Severe bone deformities in young children from vitamin D deficiency and fluorosis in Bihar-India

A L Khandare1, R Harikumar, B Sivakumar

  • 1National Institute of Nutrition (ICMR), Jamia Osmania P.O., 500007, Hyderabad, India. alkhandare@yahoo.com

Insights

High fluoride in drinking water caused severe bone deformities, including rickets, in children. This study highlights the impact of fluoride exposure on skeletal health and nutritional deficiencies in affected communities.

Area of Science:

  • Environmental Health
  • Pediatric Orthopedics
  • Nutritional Epidemiology

Background:

  • Fluoride exposure from drinking water is a public health concern, particularly in developing regions.
  • Bone deformities in children can result from various etiological factors, including nutritional deficiencies and environmental toxins.

Purpose of the Study:

  • To investigate the etiopathology of bone deformities in children residing in a fluoride-affected village in Bihar, India.
  • To compare health parameters between a high-fluoride village and a control village with normal fluoride levels.

Main Methods:

  • A case-control study comparing a high-fluoride village (HFV) with a control village.
  • Assessment of drinking water fluoride levels, dental mottling, skeletal deformities, and nutritional intake (calcium, phosphorus).
  • Biochemical analysis of serum 25-hydroxyvitamin D, calcium, alkaline phosphatase, and intact parathyroid hormone (IPTH).

Main Results:

  • Children in the HFV exhibited significantly higher prevalence of dental mottling (50%) and skeletal deformities (20%) compared to the control village.
  • Typical skeletal deformities included genu valgum, genu varum, and bowing of long bones, particularly in children aged 1.5-14 years.
  • Lower serum calcium and vitamin D levels, higher alkaline phosphatase, and elevated IPTH were observed in children with deformities from the HFV.

Conclusions:

  • High fluoride intake from drinking water is strongly associated with severe bone deformities, resembling rickets, in children.
  • Nutritional factors, specifically low calcium and vitamin D intake, exacerbate the effects of fluoride exposure on skeletal health.
  • Public health interventions are needed to address fluoride contamination and nutritional deficiencies in affected areas.

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