 for CPA in both NPE and PE was approximately 1 nM in the absence, and 11 nM in the presence of 3-isobutyl-1-methylxanthine (IBMX). In NPE, the selective agonist 2-[p-(2-carboxyethyl)phenethylamino]-5'-N-ethylcarboxamido adenosine (CGS 21680) stimulated adenylyl cyclase with an EC50 of 11 +/- 4 nM in the presence of 4-(3-butoxy-4-methyoxybenzyl)-2-imidazolidinone (RO-20-1724), a phosphodiesterase inhibitor devoid of adenosine receptor antagonism, and 61 +/- 8 microM in the presence of IBMX. In PE cells, EC50 value of RO-20-1724 was 19 +/- 5 nM (n = 3). The characterization of P2 receptors based upon the ability of ATP and its related analogues to stimulate inositol phosphate production reveal the presence of a putative P2u receptor in both cell types.

Adenosine

Abnormal processing of pro-IGF-II in patients with hepatoma and in some hepatitis B virus antibody-positive asymptomatic individuals.

Hepatomas are a common malignancy in countries with a high prevalence of hepatitis B virus infections. These tumors may present with severe persistent hypoglycemia. We have studied the possible relationship of production of insulin-like growth factor II (IGF-II) by these tumors and the development of hypoglycemia. Mean IGF-II concentration was not significantly higher in 23 patients with hypoglycemia than in nine patients with euglycemia (542 +/- 61 [SE] micrograms/L vs 382 +/- 52 micrograms/L). Serum IGF-I was more suppressed in patients with hypoglycemia (16 +/- 3 micrograms/L) than in patients with euglycemia (57 +/- 18 micrograms/L). Because an increased percentage of IGF-II in serum of patients with hypoglycemia who have other tumors is present as partially processed pro-IGF-II ("big" IGF-II), we passed sera of patients with hypoglycemia and patients with euglycemia with hepatomas through acidic Bio-Gel P-60 columns. We found that 57% +/- 4.6% of the IGF-II in sera from patients with hypoglycemia was present as big IGF-II compared with 22% +/- 3% in patients with euglycemia with hepatomas (not significantly different from that in normal controls). Four of 11 apparently healthy control subjects who were hepatitis B virus positive also had increased percentages of big IGF-II, suggesting that abnormal processing of pro-IGF-II may result from subtle changes in liver function with this infection. It remains to be determined whether these subjects with increased big IGF-II are at increased risk for the development of hepatomas. In conclusion, we have confirmed marked suppression of IGF-I in the sera of patients with hepatoma and hypoglycemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Significance of abnormal serum binding of insulin-like growth factor II in the development of hypoglycemia in patients with non-islet-cell tumors.

We reported that serum and tumor from a hypoglycemic patient with a fibrosarcoma contained insulin-like growth factor II (IGF-II), mostly in a large molecular form designated "big IGF-II." We now describe two additional patients with non-islet-cell tumor with hypoglycemia (NICTH) whose sera contained big IGF-II. Removal of the tumor eliminated most of the big IGF-II from the sera of two patients. Because specific IGF-binding proteins modify the bioactivity of IGFs, the sizes of the endogenous IGF-binding protein complexes were determined after neutral gel filtration through Saphadex G-200. Normally about 75% of IGFs are carried as a ternary complex of 150 kDa consisting of IGF, a growth hormone (GH)-dependent IGF-binding protein, and an acid-labile complexing component. The three patients with NICTH completely lacked the 150-kDa complex. IGF-II was present as a 60-kDa complex with variable contributions of smaller complexes. In the immediate postoperative period, a 110-kDa complex appeared rather than the expected 150-kDa complex. Abnormal IGF-II binding may be important in NICTH because the 150-kDa complexes cross the capillary membrane poorly. The smaller complexes present in our patients' sera would be expected to enter interstitial fluid readily, and a 4- to 5-fold increase in the fraction of IGFs reaching the target cells would result.

Adult

Synthesis and secretion of insulin-like growth factor II by a leiomyosarcoma with associated hypoglycemia.

