Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0024530 (malaria)
44,886 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Subfecundity is caused by disease and nutrition as well as by genetic, environmental, and psychological components. Sexually transmitted diseases (STDs) are caused by 21 different pathogens of which syphilis, gonorrhea, and chlamydia are the most important. Syphilis is caused by the bacterium Treponema pallidum with incidence of 10% in Thailand. 20% in Papua New Guinea, and 40% in Ethiopia. Stillbirths in infected mothers range from 66% to 80%. Gonorrhea is caused by the bacterium Neisseria gonorrhoea and its incidence was 18% in female patients in Ugandan clinic. 20% of women in Africa with cervical gonorrhea develop salpingitis. The risk of pelvic inflammatory disease is several times higher in IUD users. The bacterium Chlamydia trachomatis caused infertility in 15.4% of men in a 1991 study. Herpes simplex virus 2 infects 15-30% of sexually active adults, and the chance of fetal transmission is 40% when maternal lesions are present. Diseases other than STDs include tuberculosis (TB) whose development is aided by conditions such as malnutrition, malaria, leprosy, syphilis, and African sleeping sickness. Genital TB causes a 5-50% rate of menstrual disorders including amenorrhea and a 55-85% rate of sterility in women. Malaria is caused by Plasmodium protozoa, and the feverish state included by it can lead to oligospermia. Severe malarial anemia can lead to fetal and maternal mortality. The protozoa Trypanosoma causes African sleeping sickness that produces azoospermia and impairs the pituitary gland and ovaries. Schistosomiasis (bilharzia) and filariasis have less direct effect on fecundity but they negatively impact nutritional status. Maternal nutrition substantially impacts fetal and infant survival. During the Dutch famine of 1944-45 there was a 50% decrease in births 9 months subsequently. A 10-15% weight loss results in amenorrhea.
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PMID:Endemic disease, nutrition and fertility in developing countries. 163 64

A 33-year-old male of proven fertility suffered six attacks of malaria while resident in an African country. For this he received anti-malarial drugs. Semen analysis performed after the fourth attack, and repeated during the following 2 years after his return to Israel, revealed severe oligozoospermia, necrozoospermia and occasionally even azoospermia. Immunological examination of the patient revealed an inverse ratio of T-cell subsets and mast cell degranulation in response to palludrin. Twenty-five months after the last attack of malaria a significant improvement was found in semen quality and there was an increase in the ratio of T-helper to T-suppressor cytotoxic cells. These observations indicate that although malaria and its treatment may affect spermatogenesis, recovery may be expected eventually.
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PMID:Decreased semen quality in a male infected with malaria. 350 Sep 21