Recombinant R-Spondin-1 (RSPO1) Proteins

3 products

Recombinant Human R-Spondin 1 Protein for Regenerative Research

R-Spondin 1 (RSPO1) is a powerful protein known for its ability to activate the Wnt/β-catenin signaling pathway—one of the most crucial pathways in stem cell regulation and tissue regeneration. Recombinant human R-Spondin 1 protein is widely used in research for its ability to enhance Wnt activity, supporting applications in organoid culture, intestinal stem cell studies, tissue repair, and drug development.

At Beta LifeScience, our selection of recombinant RSPO1 proteins is designed for high bioactivity, purity, and batch-to-batch consistency. Whether you're culturing human intestinal organoids or exploring developmental biology, our recombinant RSPO1 proteins provide the reproducible performance your research demands.

What is RSPO1?

RSPO1 (R-spondin 1) is a secreted protein that belongs to the R-spondin family. It plays a key role in amplifying Wnt signaling by binding to LGR receptors (LGR4, LGR5, and LGR6), which then block the degradation of Wnt receptors. This makes RSPO1 an essential enhancer of the Wnt pathway—vital for regulating cell proliferation, stem cell maintenance, and developmental patterning.

Discovered for its role in sex differentiation and organ development, RSPO1 is now known to have broader applications in tissue homeostasis, organoid culture systems, and disease modeling.


Resources

R-Spondin-1 (RSPO1) Proteins Blog Articles

Featured Products

Cat. No. Species Product Description Host Structure Purity Activity Features
BLPSN-4095 Human Human RSPO1 Protein, Active Mammalian cell Q2MKA7 (1-263aa) ≥ 95 % ED50: 10-80 ng/mL SDS-PAGE,Cell Based,HPLC
BLPSN-4097 Human Human RSPO1 Protein (His Tag), Active Mammalian cell Q2MKA7 (1-263aa) ≥ 95 % Linear range: 32-800 ng/ml. SDS-PAGE,Cell Based,HPLC,ELISA
BLPSN-4096 Human Human RSPO1 Protein (aa 1-146, His Tag), Active Mammalian cell Q2MKA7 (1-146aa) > 98 % ED50: 0.1-0.5 μg/mL SDS-PAGE,Cell Based,ELISA
BL-0319NP Human Human RSPO1 Protein (C-6His), Active Mammalian cell Q2MKA7 (21-263aa) ≥ 95 % ED50: 1-10ng/ml SDS-PAGE,Cell Based
BLC-05767P Human Human R-Spondin-1 (RSPO1) Protein (His-Avi), Active Mammalian cell Q2MKA7 (31-263aa) ≥ 95 % EC50: 124.0-174.1 ng/mL. SDS-PAGE,ELISA
BLC-05597P Human Human R-Spondin-1 (RSPO1) Protein (His), Active Mammalian cell Q2MKA7 (21-263aa) ≥ 95 % ED50: ≤100 ng/ml. SDS-PAGE,ELISA
Human Human RSPO1 Protein, Active Mammalian cell Q2MKA7 (21-263aa) ≥ 90 % ED50: 1.0-3.0 μg/ml. SDS-PAGE,Cell Based

Why Use Recombinant Human R-Spondin 1 Protein?

Recombinant human R-Spondin 1 protein offers a functional, ready-to-use version of the native protein—engineered and purified for research use. It provides consistent activity and easy integration into cell-based assays or organoid protocols.

Here’s why scientists prefer using recombinant RSPO1 from Beta LifeScience:

  • High Purity & Bioactivity: Each batch is validated for activity in Wnt pathway assays
  • Expressed in Mammalian Systems: Ensures correct folding and post-translational modifications
  • Lot-to-Lot Consistency: Trusted results across experiments
  • Fast, Secure Shipping: Most products are ready to ship within 24 hours

If you're working with human stem cells, organoids, or regenerative models, human recombinant R spondin 1 can significantly improve the growth, maintenance, and reproducibility of your cultures.

