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1.
Article in English | IMSEAR | ID: sea-159966

ABSTRACT

Summary: Tuberculosis of the gastrointestinal tract (GIT) occurs as a primary lesion or secondary to a focus of tuberculosis elsewhere in the body, most commonly in the lungs. Tuberculosis can affect any part of the GIT from the oesophagus to the anal canal. Two main types are – the tuberculous ulcer and the rarer hypertrophic type which is generally found at the ileocecal junction, less commonly in the colon or rectum. Tuberculosis of bowel distal to ileocecal junction is rare and is seldom considered as a differential diagnosis of rectal stricture (2%).1,6 We report a case of rectal tuberculosis presenting with rectal prolapse and masquerading as malignancy, clinically, radiologically as well as on colonoscopy. The diagnosis was confirmed by repeated histopathological examination. The patient underwent definitive surgery along with anti-tuberculous therapy.


Subject(s)
Antitubercular Agents/administration & dosage , Colectomy/methods , Colonoscopy , Diagnosis, Differential , Dissection , Humans , Middle Aged , Rectal Neoplasms/diagnosis , Rectal Prolapse/etiology , Rectal Prolapse/surgery , Rectum/pathology , Treatment Outcome , Tuberculosis, Gastrointestinal/complications , Tuberculosis, Gastrointestinal/diagnosis , Tuberculosis, Gastrointestinal/physiopathology , Tuberculosis, Gastrointestinal/therapy
2.
Asian Pacific Journal of Tropical Biomedicine ; (12): 156-162, 2013.
Article in Chinese | WPRIM | ID: wpr-672584

ABSTRACT

Many active secretions produced by animals have been employed in the development of new drugs to treat diseases such as hypertension and cancer. Snake venom toxins contributed significantly to the treatment of many medical conditions. There are many published studies describing and elucidating the anti-cancer potential of snake venom. Cancer therapy is one of the main areas for the use of protein peptides and enzymes originating from animals of different species. Some of these proteins or peptides and enzymes from snake venom when isolated and evaluated may bind specifically to cancer cell membranes, affecting the migration and proliferation of these cells. Some of substances found in the snake venom present a great potential as anti-tumor agent. In this review, we presented the main results of recent years of research involving the active compounds of snake venom that have anticancer activity.

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