Search PubMed⌕ Search

Biomedical subjects

L J Crofford

Publications and source records attributed to L J Crofford.

76 records · Page 5Linked to original sources

Environmental pathology. Mast cell and eosinophil infiltration in intestinal mucosa of Lewis rats treated with L-tryptophan implicated in human eosinophilia myalgia syndrome.

A recently developed animal model for the L-tryptophan-associated eosinophilia myalgia syndrome was used to examine the small intestine and colon, because there is clinical involvement at these sites in patients. Increased perivascular inflammatory infiltrates rich in degranulating mast cells, eosinophils, and monocytes were seen in the lamina propria of experimental animals when compared with controls. L-Tryptophan-associated disease also shares many clinical features with idiopathic scleroderma/eosinophilic fasciitis, in which there is gastrointestinal involvement as well. These features are similar to those found in the recently described animal model. The apparent morphologic and clinical similarities between these entities suggest that the animal model is suitable for further studying the pathogenesis of the gastrointestinal involvement in all these diseases.

Animals↗

Failure of surgery and isotretinoin to relieve jaw immobilization in fibrodysplasia ossificans progressiva: report of two cases.

Two patients with fibrodysplasia ossificans progressiva who presented with jaw immobilization due to formation of bone between the maxilla and mandible were treated with surgical resection of their ectopic bone in conjunction with experimental, adjunctive medical therapy using isotretinoin. Both patients had recurrence of their ectopic ossification within 2 months of surgery. Surgery to remove joint-bridging ossifications in FOP is not recommended.

Adolescent↗

L-tryptophan implicated in human eosinophilia-myalgia syndrome causes fasciitis and perimyositis in the Lewis rat.

Tryptophan-associated eosinophilia-myalgia syndrome (L-TRP-EMS) is a newly described syndrome which occurred in epidemic fashion in the United States in the summer and fall of 1989. Epidemiologic data has linked the syndrome to intake of L-tryptophan (L-TRP) from one specific manufacturer, but the precise etiologic compound(s) must be established by replication of the syndrome in an appropriate animal model. In this study, implicated L-TRP, United States Pharmacopeia (USP) grade L-TRP, or vehicle was administered by gavage in a blinded fashion for 38 d to female Lewis rats at doses comparable with those ingested by patients who developed the eosinophilia-myalgia syndrome. Animals receiving implicated L-TRP, but not those receiving USP grade L-TRP or vehicle, developed histologic signs consistent with fasciitis and perimyositis, specific pathologic features of human L-TRP-EMS. Peripheral blood eosinophilia was not observed. Hypothalamic corticotropin releasing hormone mRNA levels were lower and plasma corticosterone levels tended to be lower in the animals that received implicated L-TRP. Plasma L-kynurenine was higher in both L-TRP-treated groups compared to the vehicle-treated animals. The female Lewis rat is known to be susceptible to a wide variety of inflammatory diseases. Identification of specific inflammatory changes in this rat following exposure to implicated L-TRP indicates that this animal model will be important in subsequent investigations into the etiology, pathogenesis, and treatment of human L-TRP-EMS.

Animals↗

Reevaluation of the role of the polar groups of collagen in the platelet-collagen interaction.

Chemical modification of collagen is a tool for exploring the platelet-collagen interaction. Since collagen must polymerize prior to the initiation of platelet aggregation and secretion, modification must be shown to affect platelet-collagen interaction and not collagen-collagen interaction. To address this point, the authors carried out the following chemical modifications on soluble monomeric collagen and preformed fibrillar collagen in parallel: 1) N-and O-acetylation, 2) esterification of the carboxyl groups, 3) succinylation of the free amino groups, 4) esterification of succinylated collagen. Intrinsic viscosity studies of the modified soluble collagens were consistent with normal triple helix conformation. Electron microscopy revealed all modified fibrillar collagen to maintain a fibrillar structure. Platelet aggregation and secretion of 14C-serotonin and platelet factor 4 by soluble and fibrillar collagen, respectively, were studied in human platelet-rich plasma. Neutralization of polar groups by 1) totally abolished aggregation and secretion by both collagens, while blocking acidic groups 2) resulted in enhanced aggregation and secretion by both soluble and fibrillar collagen. Blockage of amino groups by 3) abolished aggregation and secretion by both collagens. Esterified succinylated collagen 4) caused aggregation and secretion at relatively high collagen concentrations. These data support the theory that positive groups of collagen are important in platelet-collagen interaction.

Acetylation↗