Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0032285 (pneumonia)
54,520 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Children with HIV infection have an unusual susceptibility to bacterial infection, related to several immune abnormalities. Selection of initial antibiotic therapy must be individualized in these children. Patients with community-acquired disease are most likely to have infection by polysaccharide-encapsulated bacterial organism, most commonly Streptococcus pneumoniae and less frequently by Haemophilus influenzae type b. If it is possible to treat the patients at home, the use of amoxicillin-clavulanic acid might be appropriate. Other authors propose management with parenteral ceftriaxone because of the better compliance and the malabsorption. In hospitalized patients, concern for Gram-negative enteric pathogens other than polysaccharide-encapsulated organisms requires initial therapy with a third-generation cephalosporine in combination with an aminoglycoside. Trimethoprim-sulfamethizole is the most common drug used in HIV-infected children because it is recommended for the initial therapy and for prophylaxis of pneumocystis carinii pneumonia, which occurs in as many as 42% of these children.
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PMID:The use of antibiotics in the treatment and prevention of infection in HIV-infected children. 783 66

A 53-year-old man was hospitalized for the development of watery diarrhea associated with decreased appetite and progressive weight loss and was found to have leukocytosis. The white blood cell count was 14,600/microliters with 66 percent abnormal lymphocytes. Serum anti-HTLV-I was positive and monoclonal insertion of HTLV-I provirus into the atypical cell genome was confirmed with the southern blotting hybridization technique. A diagnosis of ATL was made. Examination of fresh stool specimens revealed Isospora belli (I. belli) oocysts. Initial treatment for I. belli consisted of oral trimethoprim 160mg and sulfamethoxazole 400mg given twice daily for nine days. Diarrhea ceased within 2 days of the start of treatment, but I. belli oocysts were again detected after 20 days. Trimethoprim 160mg and sulfamethoxazole 400mg were reinstituted four times daily for 10 days, and then twice daily for 21 days. The clinical response was again dramatic, with rapid clearance of oocysts from the stool. There has been no recurrence of diarrhea. The patient's leukemia was refractory to chemotherapy; the white blood cell count continued to rise, pneumonia developed, and the patient died. I. belli is a previously unrecognized opportunistic pathogen that must be considered in the clinical setting of chronic diarrhea in patients with ATL.
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PMID:[Isospora belli infection in a patient with adult T cell leukemia]. 834 63

A case is reported of a 96-year-old woman with congestive heart failure, hypertension, and chronic obstructive pulmonary disease who presented with altered mental status and severe hyperkalemia, a serum potassium 9.3 meq/L, and electrocardiograph changes. The patient was discharged 1 week prior, with a normal serum potassium, receiving trimethoprim-sulfamethoxazole for urinary tract infection and pneumonia. Serum potassium measurements returned to normal after discontinuation of the drug. Other causes of hyperkalemia were ruled out. Mild hyperkalemia due to trimethoprim-sulfamethoxazole was first reported in 1983 in a 69-year-old woman in whom leukemia with leukopenia developed. In literature to date, mild hyperkalemia in younger geriatric patients has been described. Trimethoprim is thought to act by inhibiting amiloride sensitive sodium channels in the distal nephron and impairing renal potassium secretion in a dose dependent manner. The authors report the case, review the literature, and discuss age-related reduction in renal function as a possible etiology.
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PMID:Case report: severe hyperkalemia in a geriatric patient receiving standard doses of trimethoprim-sulfamethoxazole. 861 80

Trimethoprim was specifically developed in the late 1960s as a sulphonamide potentiator and was launched in combination with sulfamethoxazole as cotrimoxazole. Laboratory data showed synergy of antimicrobial action for the combination and suggested that the use of both agents would delay the emergence of resistance. However, the tissue distribution of trimethoprim and sulfamethoxazole does not favour synergy, and resistance among common pathogens to sulfamethoxazole is high. Clinical studies comparing trimethoprim alone with cotrimoxazole for the treatment of respiratory tract and urinary tract infections have failed to show any benefit from the combination. The development of delayed resistance by use of the combination has not been substantiated. The common adverse effects seen with cotrimoxazole are gastrointestinal disturbances and skin rashes which are well described adverse effects of sulphonamides. Comparative studies suggest that these are less common with trimethoprim alone. Serious adverse effects such as liver disorders and Stevens-Johnson syndrome appear more common with cotrimoxazole. Where there is little evidence for benefit from the use of the combination, the exposure of patients to the additional risk from the adverse effects and drug interactions of 2 drugs cannot be justified. Therefore use of cotrimoxazole should be restricted to those situations such as Pneumocystis carnii pneumonia where the combination has been shown to be beneficial.
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PMID:Cotrimoxazole. Rationale for re-examining its indications for use. 871 89

