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Biomedical subjects

W S Russell

Publications and source records attributed to W S Russell.

7 recordsLinked to original sources

Nippostrongylus brasiliensis: infection induces upregulation of acetylcholinesterase activity on rat intestinal epithelial cells.

Expression of cholines terases and muscarinic acetylcholine receptors in the jejunal mucosa has been investigated during infection of rats with the nematode parasite Nippostrongylus brasiliensis. Selective expression of m3 receptors was observed on epithelial cells from uninfected rats and animals 7 days postinfection, and saturation binding with [(3)H]quinuclidinyl benzilate indicated that receptor expression on cell membranes was unaltered by infection. Butyrylcholinesterase was highly expressed in mucosal epithelia, but acetylcholinesterase was present at low levels in uninfected animals. In contrast, discrete foci of intense acetylcholinesterase activity were observed on the basement membrane of intestinal epithelial cells in animals infected with N. brasiliensis. This was demonstrated to be due to upregulation of expression of endogenous enzyme, which peaked at Day 10 postinfection and subsequently declined to preinfection levels. It is suggested that this occurs in response to hyper-activation of the enteric nervous system as a result of infection, and may benefit the host by limiting excessive fluid secretion due to cholinergic stimulation.

Acetylcholinesterase↗

Natural language storage and retrieval of medical diagnostic information. Experience at the UCLA hospital and clinics over a 10-year period.

A natural language storage and retrieval system initially designed for pathology reports has been in operation for ten years at UCLA Hospital and Clinics. The original system has been improved to provide a thesaurus processor with added capabilities for expanding search request terms and a newly developed set of search programs with user options that make complex and more accurate retrievals possible. Summarized diagnostic statements or impressions from five specialities (Surgical Pathology, Bone Marrow, Autopsy, Nuclear Medicine, and Neuroradiology), are automatically encoded by referencing a master computer dictionary containing a unique numeric code for each English word. Input and retrievals are batch, off-line operations in free text, and are currently processed on the IBM 370/145. User acceptance is high, quality of retrievals improved, and cost is nominal. This paper describes an expanded natural language system which in now providing a viable form of information storage and retrieval for research, medical education, patient care, quality control, statistics and administrative purposes.

California↗