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Biomedical subjects

J W Graef

Publications and source records attributed to J W Graef.

5 recordsLinked to original sources

Lead intoxication in infancy.

Four years of experience in the evaluation and management of lead intoxication in the first year of life were reviewed. This study was conducted in a lead referral program within the state of Massachusetts, whose comprehensive lead laws include extensive (and now mandatory) lead screening of all children. Over the period of study, 50 (14%) of 370 new patients enrolled in the program were infants aged 12 months or younger. Median age of these infants was 11 months (range 1 through 12 months). Mean peak lead level was 39.0 micrograms/dL while the mean peak erythrocyte protoporphyrin concentration was 111.9 micrograms/dL of whole blood. Thirty-two percent of infants were ambulatory at the time lead intoxication was diagnosed; only 24% had a history of pica. Twenty-six percent of parents were welfare dependent. Apparent sources of plumbism included house-hold renovation (n = 20), direct ingestion of paint chips (n = 10), formula preparation with lead-contaminated water (n = 9), lead dust importation (n = 1), and congenital exposure to elevated maternal lead level (n = 1). In 9 cases the source was not found. When this profile was compared with that of a randomly selected group of 47 children aged 18 through 30 months, who were seen in the lead program during the same interval, apparent sources of intoxication in the older group were paint chip ingestion (n = 41), household renovation (n = 2), and unknown (n = 4) (P less than .0001). On the basis of these data, it is concluded that lead intoxication in infants is common and has significantly different origins from that in toddlers.(ABSTRACT TRUNCATED AT 250 WORDS)

Cooking and Eating Utensils

Residential deleading: effects on the blood lead levels of lead-poisoned children.

Acute elevations of venous blood lead levels (PbB) are periodically reported in children with chronic lead poisoning, during deleading of their houses. To evaluate this phenomenon 114 preschool children who entered the Massachusetts Childhood Lead Poisoning Prevention Program case management system during 1984 and 1985 were retrospectively studied. PbB increased from a mean (+/- SE) of 1.76 +/- 0.03 mumol/L (36.4 +/- 0.6 micrograms/dL) prior to deleading to 2.03 +/- 0.07 mumol/L (42.1 +/- 1.5 micrograms/dL) during deleading (P less than .001). Among 41 subjects for whom deleading was done by dry scraping and sanding, the mean mid-deleading PbB was higher than the pre-deleading PbB by 0.44 +/- 0.12 mumol/L (9.1 +/- 2.4 micrograms/dL). However, when deleading was done by covering or replacement of painted surfaces in the residences of 12 subjects, mid-deleading PbB decreased 0.11 +/- 0.12 mumol/L (2.25 +/- 2.4 micrograms/dL) (P less than .005). In a subset of 59 subjects who had no chelation therapy and were available for follow-up 250 +/- 14 days after completion of deleading, PbB had decreased from 1.72 +/- 0.04 mumol/L (35.7 +/- 0.9 micrograms/dL) to 1.24 +/- 0.04 mumol/L (25.5 +/- 0.9 micrograms/dL) (P less than .001). The long-term effect of deleading is a significant reduction in PbB. However, deleading resulted in a significant, albeit transient, increase in PbB.

Age Factors

Lead intoxication from lead-contaminated water used to reconstitute infant formula.

The lead found in drinking water can be a source of lead poisoning to young children, particularly those who consume large amounts of water. The authors describe a 13-month-old infant who was discovered to have plumbism during routine evaluation. The lead source was ultimately traced to the daily administration of powdered formula which was prepared with home tap water having a first-draw lead content of 130 parts per billion. This case suggests that whenever infants are fed powdered formula, consideration should be given to analysis of the home tap water for lead content.

Female

Hazards of 'deleading' homes of children with lead poisoning.

"Deleading" the homes of children with lead poisoning is a necessary step to terminate the child's exposure to lead. Lead poisoning as a result of lead exposure during the process of deleading has occurred in deleading workers but has not been well documented among children whose homes are deleaded. We treated four children with classes I through III lead poisoning (range of blood lead [Pb-B] level, 1.6 to 2.75 mumol/L [33 to 57 micrograms/dL]) who had significant elevation of their Pb-B levels (range, peak 4.34 to 6.27 mumol/L [90 to 130 micrograms/dL]) following deleading of their homes. The methods used for deleading included scraping, sanding, and burning of the paint. Symptoms included irritability (n = 3) and vomiting (n = 1). The elevation of the Pb-B levels was detected early, allowing prompt chelation therapy. Because exacerbation of lead poisoning may occur in children following deleading of their homes, safer approaches of deleading should be determined.

Chelating Agents