A 54-year-old man was admitted to the hospital because of fever and general fatigue. A chest roentgenogram on admission showed lobular opacities and ill-defined opacities in both lower lobes. The pneumonia was successfully treated with antibiotics. The acquired immunodeficiency syndrome was diagnosed because ELISA and PCR tests for antibodies to the human immunodeficiency virus were positive and the CD 4+ lymphocyte count was 39 per cubic millimeter. Examination of bronchoalveolar lavage fluid revealed no Pneumocystis carinii. Trimethoprim and sulfamethoxazole were given prophylactically, but were withdrawn because of a rash. The patient began to receive aerosolized pentamindine and was discharged. On the next day, he was readmitted to the hospital because of a high fever. A chest roentgenogram showed diffuse miliary opacities. Chest CT scan also showed diffuse small nodular opacities in both lungs. Examination of a transbronchial biopsy specimen revealed well-defined, noncaseating granulomas with pneumocystis organisms in their centers. Cultures for tuberculosis and fungi were all negative. We diagnosed granulomatous pneumonia caused by Pneumocystis carinii, which is an atypical manifestation of Pneumocystis carinii pneumonia. The patient died of sepsis and cardiac tamponade. Microscopically, the lung tissue was found to have foamy intra-alveolar exdates, which is a typical histological feature of Pneumocystis carinii pneumonia.
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PMID:[Pneumonia caused by granulomatous Pneumocystis carinii in a patient with the acquired immunodeficiency syndrome]. 984 88

Pneumocystis carinii pneumonitis (PCP) is one of the most important opportunistic infections in children and adolescents with cancer. Its high frequency and a considerable mortality have led to primary chemoprophylaxis in patients with hematological malignancies and following allogeneic hematopoietic stem cell transplantation. Although less well characterized, patients with autologous stem cell transplantation and patients with dose-intensive chemotherapy for pediatric solid tumors may have a similarly high risk for PCP based on their profound T-cell depletion. For more than two decades, effective chemoprophylaxis for PCP has been available. Trimethoprim and sulfamethoxazole (TMP/SMX) is the prophylactic modality of first choice. The combination has been shown to be almost 100 % efficacious in pediatric cancer patients at highest risk, and it is usually well tolerated in this setting. Secondary alternatives to TMP/SMX include oral dapsone, oral atovaquone, and aerosolized pentamidine-isethionate. These modalities are less effective than TMP/SMX, and have been evaluated predominantly in HIV-infected patients. This article reviews epidemiology and current approaches to chemoprophylaxis for PCP in children and adolescents with cancer and/or hematopoietic stem cell transplantation, and provides evidence-based guidelines for indications and modalities of PCP prophylaxis in this population.
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PMID:[Guidelines for Prevention of Pneumocystis carinii Pneumonitis in Children and Adolescents with Cancer]. 1157 63

Infection with Burkholderia mallei (formerly Pseudomonas mallei) can cause a subcutaneous infection known as "farcy" or can disseminate to condition known as Glanders. It is primarily a disease affecting horses, donkeys and mules. In humans, Glanders can produce four types of disease: localized form, pulmonary form, septicemia, and chronic form. Necrosis of the tracheobronchial tree and pustular skin lesions characterize acute infection with B. mallei. Other symptoms include febrile pneumonia, if the organism was inhaled, or signs of sepsis and multiple abscesses, if the skin was the port of entry. Glanders is endemic in Africa, Asia, the Middle East, and Central and South America. Glanders has low contiguous potential, but because of the efficacy of aerosolized dissemination and the lethal nature of the disease, B. mallei was considered a candidate for biological warfare. During World War I, Glanders was believed to have been spread to infect large numbers of Russian horses and mules on the Eastern front. The Japanese infected horses, civilians and prisoners of war during World War II. The USA and the Soviet Union have shown interest in B. mallei in their biological warfare program. The treatment is empiric and includes mono or poly-therapy with Ceftazidime, Sulfadiazine, Trimethoprim + Sulfamethoxazol, Gentamicin, Imipenem etc. Aggressive control measures essentially eliminated Glanders from the west. However, with the resurgent concern about biological warfare, B. mallei is now being studied in a few laboratories worldwide. This review provides an overview of the disease and presents the only case reported in the western world since 1949.
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PMID:[Glanders--a potential disease for biological warfare in humans and animals]. 1217 May 62

