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Biomedical subjects

Rakesh Lodha

Publications and source records attributed to Rakesh Lodha.

7 recordsLinked to original sources

Etiology of acute lower respiratory tract infection.

OBJECTIVE: To identify pathogens responsible for acute severe lower respiratory tract infection (ALRTI) in under five children by non-invasive methods. METHOD: 95 children hospitalized with acute severe lower respiratory tract infection were investigated for identification of viruses, bacteria, chlamydia or mycoplasma by nasopharyngeal aspirates, blood culture and serology. RESULT: Etiological agents could be identified in 94% of the patients. Viruses from NP aspirate could be isolated in 36 (38%), bacterial isolates from blood cultures in 15 (16%); mycoplasma was identified in 23 (24%) and chlamydia in 10 (11%) by serological tests; mixed infections were present in 8 (8%) patients. CONCLUSION: Noninvasive methods can be useful in identifying etiological agents in severe ALRTI.

Child, Preschool↗

Long-term management of asthma.

Long-term management of asthma includes identification and avoidance of precipitating factors of asthma, pharmacotherapy and home management plan. Common precipitating factors include viral upper respiratory infections, exposure to smoke, dust, cold food and cold air. Avoidance of common precipitating factors has been shown to help in better control of asthma. Pharmacotherapy is the main stay of treatment of asthma. Commonly used drugs for better control of asthma are long and short acting bronchodilators, mast cell stabilizers, inhaled steroids, theophylline and steroid sparing agents. After assessment of severity most appropriate medications are selected. For mild episodic asthma the medications are short acting beta agonists as and when required. For mild persistent asthma: as and when required bronchodilators along with a daily maintenance treatment in form of low dose inhaled steroids or cromolyn or oral theophylline or leukotriene antagonists are required. Moderate persistent asthma should be treated with inhaled steroids along with long acting beta agonists for symptom control. For severe persistent asthma the recommended treatment includes inhaled steroids, long acting beta agonists with or without theophylline. If symptoms are not well controlled, a minimal dose of oral prednisolone preferably on alternate days may be needed in few patients. Patients should be followed up every 8-12 weeks. On each follow up visit patients should be examined by a doctor, compliance to medications should be checked and actual inhalation technique is observed. Depending on the assessment, medications may be decreased or stepped up. For exercise induced bronchoconstriction: cromolyn, short or long acting beta agonists or leukotriene antagonists may be used. In children with seasonal asthma, maintenance treatment according to assessed severity should be started 2 weeks in advance and continued throughout the season. These patients should be reassessed after discontinuing the treatment. Parents should be given a written plan for management of acute exacerbation at home.

Administration, Inhalation↗

Cefprozil: a review.

Cefprozil is a novel third generation, broad-spectrum oral cephalosporin with activity against a spectrum of aerobic gram-negative and positive bacteria, as well as certain anaerobes. The beta-lactamase stability of cefprozil may exceed that of other oral cephalosporins for some important pathogens. Cefprozil may be a suitable alternative to several other commonly used beta-lactams and cephalosporins in the treatment of mild to moderate upper and lower respiratory tract infections including sinusitis, otitis media, pharyngitis/tonsillitis, secondary bacterial infection of acute bronchitis, and acute bacterial exacerbations of chronic bronchitis, and skin and skin structure infections in children. Available data indicate the safety of cefprozil in both pediatric and adult population.

Bronchitis↗

Severe acute respiratory syndrome (SARS).

Several cases of life threatening respiratory disease with no identifiable cause were reported from Guangdong Province, China; these were soon followed by reports from many other countries. The disease was named as severe acute respiratory syndrome (SARS). A novel coronavirus, isolated from the respiratory secretions of patients, has been implicated in the causation of SARS. The modes of transmission include droplet spread, close contact, and Fomites; shedding of virus from respiratory tract is the primary mode of transmission. SARS clinically presents with high-grade fever, chills and rigors, myalgia, headache, cough with or without sputum production, dyspnea, and dizziness. Chest radiographs reveal unilateral or bilateral, predominantly peripheral, areas of consolidation progressing with in a short time of bilateral patchy consolidation. Preliminary reports suggest a milder illness in young children. The case definition of probable SARS cases, laboratory investigations and precautions for prevention of spread are discussed.

Communicable Diseases, Emerging↗

Peripheral circulatory failure.