We describe a case of recurrent hypoglycemia apparently caused by secretion of insulin-like growth factor II (IGF-II) by a leiomyosarcoma. A 67-year-old woman presented with recurrent severe hypoglycemia and a large mass in the thorax. During hypoglycemia, plasma cortisol was elevated, but insulin and growth hormone levels were low. After resection of a large leiomyosarcoma, the hypoglycemia resolved. After an eight-year remission, both the tumor and symptomatic hypoglycemia recurred. During a second operation a second large tumor was removed, with relief of the patient's hypoglycemia. The tumor contained high concentrations of IGF-II mRNA and 2100 ng of IGF-II immunoreactive peptide per gram. Filtration through a BioGel P-60 gel column established that 77 percent of the IGF-II was present as a larger molecule, demonstrating incomplete processing of the pro-IGF-II peptides. A similar fraction of high-molecular-weight IGF-II was present in the serum, indicating that the tumor was the chief source of IGF-II. The high-molecular-weight IGF-II found in both the tumor and serum was fully reactive with the IGF-II receptor. Radioimmunoassay showed that the concentrations of insulin-like growth factor I (IGF-I) in tumor and serum were low, suggesting feedback inhibition of growth hormone secretion by IGF-II. Eight months after reoperation, plasma concentrations of IGF-I and IGF-II were normal, and high-molecular-weight IGF-II was virtually undetectable. We conclude that the most likely cause of this patient's recurrent hypoglycemia was IGF-II produced by the leiomyosarcoma.

Aged

Reduced 125I-hGH binding by serum of dwarf pigs but not by serum of dwarfed poodles.

1. Normal and growth-deficient poodle and swine strains were characterized for serum growth hormone-binding protein (GH-BP) content as well as other growth-related hormones, and the relationship between these factors and body size was examined. 2. GH-BPs were found in all strains of pigs and poodles. Concentrations of GH-BPs (as expressed by specific bindings) did not vary among the poodle breeds, but did correlate with body size in pigs. 3. Insulin-like growth factors (IGFs) I and II were decreased 71 and 44% respectively in miniature compared to standard size poodles. 4. Only the Yucatan micro pig strain had reduced serum IGF-I concentrations compared to normal controls. 5. Growth hormone concentrations however were normal to elevated in all micro and miniature pig strains. 6. Serum triiodothyronine concentrations were reduced in Yucatan mini and micro pigs in spite of normal circulating levels of thyroxine. 7. Body size reductions in the swine and dog strains are probably attributable to different primary defects of various growth related hormones or hormone receptors. 8. Each species breed therefore could serve as a model for a different human growth-deficient condition.

Animals

Serum somatomedin binding proteins: physiologic significance and interference in radioligand assay.

Mammalian sera contain binding proteins that specifically complex with somatomedins (insulin-like growth factor I and II) so that there are no detectable free somatomedins. There is immunologic evidence of two distinct types of serum binding proteins. The major binding protein complex (150,000 Mr) is growth hormone dependent. Binding proteins protect somatomedins from proteolytic degradation, retard plasma clearance, and decrease the availability to tissue receptors. The presence of serum binding proteins interferes with radioimmunoassays and radioreceptor assays for somatomedins. Proposed strategies to neutralize the interference from binding proteins without their elimination do not achieve this goal. Extraction of somatomedins by acid ethanol, hydrophobic absorption on C18 silicates (SepPak), and acid gel filtration are effective with human serum, but only acid gel filtration is satisfactory with rat serum. Failure to eliminate binding proteins from assays can lead to serious artifacts in conditions where abnormalities of binding proteins exist.

Acromegaly

Insulin-like growth factors I and II in maternal and fetal guinea pig serum.

