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Pre-autism: What a paediatrician should know about early diagnosis of autism
1Department of Pediatric, Faculty of Medicine, Tanta University, Tanta 31511, Algahrbia, Egypt.
Insights
Early detection of autism spectrum disorder (ASD) is vital. This review explores prenatal, neonatal, and infant biomarkers for early autism risk identification, aiming for objective diagnostic tools.
Area of Science:
- Neurodevelopmental disorders
- Pediatric neurology
- Biomarker research
Background:
- Autism spectrum disorder (ASD) is a complex neurodevelopmental condition typically diagnosed in early childhood.
- Early diagnosis is critical for effective management and improved outcomes.
- Current screening methods for ASD are limited, especially prenatally and neonatally.
Purpose of the Study:
- To review potential biomarkers for early autism detection.
- To explore the concept of
- pre-autism
- for identifying risk before typical symptoms emerge.
- To discuss the development of objective diagnostic tools for ASD.
Main Methods:
- Review of existing literature on fetal, neonatal, and infant biomarkers.
- Analysis of potential genetic, immunological, hormonal, metabolic, and radiological markers.
- Examination of biophysical activity, behavioral profiles, and body measurements as indicators.
Main Results:
- Various biomarkers, including genetic and immunological factors, show potential for predicting autism risk.
- Biomarker arrays could lead to objective diagnostic tools for ASD.
- Each biomarker possesses unique accuracy and limitations.
Conclusions:
- Developing a comprehensive biomarker array is crucial for objective ASD diagnosis and severity assessment.
- Overcoming challenges like community awareness, access to tools, and stigma is essential for improving early detection.
- Further research into diverse biomarkers is needed to enhance early identification and intervention for autism spectrum disorder.
Abstract:
Autism, also known as an autism spectrum disorder, is a complex neurodevelopmental disorder usually diagnosed in the first three years of a child's life. A range of symptoms characterizes it and can be diagnosed at any age, including adolescence and adulthood. However, early diagnosis is crucial for effective management, prognosis, and care. Unfortunately, there are no established fetal, prenatal, or newborn screening programs for autism, making early detection difficult. This review aims to shed light on the early detection of autism prenatally, natally, and early in life, during a stage we call as "pre-autism" when typical symptoms are not yet apparent. Some fetal, neonatal, and infant biomarkers may predict an increased risk of autism in the coming baby. By developing a biomarker array, we can create an objective diagnostic tool to diagnose and rank the severity of autism for each patient. These biomarkers could be genetic, immunological, hormonal, metabolic, amino acids, acute phase reactants, neonatal brainstem function biophysical activity, behavioral profile, body measurements, or radiological markers. However, every biomarker has its accuracy and limitations. Several factors can make early detection of autism a real challenge. To improve early detection, we need to overcome various challenges, such as raising community awareness of early signs of autism, improving access to diagnostic tools, reducing the stigma attached to the diagnosis of autism, and addressing various culturally sensitive concepts related to the disorder.
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