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L Krishna

Publications and source records attributed to L Krishna.

24 records · Page 2Linked to original sources

Toxicity of lantana (Lantana camera L) leaves and isolated toxins to rabbits.

Oral administration of lantana leaves (6 g/kg body weight) and isolated toxins (125 mg/kg body weight) to rabbits caused ictericity, anorexia and decrease in fecal output. There was increased size of the kidneys, and the livers were ochre-colored and fragile but there was no hepatomegaly. Histopathologically, lantana-intoxicated rabbits had swellings of hepatic cells, portal fibrosis, dilatation of bile canaliculi and biliary hyperplasia. Kidneys had proliferation of mesenchymal cells in glomerular tufts, degeneration of tubules, swelling of tubular epithelial cells and pyknosis of nuclei. The intoxicated animals had elevated levels of conjugated and unconjugated bilirubin in plasma, the major increase being in the conjugated form (suggestive of obstructive jaundice). There were marginal changes in the activities of acid phosphatase and glutamate oxaloacetate transaminase in the plasma.

Animals↗

A cytomorphological scheme of differentiating neuronal phenotypes in cerebellar medulloblastomas based on immunolocalization of class III beta-tubulin isotype (beta III) and proliferating cell nuclear antigen (PCNA)/cyclin.

This immunohistochemical study compares the localization of the neuronal class III beta-tubulin isotype (beta III) to that of the proliferating cell nuclear antigen (PCNA)/cyclin in 46 cerebellar neuroblastic tumors (medulloblastomas). Both class III beta-tubulin (beta III) and PCNA/cyclin reactivities were present in all tumors, but the topographic distribution and cytomorphologic features of stained cells varied considerably between classic and desmoplastic medulloblastomas. Four neoplastic phenotypes, representing gradations of neuronal differentiation, were identified: [Allegranza 1991] apolar, blast-like PCNA/cyclin(+) cells devoid of beta III reactivity (Nb1); [Bravo et al. 1987] apolar, often binucleated and/or fusiform, PCNA/cyclin (+) cells with pronounced beta III staining in their protoperikarya and their growth cones (Nb2); [Burger et al. 1987] beta III-immunoreactive immature polar neurons with varying degrees of neuritic development, reading to significant neuritogenesis in the "pale islands" of desmoplastic medulloblastomas (Nb3). The majority of Nb3 phenotypes were PCNA/cyclin (-), although subpopulations of such polar tumor cells exhibiting PCNA staining were also identified; and [Burger et al. 1991] beta III-immunoreactive, PCNA/cyclin (-) mature ganglion-like cells (Nb4). A high PCNA/cyclin labeling index (> 80%) was obtained in 20 poorly differentiated classic medulloblastomas while, significant intratumoral staining heterogeneity was observed in 23 cases of desmoplastic medulloblastomas and 3 cases of "medulloblastomas with ganglion cells": A high labeling index (LI)(> 80%) in the reticulin-impregnated poorly differentiated areas of tumor contrasted with sharp decline of PCNA staining and a very low LI (< 10%) in areas of overt neoplastic neuritogenesis ("pale islands") displaying strong beta III reactivity. Neoplastic ganglion cells were beta III (+)/PCNA (-). Our findings indicate that the majority of differentiating neuronal phenotypes undergoing cytomorphological changes of neuritic development (Nb3), and all neoplastic ganglion cells (Nb4 phenotypes) are PCNA (-), in contrast to actively proliferating, poorly differentiated, tumor cells that are PCNA (+). Although PCNA staining corresponded in part, to beta III (-) blast-like elements (Nb1), a co-expressive pattern of staining for beta III and PCNA/cyclin also was observed in subpopulations of poorly differentiated tumor cells (Nb2), indicating that transformed neuroblasts are capable of expressing differentiation-associated neuronal cytoskeletal proteins while still remaining in the proliferative compartment of the cell cycle. Our observations suggest that only neuritogenesis and acquisition of ganglionic phenotype are significant maturational events in medulloblastomas (indicating entry into the quiescent phase of the cell cycle) and provide further support for the neuronal lineage and differentiation potential of these cerebellar embryonal tumors.

Adolescent↗

Lobar pilocytic astrocytomas of the cerebral hemispheres: I. Diagnosis and nosology.

This study provides neuropathological and neuroradiological observations on 11 cases of lobar pilocytic astrocytomas of the cerebral hemispheres, reappraising potential diagnostic caveats. These tumors may show variable degrees of contrast enhancement on computed tomography, as well as gadolinium uptake on magnetic resonance imaging, making them indistinguishable from malignant gliomas. Histopathologically, although typically pilocytic, they may exhibit areas of increased cellular density with protoplasmic and multinucleated glial elements (pilo-protoplasmic astrocytoma). The presence and particularly the abundance of distinct gliodegenerative structures, i.e. eosinophilic granular bodies (EGBs) and to a lesser degree Rosenthal fibers, in conjunction with collateral clinical, histologic and imaging parameters may facilitate oncotypic diagnosis. Mixed pilocytic and fibrillary astrocytomas are recognized, while malignant change may also rarely occur in longstanding lobar pilocytic astrocytomas.

Adolescent↗

Lobar pilocytic astrocytomas of the cerebral hemispheres: II. Pathobiology--morphogenesis of the eosinophilic granular bodies.

This study provides new immunocytochemical observations on the so-called eosinophilic granular bodies (EGBs), seen predominantly (but not exclusively) in pilocytic astrocytomas. Using combined immunohistochemical and immunoelectron microscopic approaches on formalin-fixed, paraffin-embedded tissues, we have demonstrated that (1) EGBs exhibit pronounced reactivity with antibodies to serine protease inhibitors alpha-1-antichymotrypsin and alpha-1-antitrypsin; by immunoelectron microscopy, the reaction product is localized either in the form of diffuse floccular densities, or larger conglomerates of amorphous, globular material; (2) an antiserum to ubiquitin-protein conjugates, codistributes in the EGBs at the light microscopic level, while ultrastructurally is either localized in diffuse, finely granular deposits, and/or fragmented filamentous particles; and (3) that a monoclonal antibody to beta-amyloid precursor protein (beta-APP) stains smaller EGBs. The detection of serpin-like and beta-APP-like staining in EGBs may be a reflection of acute phase reactant activity in response to tumor-produced proteases. We postulate that EGBs contain complexes of serpins and hitherto unknown protease(s), which are in turn probably degraded via ubiquitin mediated mechanism(s). Although EGBs typify pilocytic astrocytomas, they may be exceptionally present in malignant astrocytomas, calling for cautious interpretation of their biologic as well as prognostic import.

Adolescent↗