The role of insulin-like growth factors (IGFs) in fetal development has been the subject of much speculation. We undertook studies of maternal and fetal IGF I and II in the guinea pig because the long gestation period and greater size of the fetuses permitted blood sampling over a longer period of gestation and maturation than is possible in the rat. Acid gel filtrates of fetal and maternal serum were prepared, and the IGF I was measured by RIA; IGF II was measured by rat placental membrane radioreceptor assay. Fetal IGF I levels were lower than maternal levels from the 33rd day of estimated gestation to term. Fetal IGF II levels from the 33rd day to the 49th day of gestation were not significantly different from those of maternal serum [1597 +/- 377 (SE) ng/ml vs. 1295 +/- 224] ng/ml. Very high levels of IGF II, in excess of 5000 ng/ml, were observed in fetuses at 50, 55, and 60 days of gestation. Thereafter, fetal IGF II levels fell markedly before term. Fetal and maternal IGFs after 49, 50, 60, and 65 days of pregnancy were compared by isoelectric focusing. The guinea pig normally has two major basic peaks of IGF I, which were present both in maternal and fetal serum. Most maternal and fetal guinea pig sera contained only a single, slightly acidic peak of IGF II. No evidence of a unique fetal IGF was detected by our methods. The very high levels of IGF II reached in fetal guinea pig sera suggest that it may have a role in fetal development.

Animals

Insulin-like growth factors I and II of nonmammalian sera.

We have compared the insulin-like growth factors (IGFs) of a number of mammalian and nonmammalian vertebrate sera. Sera were subjected to acid gel filtration through G-75 Sephadex and separate binding protein and free IGF fractions were pooled. The IGF pools were subjected to flatbed isoelectric focusing and the concentration of IGF I in the fractions was detected with an immunoassay using 125I-hIGF I and the somatomedin C antibody of Underwood and Van Wyk. IGF II in the fractions was detected with either the 125I-IGF rat placental membrane RRA or the 125I-IGF II serum binding protein assay. One or more basic peaks of IGF I immunoactivity were detected in all the mammalian sera studied (human, guinea pig, rat, bovine, kangaroo, and opossum) and all the nonmammalian species studied (chicken, turtle, toad, and trout). Neutral and slightly acidic peaks of IGF II receptor reactivity were observed in human, cow, and guinea pig serum. No distinct peaks of IGF II were observed in adult rat, opossum, or kangaroo serum. Distinct peaks of IGF II activity in the neutral to slightly acidic range were clearly recognized in chicken and turtle serum, no such peaks were recognized in toad and trout serum. All mammalian sera studied contained acid stable, binding proteins with high affinity, saturable binding of 125I-IGF II. None of the nonmammalian sera studied contained demonstrable specific 125I-IGF II binding. These observations document the presence of separate IGF I and IGF II peptides in chickens and turtles but only IGF I in amphibians and fish. These observations indicate that the gene duplication giving rise to two separate IGFs arose before reptilian evolution. The acquisition of a specific IGF binding protein is limited to mammals.

Animals

Release of insulin-like growth factors and binding protein activity into serum-free medium of cultured human fibroblasts.

We have studied insulin-like growth factors (IGFs) and IGF-binding proteins released by human fibroblasts. Conditioned medium was obtained after incubation of 2 X 10(6) cells in 2 ml serum-free medium for 72 h. IGF binding protein was identified in aliquots of conditioned medium at 4 C for 16 h with [125]IGF II after charcoal separation. After gel filtration in neutral phosphate buffer through Sephadex G-150, the binding activity eluted with an apparent size greater than 100,000 daltons. After gel filtration through Bio-Rad P-100 in 1 M acetic acid, binding activity had a molecular size of about 50,000 daltons. When [125I]IGF-II bound to conditioned medium binding protein was cross-linked with disuccimidyl suberate and subjected to sodium dodecyl sulfate polyacrylamide gel electrophoresis, the complex had an estimated molecular size of 67,000 daltons. Competitive binding studies with labeled and unlabeled IGF-I and IGF-II showed that IGF-II was preferentially bound by fibroblast binding protein. The above findings are characteristic of serum binding protein but not shed IGF surface receptors. To eliminate possible interference from binding proteins in the IGF-I RIA and the IGF-II radioreceptor assay, conditioned medium was subjected to acid gel filtration, and the peptide fractions were pooled. We found that conditioned medium of seven fibroblast lines contained 0.20 +/- 0.06 ng/ml IGF-I. After the addition of 20 ng/ml human GH (hGH), the conditioned medium contained 0.48 +/- 0.09 ng/ml. These results are lower than those previously reported. One of the two lines of fibroblasts from patients apparently resistant to GH had a minimal increase in IGF-I in conditioned medium after hGH addition. We were able to detect IGF-II in fibroblast conditioned medium in concentrations of 4.4 to 21 ng/ml but there was no consistent response to GH either in the normal fibroblast lines or in fibroblasts obtained from children with short stature.

