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BioWorld - Saturday, April 11, 2026
Home » Topics » Disease categories and therapies » Genetic/congenital

Genetic/congenital
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Concept art for prenatal genetic testing and whole genome sequencing.
Neurology/Psychiatric

Placental gene expression sets risk trajectory for schizophrenia

May 17, 2023
By Anette Breindl
By analyzing gene expression patterns in the placenta of nearly 150 pregnancies and comparing them to fetal gene expression in the brain, researchers from the Lieber Institute for Brain Development have gained new insights into the importance of placental tissue in setting the risk trajectory for the development of schizophrenia. The work was published in Nature Communications on May 15, 2023.
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Illustration showing pangenome graph
Genetic/Congenital

Pangenome gives more panoramic view of human diversity

May 10, 2023
By Mar de Miguel
The human genome, the sequence that represents the DNA of our species, was built with a single individual as a model. This all-in-one standard didn’t include the gene variations that make us different or explain why some people develop certain diseases. Four simultaneous studies from the Human Pangenome Reference Consortium have published a sequence based on 47 individuals, beginning to capture the genetic diversity that defines humans.
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Illustration of animals, DNA double helix
Genetic/Congenital

In Zoonomia project, evolutionary lens hones search for functional genomic variants

May 2, 2023
By Nuala Moran
A base-by-base comparison of the genome sequences of 240 species of mammals has pinpointed sites in the human genome where mutations are likely to cause disease. The sites are all perfectly conserved across the mammalian family tree over 100 million years of evolution, indicating they underlie fundamental biological processes that do not tolerate diversity or change very well.
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Illustration of animals, DNA double helix
Genetic/Congenital

In Zoonomia project, evolutionary lens hones search for functional genomic variants

May 1, 2023
By Nuala Moran
A base-by-base comparison of the genome sequences of 240 species of mammals has pinpointed sites in the human genome where mutations are likely to cause disease. The sites are all perfectly conserved across the mammalian family tree over 100 million years of evolution, indicating they underlie fundamental biological processes that do not tolerate diversity or change very well.
Read More
Illustration of animals, DNA double helix
Genetic/Congenital

In Zoonomia project, evolutionary lens hones search for functional genomic variants

April 28, 2023
By Nuala Moran
A base-by-base comparison of the genome sequences of 240 species of mammals has pinpointed sites in the human genome where mutations are likely to cause disease. The sites are all perfectly conserved across the mammalian family tree over 100 million years of evolution, indicating they underlie fundamental biological processes that do not tolerate diversity or change very well.
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3D model of a protein molecule
Genetic/Congenital

Questions arise about nonsilent effect of synonymous mutations

April 25, 2023
By Mar de Miguel
Synonymous or silent mutations do not change the sequence of the protein that they encode. With some exceptions, they do not trigger any effect. Last year, however, a study by researchers from the University of Michigan tried to refute this concept after finding that they altered the protein function. But breaking dogmas can have answers. A group of scientists from various institutions has found that this work could have a method error.
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Gene editing illustration

Base editing rescues spinal muscular atrophy in vivo

April 10, 2023
By Mar de Miguel
The editing in human cells and in mice of the survival motor neuron 1 gene (SMN1) restored the levels of SMN protein that the mutation of the SMN2 gene produces in spinal muscular atrophy. Scientists from the Broad Institute in Boston and The Ohio State University reversed the mutation using the base editing technique.
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Genetic/Congenital

Base editing rescues spinal muscular atrophy in vivo

April 6, 2023
By Mar de Miguel
The editing in human cells and in mice of the survival motor neuron 1 gene (SMN1) restored the levels of SMN protein that the mutation of the SMN2 gene produces in spinal muscular atrophy (SMA). Scientists from the Broad Institute in Boston and The Ohio State University reversed the mutation using the base editing technique. “This base editing approach to treating SMA should be applicable to all SMA patients, regardless of the specific mutation that caused their SMN1 loss,” the lead author David Liu, a professor and director of the Merkin Institute of Transformative Technologies in Healthcare at the Broad Institute of Harvard and MIT, told BioWorld.
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Genetic/Congenital

Novel AAV-based gene therapy for liver glycogen storage disease type IX presented

March 31, 2023
Liver glycogen storage disease type IX (GSD IX) accounts for 25% for all GSD cases, with a prevalence of 1 out of 100,000 patients. GSD IX is caused by deficiency in phosphorylase kinase (PhK), which is comprised of four subunits (α2, β, δ and γ2), with γ2 being the catalytic domain.
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Endocrine/Metabolic

SLC6A19 inhibition as a strategy for PKU treatment

March 22, 2023
Phenylketonuria (PKU) is an autosomal recessive disorder where the primary catabolic pathway for phenylalanine (Phe) is disrupted due to mutations in the gene encoding PAH. Elevated Phe levels lie behind several neuropathologic anomalies that can lead to severe and irreversible mental retardation, if untreated.
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