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BioWorld - Tuesday, March 24, 2026
Home » Topics » Disease categories and therapies » Neonatal/pediatrics

Neonatal/pediatrics
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Illustration of brain cross-section showing the pineal gland
Cancer

Three pediatric brain cancer types share a pineal gland origin

March 11, 2026
By Mar de Miguel
No Comments
Similarities among three pediatric brain tumors that arise in different structures of the CNS – pineoblastoma, retinoblastoma and Group 3 medulloblastoma – have been linked to their shared origin during pineal gland development. Scientists at St. Jude Children’s Research Hospital have identified the molecular signatures that drive these tumors from pinealocyte progenitor cells that conserve a common differentiation program, providing a shared therapeutic target for these three cancer types.
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Pipet, test tubes, chemical structures
Cancer

C-Further unveils pediatric cancer programs

March 10, 2026
No Comments
C-Further, an international consortium supporting new therapeutics for pediatric cancers, has unveiled the first early-stage therapeutic programs in its pipeline. The company said it is advancing CF-012 and CF-033 through its collaborative model.
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Illustration of brain cross-section showing the pineal gland
Cancer

Three pediatric brain cancer types share a pineal gland origin

March 10, 2026
By Mar de Miguel
No Comments
Similarities among three pediatric brain tumors that arise in different structures of the CNS – pineoblastoma, retinoblastoma and Group 3 medulloblastoma – have been linked to their shared origin during pineal gland development. Scientists at St. Jude Children’s Research Hospital have identified the molecular signatures that drive these tumors from pinealocyte progenitor cells that conserve a common differentiation program, providing a shared therapeutic target for these three cancer types.
Read More
Illustration of baby showing brain development
Neurology/psychiatric

Targeting TRPM7 ameliorates neonatal HIBI, study finds

Feb. 11, 2026
No Comments
Hypoxic-ischemic brain injury (HIBI) is a condition affecting neonates and is a leading global cause of perinatal neurological morbidity, with limited therapeutic options. Regarding its pathogenesis, the ion channel-kinase transient receptor potential melastatin 7 (TRPM7) is a known contributor to HIBI pathology and was the focus of a recently reported study.
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Respiratory

β3-Adrenoceptor agonism plays protective role in bronchopulmonary dysplasia

Jan. 28, 2026
No Comments
Bronchopulmonary dysplasia (BPD) is a chronic disease of the lungs that mainly affects premature newborns, especially those who receive mechanical ventilation, which can contribute to altering normal lung development. There are few treatment options with limited efficacy to improve the prognosis of BPD.
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Pediatric brain illustration
Genetic/congenital

Succinate prodrug NV-354 protects the brain in complex I deficiency

Jan. 20, 2026
No Comments
Leigh syndrome is a fatal pediatric neurodegenerative disorder caused by mitochondrial dysfunction, most often due to defects in the mitochondrial respiratory chain. The Ndufs4 knockout (Ndufs4 KO) mouse is an established model of the disease, as loss of the NDUFS4 subunit leads to complex I (CI) deficiency and reproduces the neurological decline and pathology seen in affected children. Researchers from The Children’s Hospital of Philadelphia Research Institute and collaborators described how NV-354, a water-soluble prodrug of succinate, may mitigate this mitochondrial dysfunction.
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Genedx’s Director of Laboratory Innovation Joe Devaney

Genedx delivers WGS prenatal testing

Jan. 7, 2026
By Annette Boyle
Genedx Holding Corp. launched Genomedx Prenatal, its whole genome sequencing test, to provide more definitive diagnoses of the causes of fetal abnormalities identified by ultrasound. By combining the company’s decade of experience in prenatal exome testing and its massive Genedx Infinity rare disease dataset, the test can determine not just whether a pregnancy has a risk of a genetic disorder but whether the fetus actually has a genetic disorder.
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Children’s Hospital of Philadelphia
The year in review

2025 marks a breakthrough year for in vivo gene therapies

Dec. 30, 2025
By Mar de Miguel
No Comments
Gene editing technologies are moving forward in preclinical development with innovative strategies designed to treat diseases at their root and even reverse them.
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Children’s Hospital of Philadelphia
The year in review

2025 marks a breakthrough year for in vivo gene therapies

Dec. 30, 2025
By Mar de Miguel
No Comments
Gene editing technologies are moving forward in preclinical development with innovative strategies designed to treat diseases at their root and even reverse them. However, many approaches still struggle to reach target cells or tissues – either they fail to arrive, or their efficacy is low. In vivo therapies face numerous challenges, but despite these hurdles, 2025 has marked a year of remarkable progress.
Read More
Children’s Hospital of Philadelphia
The year in review

2025 marks a breakthrough year for in vivo gene therapies

Dec. 29, 2025
By Mar de Miguel
No Comments
Gene editing technologies are moving forward in preclinical development with innovative strategies designed to treat diseases at their root and even reverse them. However, many approaches still struggle to reach target cells or tissues – either they fail to arrive, or their efficacy is low. In vivo therapies face numerous challenges, but despite these hurdles, 2025 has marked a year of remarkable progress.
Read More
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