Target intelligence / Profile preview

Sodium-dependent phosphate cotransporter type IIb (NaPi-IIb) (NaPi-IIb)

Target
NaPi-IIb
Molecular classification
Transporter, Sodium-phosphate cotransporter, Solute carrier family 34 member 2
01

Overview

“Intestinal phosphate” refers to the absorption of inorganic phosphate ions in the small intestine via two principal mechanisms: a saturable, active transcellular pathway mediated primarily by the sodium-dependent phosphate cotransporter type IIb (NaPi-IIb/Npt2b), and a passive, paracellular pathway across tight junctions. NaPi-IIb functions as the major protein responsible for sodium-dependent transcellular phosphate uptake, regulated by hormones and dietary factors, and is highly expressed in intestinal epithelial cells. Paracellular phosphate transport is driven by electrochemical gradients and occurs via tight junction complexes, but specific protein identity for this pathway is currently unknown. Dysregulation of intestinal phosphate absorption plays a central role in the development of hyperphosphatemia in chronic kidney disease, making NaPi-IIb a potential therapeutic target. However, current evidence indicates that, in humans, the paracellular pathway predominates, and direct NaPi-IIb inhibitors have shown limited clinical efficacy[2][3][4][5].

Other names
Npt2bSLC34A2NaPi2bsodium-phosphate cotransporter family
02

Mechanism of action

Inhibitors block active phosphate transport by NaPi-IIb, reducing intestinal phosphate uptake, theoretically lowering serum phosphate concentrations in hyperphosphatemia. Phosphate binders act by binding dietary phosphate in the intestinal lumen, making it unavailable for absorption.

03

Biological functions

Phosphate transport/absorptionMaintenance of phosphate homeostasisRegulation of mineral metabolism
04

Disease associations

Chronic kidney disease (CKD) – role in hyperphosphatemiaOther conditions involving abnormal phosphate metabolism
05

Safety considerations

Risk of hypophosphatemia if absorption is excessively blockedEffectiveness in humans may be limited; inhibition of NaPi-IIb may not sufficiently lower phosphate absorption due to dominance of the paracellular pathwayPhosphate binders may cause gastrointestinal side effects, mineral imbalances
06

Interacting drugs

Experimental NaPi-IIb inhibitors (e.g., ASP3325)

1 more in the full profile.

07

Biomarkers

Serum phosphate levels (for efficacy monitoring)Possibly NaPi-IIb expression levels (experimental)

Beyond the preview

Go deeper on Sodium-dependent phosphate cotransporter type IIb (NaPi-IIb) (NaPi-IIb).

Explore the evidence, development activity, and competitive landscape with Gosset’s full data platform.

Drug pipeline

Full profile access

Explore the programs pursuing this target and their development progress.

  • Drug candidates
  • Developers
  • Development stage

Clinical trials

Full profile access

Follow the clinical studies evaluating therapies directed at this target.

  • Trial design
  • Status
  • Readouts

Competitive landscape

Full profile access

Compare approaches across drug candidates, modalities, and indications.

  • Programs
  • Modalities
  • Indications

Literature & evidence

Full profile access

Investigate the research and source evidence behind target biology and development.

  • Publications
  • Sources
  • Analysis

Patents

Full profile access

Explore patent activity around therapies and technologies addressing this target.

  • Patents
  • Assignees
  • Technologies

Research & analysis

Full profile access

Connect target biology, drug development, and emerging evidence in your research.

  • Biology
  • Development news
  • Analysis

Bring the full picture into focus.

See how Gosset can support your research on Sodium-dependent phosphate cotransporter type IIb (NaPi-IIb) (NaPi-IIb).

Explore the full profile

Gosset Free

Get started with Gosset.

Enter your work email and we’ll be in touch with next steps.

Work email preferred.

Book a call