Shock is a syndrome arising from any of several initiating causes, resulting in inadequate tissue perfusion. Untreated shock due to any cause can lead to irreversible cellular damage. Early diagnosis and intervention are, therefore, key to improved outcomes. In children, hypotension is not a sensitive marker for diagnosing peripheral circulatory failure. A detailed evaluation to assess perfusion particularly estimating capillary refill time and end organ perfusion is required. Septic shock is a complex condition with varying contribution of hypovolemia, cardiac dysfunction and distributive shock. Aggressive fluid therapy in the early stages is essential to recovery. Understanding the pathophysiology will help in judicious use of vasoactive drugs. Newer modalities of treatment for severe sepsis and septic shock still need evaluation in children.

Child↗

Clinical profile and frequency of delta f508 mutation in Indian children with cystic fibrosis.

OBJECTIVE: To document clinical profile of cystic fibrosis (CF) in Indian children and the prevalence of delta F508 mutation in these patients. DESIGN: Observational study. SETTING: Pediatric chest clinic in an urban tertiary care center in north India. PERIOD OF STUDY: July 1995 to June 2002. METHODS: Clinical features of 120 children diagnosed as CF by quantitative pilocarpine iontophoresis were recorded. A polymerase chain reaction based test for identification of delta F 508 mutation was performed on all children. RESULTS: Out of 3500 new cases registered in Pediatric Chest Clinic during this period 120, (3.5%) children were diagnosed as CF. Origin of parents of patients traced from almost all the States of north India. Family history suggestive of CF was present in 41 (34%) and consanguinity in 19 (61%) patients. Common clinical manifestations at the time of presentation included recurrent or persistent pneumonia in 118 (98%), failure to thrive in 108 (90%), malabsorption in 96 (80%), history of meconium ileus in 10 (8%), and rectal prolapse was present in 16 (13%). History of salt craving, salty taste on kissing and skin rashes was present in 5 patients each. 49(41%) patients were severely malnourished. Nasal polyposis was present in 5 (4%) patients. Examination of chest revealed evidence of hyperinflation in 100 (83%), kyphosis 20 (17%), crepitations 110 (92%), wheezing 40 (25%) and bronchial breathing in 20 (17%) patients. Average clinical CF scores were 51 (95%; CI 20-80). 48 (40%) patients had a CF score of LT40. Pseudomonas spp was cultured from respiratory secretions of 51 (42%), Staphylococcus spp in 18 (15%), Klebsiella spp in 8 (7%) and Hemophilus influenzae in 2 (2%) patients. Delta F508 mutation was positive in 45 chromosomes out of 240 tested. Patients originated from Pakistan had more frequency of delta F508 mutations. CONCLUSIONS: Cystic fibrosis does occur in Indian children; clinical features are classical. Diagnosis is often delayed and the disease is advanced in most patients at the time of diagnosis. Frequency of Delta F508 mutation is 19% i.e., less than that seen in Caucasian population. There is need to create awareness about occurrence of CF in Indian children.

Child↗

Tuberculosis in children--what has changed in last 20 years?

Several changes have been observed in the epidemiology, clinical manifestations, diagnostic modalities and treatment of tuberculosis. Emergence of HIV epidemic and drug resistance have posed significant challenges. With increase in number of diseased adults and spread of HIV infection, the infection rates in children are likely to increase. It is estimated that in developing countries the annual risk of tuberculosis infection in children is 2.5%. Nearly 8-20% of the deaths caused by tuberculosis occur in children. Lymph node tuberculosis has increased over last two decades. HIV infected children are at an increased risk of tuberculosis, particularly disseminated disease. In last two decades drug resistant tuberculosis has increased gradually. The rates of drug resistance to any drug varied from 20% to 80% in different geographic regions. Various diagnostic techniques such as improved culture techniques, serodiagnosis, and nucleic acid amplification have been developed and evaluated to improve diagnosis of childhood tuberculosis. Serodiagnosis is an attractive investigation but till date none of the tests have desirable sensitivity and specificity. Tests based on nucleic acid amplification are a promising advance. Relatively less experience in children, need for technical expertise and high cost are limiting factors for their use in children with tuberculosis. Short-course chemotherapy for childhood tuberculosis is well established. Treatment with intermittent regimens is comparable to daily regimens. Directly observed treatment strategy have shown encouraging result.

BCG Vaccine↗