Carrier Proteins

Measurement of somatomedin-related peptides in fetal, neonatal, and maternal rat serum by insulin-like growth factor (IGF) I radioimmunoassay, IGF-II radioreceptor assay (RRA), and multiplication-stimulating activity RRA after acid-ethanol extraction.

Previous measurements of somatomedins (Sms) and insulin-like growth factors (IGFs) in maternal and fetal serum have yielded contradictory results. We have, therefore, measured maternal, fetal, and neonatal rat serum with two highly specific assays: 1) IGF-I/Sm-C RiA and 2) a highly specific IGF-II/rat placental membrane radioreceptor assay (RRA). In addition, we have made measurements with a less specific multiplication-stimulating activity (MSA)-rat placental membrane RRA. To avoid possible serious artifacts created by Sm-binding proteins, preliminary acid-ethanol extraction of serum was performed. Results are expressed in terms of a reference human serum with an assigned potency of 1 U/ml. Maternal RIA IGF-I fluctuated between 1.1-1.4 U/ml from the 17th day of pregnancy to the 25th day after delivery (nonpregnant rat serum pool, 1.25 +/- 0.22 U/ml). On day 21 of gestation, fetal serum radioimmunoassayable IGF-I was 1.03 +/- 0.03 U/ml. After birth, radioimmunoassayable IGF-I fell and reached .19 +/- 0.03 U/ml at 18 days of age, but rose to 0.71 +/- 0.04 U/ml at 25 days of age. At term, maternal radioreceptor assayable IGF-II was 2.18 +/- 0.27 U/ml (nonpregnant female pool, 1.4 +/- 0.12). By the 25th postpartum day, radioreceptor assayable IGF-II was 1.39 +/- 0.12 U/ml. Radioreceptor assayable IGF-II in fetal serum on day 19 was 3.26 +/- 0.48 U/ml and rose to 5.37 +/- 0.66 U/ml on the day of delivery. A further rise to 8.92 +/- 1.03 occurred on day 5. A subsequent fall to 2.41 +/- 0.05 U/ml was observed on day 25. The patterns of results of the MSA RRA in fetal and neonatal rat serum were similar to that obtained with the IGF-II RRA. We now conclude that radioimmunoassayable IGF-I is present in higher concentrations than previously reported in term fetal rat serum and that radioreceptor assayable IGF-II is selectively elevated in rat fetal and neonatal life and may have unique metabolic and growth-promoting significance.U

Animals

Characterization of somatomedin binding in human serum by ultracentrifugation and gel filtration.

It is known that the somatomedins exist in human serum complexed to specific binding proteins. The existence of unbound somatomedins in serum has never unequivocally been demonstrated. We have characterized the distribution of insulin-like growth factor (IGF) I in different fractions after gel filtration of serum through Sephadex G-200 in neutral buffer. IGF-I was measured by RIA after acid extraction. Seventy-two percent of serum IGF-I was associated with large complexes with an estimated size of about 150,000 daltons and 25% was associated with smaller complexes of about 50,000 daltons. No unbound IGF-I was detected. Ultracentrifugation of 10 ml fresh serum was carried out at 106,000 X g for 17 h, after which the tube was aspirated in 1-ml fractions beginning at the top. IGF-I by RIA in fractions 2 and 3 sedimented with albumin; in fractions 4 to 7, the sedimentation pattern approached that of immunoglobulin G. This shift is consistent with the size distribution of IGF-I complexes demonstrated by gel filtration. The failure to find any significant increase in the concentration of IGF-I relative to albumin in the top 30% of the tube (fractions 1-3) after centrifugation argues against the presence of measurable free IGF-I in these fractions. The ability of upper fractions to bind added [125I]IGF-II proved to closely approximate the binding of the initial serum, indicating little sedimentation of the accessible binding protein. The relative binding of [125I]IGF-II by serum aliquots proved to be markedly concentration dependent. At concentrations above 5% serum, the incremental increase of binding as a function of serum concentration was much reduced. We interpret this to indicate that with dilution there is a dissociation of complexes and an increase in accessible binding sites. This phenomenon may modify tissue delivery of somatomedins in interstitial fluid. The data suggest that in undiluted serum there is no significant concentration of free somatomedins but at the dilution of serum that exists in the interstitial fluid, dissociation of bound somatomedins may be facilitated.

