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Biomedical subjects

S J Desai

Publications and source records attributed to S J Desai.

5 recordsLinked to original sources

Expression of enhancing factor gene and its localization in mouse tissues.

Enhancing factor (EF), a 14 kDa protein, isolated from mouse small intestines, has been reported from this laboratory. Based on our earlier studies EF has been implicated in cell proliferation. Preliminary immunohistochemical studies have shown EF to be localized in the Paneth cells of small intestines. In this paper we report the tissue distribution of EF using conditions optimized for immunohistochemical staining. In addition, the data are supported by northern blot analysis using a nick translated cDNA probe specific for EF. The results indicate that EF gene is actively transcribed mainly in the intestines. The chief source of synthesis of EF appears to be the Paneth cells located at the base of the crypts of Lieberkühn.

Animals

Ontogeny of enhancing factor in mouse intestines and skin.

Enhancing Factor (EF) is a 14 kDa protein isolated from mouse small intestines, which enhances the binding of 125I-EGF to A431 cells. This observation as well as our earlier in vitro studies have indicated that EF is a modulator of EGF. In adult mice, localization of EF by immunohistochemistry shows it is present predominantly in the Paneth cells of the small intestines and to a lesser extent in the stomach and colon. This study of the ontogeny of EF shows that the appearance of the protein coincides with the appearance of mature Paneth cells. In new born mouse skin EF is localized in the hair follicles in the first hair cycle from day 2 to day 8. It is however absent in the adult skin. Thus EF is associated with tissues which have a high growth rate.

Animals

Management of Ontario children with acute lymphoblastic leukemia by the Dana-Farber Cancer Institute protocols.

There is ample evidence of the value of intensive therapeutic strategies in the management of acute lymphoblastic leukemia (ALL), the commonest form of malignant disease in children. Such a program, devised at the Dana-Farber Cancer Institute (DFCI), Boston, and incorporating high-dose L-asparaginase, was adopted in 1984 by the Children's Hospital at Chedoke-McMaster, Hamilton, Ont., and the Children's Hospital of Western Ontario, London. We describe the experience of these institutions in the treatment of 82 children with ALL, 19 of whom were switched to the DFCI protocols while in continuing first remission with other treatment programs to complete a minimum of 2 years of maintenance therapy; the remaining 63 children, who had recently diagnosed disease, were consecutively enrolled in the DFCI protocols. Each child was assigned at diagnosis to a category of risk for relapse and treated accordingly. There were no remission induction failures or deaths due to induction therapy among the patients with newly diagnosed disease. There were no differences in total or event-free survival rates between the patients in Hamilton and those in London or between those whose protocols were switched and those who were treated from the beginning with the DFCI protocols. With a median follow-up interval of 144 weeks the total survival rate was 95% and the event-free survival rate 88%. For patients at standard risk of relapse the event-free survival rate was 100%, for those at high risk the rate was 82%, and for those at very high risk the rate was 67%. If infants (all of whom suffered a relapse) are excluded from the last category the rate was 89%. These results were achieved with moderate toxic effects (except for two deaths, one of which was due to a therapeutic misadventure) and suggest that the prospect for cure in children with ALL. may now approximate 80%, a degree of success that demands that consideration be given to reducing total therapy, at least for children with standard-risk disease. Further follow-up will determine whether these high event-free survival rates will stabilize and meet the criteria for cure.

Antineoplastic Combined Chemotherapy Protocols

Diffuse panbronchiolitis preceding ulcerative colitis.

To expand the clinical spectrum of ulcerative colitis-associated lung disease, we describe a patient with panbronchiolitis associated with ulcerative colitis. In addition to his having a distinctive pulmonary manifestation of this bowel disease, other noteworthy aspects of this patient's course include the onset of pulmonary symptoms several years prior to bowel manifestations and the partial resolution of his pulmonary symptoms following colectomy.

Adult

Survival experience following Nd:YAG laser photoresection for primary bronchogenic carcinoma.

We followed the course of 47 consecutive patients with inoperable primary bronchogenic carcinoma who underwent palliative neodymium-yttrium-aluminum-garnet laser photoresection (YPR) between September 1983 and September 1986. Of these 47, 35 (74.5 percent) underwent both radiation therapy (XRT) and YPR. The survival of these 35 patients (median survival, 304 days) was compared with that of 58 who underwent only palliative palliative XRT (median survival, 253 days) from 1981 to 1983, when YPR was not yet available at our institution. There was no significant difference in overall survival (p = 0.17). A significant increase in survival (p = 0.04) was seen in 15 patients who underwent emergency palliative YPR as the initial therapeutic intervention compared with 11 patients who received emergency palliative XRT but would have received YPR had it been available at that time. A trend toward increased survival was also shown in patients who underwent endobronchial radiation therapy in addition to YPR and XRT.

Carcinoma, Bronchogenic