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BioWorld - Friday, July 24, 2026
Home » Topics » Disease categories and therapies » Endocrine/metabolic

Endocrine/metabolic
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DNA illustration
Endocrine/Metabolic

Gene therapy with AAV2/8-LSPhGAA shows good results in preclinical Pompe disease

Feb. 19, 2024
Pompe disease is a disorder caused by deficiency of the lysosomal acid α-glucosidase (GAA) enzyme, which leads to the accumulation of glycogen within the lysosomes, overall in skeletal and cardiac muscle.
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Endocrine/Metabolic

GCS inhibitor YH-35995A ameliorates Gaucher disease in mice

Feb. 19, 2024
Yuhan Corp. has presented preclinical data on their glucosylceramide synthase (GCS) inhibitor.
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Drug R&D concept image.
Endocrine/Metabolic

Pompe disease murine model harboring GAA c.1826dupA resembles infantile-onset disease

Feb. 16, 2024
Pompe disease is caused by a deficiency in the lysosomal enzyme acid α-glucosidase (GAA) that leads to accumulation of glycogen in the lysosomes, mainly seen in skeletal and cardiac muscles. Researchers from Duke University have developed a new murine model of Pompe disease, which recapitulates human infantile-onset disease. This model harbors the c.1826dupA mutation in the murine Gaa gene, which resembles the human GAA c.1826dupA (p.Y609*) mutation seen in infantile-onset Pompe disease.
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Endocrine/Metabolic

HIP-engineered islet graft achieves insulin independence without immunosuppression in NHP model

Feb. 16, 2024
It has been hypothesized that allogeneic, hypoimmune (HIP) iPSC-derived or donor-derived islet grafts could provide a new and safe therapeutic alternative for the treatment of type 1 diabetes mellitus (T1DM). Researchers from Sana Biotechnology Inc. and affiliated organizations have published preclinical data from studies further assessing this novel strategy in nonhuman primates (NHPs).
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A lysosome (foreground) is enlarged by an accumulation of the fatty substance glucocerebroside, a characteristic of Gaucher disease
Endocrine/Metabolic

Murine model recapitulates human Gaucher disease type 1

Feb. 15, 2024
Researchers from the Yale University School of Medicine have developed a novel murine model of Gaucher disease type I with the aim to investigate the impact of GBA1 deficiency on hematopoiesis and the immune system, in order to elucidate potential therapeutic targets.
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Endocrine/Metabolic

Autologous B-cell therapy WFX-001 corrects systemic α-GAL enzyme deficiency in vivo

Feb. 14, 2024
Walking Fish Therapeutics Inc. presented a new first-in-class autologous B-cell therapy being developed for the treatment of Fabry disease.
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Endocrine/Metabolic

Jnana Therapeutics describes new SLC6A19 inhibitors

Feb. 13, 2024
Jnana Therapeutics Inc. has identified sodium-dependent neutral amino acid transporter B(0)AT1 (SLC6A19) inhibitors reported to be useful for the treatment of diabetes, chronic kidney disease, metabolic dysfunction-associated steatohepatitis, phenylketonuria, metabolic syndrome, obesity, neurodevelopmental and autism spectrum disorders, among others.
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Endocrine/Metabolic

Teon Therapeutics describes new adenosine A2B receptor antagonists

Feb. 12, 2024
Teon Therapeutics Inc. has identified prodrugs of adenosine A2B receptor (ADORA2B) antagonists.
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Layoff illustration

Synlogic pulls plug after peek at phenylketonuria phase III data

Feb. 9, 2024
By Randy Osborne
Synlogic Inc. jolted Wall Street with news that the firm is scrapping for futility Synpheny-3, its pivotal study with labafenogene marselecobac (SYNB-1934) for phenylketonuria, and will evaluate strategic options. Shares of the Cambridge, Mass.-based firm (NASDAQ:SYBX) fell 48.7%, or $1.68, to end Feb. 9 at $1.77. Synlogic will cease operations and reduce its workforce by more than 90%, retaining only certain employees to help with the wind-down.
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Endocrine/Metabolic

SLC6A19 inhibitors disclosed in Jnana Therapeutics patent

Feb. 9, 2024
Work at Jnana Therapeutics Inc. has led to the identification of sodium-dependent neutral amino acid transporter B(0)AT1 (SLC6A19) inhibitors reported to be useful for the treatment of diabetes, chronic kidney disease, metabolic dysfunction-associated steatohepatitis (MASH), phenylketonuria, metabolic syndrome, obesity, neurodevelopmental and autism spectrum disorders, among others.
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