Adult

Measurement of insulin-like growth factor II by a specific radioreceptor assay in serum of normal individuals, patients with abnormal growth hormone secretion, and patients with tumor-associated hypoglycemia.

A radioreceptor assay for insulin-like growth factor II (IGF-II) is described in which [125I]IGF-II is bound by rat placental membranes. IGF-I and other insulin-related peptides have less than 1% of the potency of IGF-II in displacing [125I]-IGF-II. IGF-II is extracted from its serum binding protein with a simple acid-ethanol step. After neutralization with Tris base, the extract is introduced directly into the radioreceptor assay. Results are expressed in terms of a reference serum with an assigned potency of 1 U/ml. By this method, serum from normal adults, 20-69 yr of age, had a mean (+/-SE)IGF-II activity of 0.73 +/- 0.03; higher concentrations were noted in adults more than 70 years of age (1.05 +/- 0.05), in cord serum (1.55 +/- 0.24), and in short children with normal GH secretion (0.88 +/- 0.42). In hypopituitary dwarfism, serum IGF-II activity was reduced (0.50 +/- 0.05), but in acromegaly, it was not increased (0.77 +/- 0.06). In 10 of 14 serum samples from patients with tumor-related hypoglycemia, the IGF-II exceeded the normal 95.5% confidence limits. In 8 of these sera, IGF-I by RIA was low, and in 5, it was essentially unmeasurable. These results with a new radioreceptor assay for IGF-II provide additional evidence that the regulation of this serum peptide differs from that of IGF-I.

Acromegaly

The effect of hypophysectomy on rat chorionic somatomammotropin as measured by prolactin and growth hormone radioreceptor assays: possible significance in maintenance of somatomedin generation.

We have previously reported that serum somatomedin concentrations are maintained in pregnant rats after hypophysectomy. Because rat chorionic somatomammotropin (rCS) might replace pituitary GH during pregnancy, the concentration of rCS was measured at intervals after hypophysectomy on day of pregnancy. By day 16 of pregnancy, the serum rCS of hypophysectomized (hypox) rats was actually higher than that of normal pregnant rats when measured by a lactogenic radioreceptor assay. Increased levels of lactogenic radioreceptor activity (L-RRA) were maintained in the serum of hypox rats throughout the remainder of pregnancy. The GH radioreceptor activity (GH-RRA) of serum of hypox pregnant rats was also greater than that of normal rats during the last days of pregnancy, but the activity was only about 1/20th that of the L-RRA with the assays employed. There was no significant difference between placental L-RRA and GH-RRA of normal and hypox pregnant rats. The difference in concentration could not be attributed to differences in the number of fetuses. We conclude that the high levels of rCS were sufficient to maintain serum somatomedin concentration in hypox pregnant rats. This effect of rCS could have been due to binding by GH or PRL receptors of the maternal liver.

Animals

Maintenance of serum somatomedin activity in hypophysectomized pregnant rats.

Pregnant female rats were hypophysectomized on the 14th day of pregnancy without fetal loss or premature delivery. Completeness of hypophysectomy was confirmed by measurements of serum growth hormone and prolactin. Serum somatomedin activities were measured by the hypophysectomized rat costal cartilage in vitro assay using a human serum standard. In this assay somatomedin activity of normal rat serum is about four times that of normal human serum. Forty-eight hours after hypophysectomy serum somatomedin was maintained at 3.9 +/- 1.0 units/ml. At this time after operation somatomedin activity of nonpregnant hypophysectomized rat serum would be virtually undetectable. Somatomedin concentrations were still maintained on the 18th and 20th day of pregnancy. However, within 24 hours after delivery somatomedin had fallen to less than 0.6 units/ml and by three days post delivery were less than 0.2 units/ml. These observations indicate that the fetal-placental unit, probably by secreting a chorionic somatomammotropin, can maintain the concentration of growth hormone-dependent somatomedin in tha absence of the pituitary.

Animals