The incidence of lower respiratory tract infection (LRTI) in women of child-bearing age is approximately 64 per 1000 population. The spectrum of illness ranges from acute bronchitis, which is very common, through influenza virus infection and exacerbations of underlying lung disease, to pneumonia, which, fortunately is uncommon (<1.5% LRTI), but can be severe. Acute bronchitis is generally mild, self-limiting and usually does not require antibacterial therapy. Influenza virus infection in pregnant women has been recently related to increased hospitalization for acute cardiorespiratory conditions. At present, the safety of the newer neuraminidase inhibitors for the treatment of influenza virus infection has not been established in pregnancy and they are not routinely recommended. In influenza virus infection complicated by pneumonia, antibacterial agents active against Staphylococcus aureus and Streptococcus pneumoniae superinfection should be used. There are few data on infective complications of asthma or COPD in pregnancy. The latter is rare, as patients with COPD are usually male and aged over 45 years. Management is the same as for nonpregnant patients. The incidence and mortality of pneumonia in pregnancy is similar to that in nonpregnant patients. Infants born to pregnant patients with pneumonia have been found to be born earlier and weigh less than controls. Risk factors for the development of pneumonia include anemia, asthma and use of antepartum corticosteroids and tocolytic agents. Based on the few available studies, the main pathogens causing pneumonia are S. pneumoniae, Haemophilus influenzae, Mycoplasma pneumoniae and viruses. Beta-Lactam and macrolide antibiotics therefore remain the antibiotics of choice in terms of both pathogen coverage and safety in pregnancy. In HIV-infected pregnant patients, recurrent bacterial pneumonia, but not Pneumocystis carinii pneumonia (PCP), is more common than in nonpregnant patients. Trimethoprim/sulfamethoxazole (cotrimoxazole) has not definitely been associated with adverse clinical outcomes despite theoretical risks. Currently it is still the treatment of choice in PCP, where mortality remains high. In conclusion, there are few data specifically related to pregnant women with different types of LRTI. Where data are available, no significant differences compared with nonpregnant patients have been identified. In considering the use of any therapeutic agent or investigation in pregnant patients with LRTI, safety aspects must be carefully weighed against potential benefit. Otherwise, management strategies should not differ from those for nonpregnant patients. Further research in this area is warranted.
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PMID:Treatment of community-acquired lower respiratory tract infections during pregnancy. 1472 4

Trimethoprim is an anti-infective agent used in the treatment of urinary and respiratory tract infections and mild to moderate pneumocystis carinii pneumonia. Trimethoprim is also a selective in vitro inhibitor of cytochrome P450 2C8 and may have utility as an in vivo inhibitor of this enzyme. A simplified high performance liquid chromatography (HPLC) method was developed to determine trimethoprim in human plasma. Samples are processed by protein precipitation with perchloric acid and chromatographic separation is achieved on a Synergi Polar-RP column (4 micron, 150 mm x 4.6 mm) using a mobile phase consisting of 50 mM ammonium formate-acetonitrile-methanol (pH=3.0; 90:6:4 (v/v/v)). Detection is monitored at 280 nm. Intra- and inter-day precision ranged from 1.1 to 1.9 and 0.9 to 4.1%, respectively. The assay is simple, economical, precise, and is directly applicable to human studies involving steady state trimethoprim pharmacokinetics.
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PMID:Determination of trimethoprim in low-volume human plasma by liquid chromatography. 1520 44

Pneumocystis jiroveci (P. carinii) is an opportunistic pathogen that has gained particular prominence since the onset of the AIDS epidemic. Among several important advances in diagnosis and management, appropriately targeting chemoprophylaxis to HIV-infected patients at high clinical risk for P. jiroveci pneumonia and the introduction of effective combination anti-retroviral therapy (including highly active antiretroviral therapy [HAART]) have contributed to the reduced incidence of P. jiroveci pneumonia. Despite the success of these clinical interventions, P. jiroveci pneumonia remains the most common opportunistic pneumonia and the most common life-threatening infectious complication in HIV-infected patients. Trimethoprim/sulfamethoxazole (cotrimoxazole) remains the first-line agent for effective therapy and chemoprophylaxis, and corticosteroids represent an important adjunctive agent in the treatment of moderate-to-severe P. jiroveci pneumonia. However, problems of chemoprophylaxis and treatment failures, high rates of adverse drug reactions and drug intolerance to first-line antimicrobials, high rates of relapse or recurrence with second-line agents, and newer concerns about the development of P. jiroveci drug resistance represent formidable challenges to the management and treatment of AIDS-related P. jiroveci pneumonia. With the expanding global problem of HIV infection, the intolerance or unavailability of HAART to many individuals and limited access to healthcare for HIV-infected patients, P. jiroveci pneumonia will remain a major worldwide problem in the HIV-infected population. New drugs under development as anti-Pneumocystis agents such as echinocandins and pneumocandins, which inhibit beta-glucan synthesis, or sordarins, which inhibit fungal protein synthesis, show promise as effective agents. Continued basic research into the biology and genetics of P. jiroveci and host defense response to P. jiroveci will allow the development of newer antimicrobials and immunomodulatory therapeutic agents to more effectively treat life-threatening pneumonia caused by this organism.
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PMID:Pneumocystis jiroveci pneumonia in adult patients with AIDS: treatment strategies and emerging challenges to antimicrobial therapy. 1565 84


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