RSPO1’s Role in the Wnt Signaling Pathway

Wnt signaling is central to many biological processes, especially those related to development, tissue repair, and stem cell maintenance. RSPO1 enhances Wnt activity by inhibiting the E3 ubiquitin ligases RNF43 and ZNRF3—proteins that would otherwise reduce Wnt receptor levels on the cell surface.

By blocking these ligases, RSPO1 helps increase the presence of Frizzled receptors, leading to stronger and more sustained Wnt signaling. This makes RSPO1 a key supplement in Wnt-dependent systems such as:

  • Intestinal organoids
  • Liver and lung stem cell models
  • Developmental biology studies
  • Cancer signaling pathway research

RSPO1 in Organoid Research

Human recombinant R spondin 1 is particularly popular in organoid technology. In these 3D mini-organ cultures, RSPO1 supports the self-renewal and expansion of adult stem cells, allowing the organoids to mimic in vivo conditions closely.

Researchers working on intestinal or colonic organoids often combine RSPO1 with other growth factors like EGF and Noggin to recreate a niche that promotes long-term stem cell maintenance.

You can also pair RSPO1 with other growth factors available in our Growth Factors Collection to customize your media for specific tissue models.

Clinical and Therapeutic Implications

While RSPO1 is best known for its role in research models like organoid culture and Wnt signaling studies, its applications go far beyond the lab. Scientists and clinicians are exploring the broader therapeutic potential of recombinant human R-Spondin 1 protein in several key areas. Because RSPO1 supports epithelial regeneration, modulates inflammation, and influences tissue repair, it has become a protein of interest for both regenerative medicine and disease treatment strategies.

Below are some of the emerging therapeutic roles of RSPO1 in clinical and preclinical research:

  • Wound healing and tissue repair: RSPO1 has been shown to accelerate the healing of epithelial wounds, especially in sensitive mucosal tissues such as those in the intestine and respiratory tract. By enhancing Wnt signalling, it promotes rapid cell proliferation and migration during the healing process.
  • Inflammatory diseases: Chronic inflammation often disrupts the gut lining, leading to conditions like inflammatory bowel disease (IBD). RSPO1 contributes to intestinal barrier repair and has demonstrated anti-inflammatory effects by restoring epithelial integrity and supporting stem cell-driven regeneration.
  • Cancer: Aberrant activation of the Wnt signalling pathway—partially driven by RSPO1 overexpression—has been associated with colorectal and other cancers. Researchers are now using RSPO1 to study tumor development, test Wnt-targeted therapies, and understand how Wnt amplification affects cancer progression.
  • Gene therapy: RSPO1’s ability to manipulate Wnt signalling makes it a promising candidate for regenerative gene therapy. Promoting stem cell activity and tissue regeneration may aid in restoring function to damaged organs or tissues in degenerative diseases.

These growing areas of research are also increasing the demand for high-quality RSPO1 reagents. Both rspo1 protein and rspo1 antibody products are proving essential for in vivo testing, biomarker development, and therapeutic pathway modeling.

RSPO1 Protein vs. RSPO1 Antibody

In research involving Wnt signaling and tissue regeneration, both recombinant human R-Spondin 1 protein and RSPO1 antibodies serve essential yet distinct roles. The protein itself acts as a signaling molecule, often introduced to activate pathways related to stem cell maintenance, epithelial healing, and organoid culture. In contrast, RSPO1 antibodies are valuable analytical tools that detect or block RSPO1 activity in biological samples.

For scientists working in cancer biology, developmental research, or regenerative medicine, the combination of human recombinant R Spondin 1 and RSPO1 antibody enables a deeper understanding of pathway dynamics. Whether the goal is to drive cell proliferation in a model system or to analyze protein expression in tissues, these two tools offer complementary insights.

Here’s a detailed comparison of RSPO1 protein versus RSPO1 antibody in terms of their applications, features, and research value:

Feature

RSPO1 Protein

RSPO1 Antibody

Type

Recombinant protein (e.g., human recombinant R Spondin 1)

Monoclonal or polyclonal antibody

Function

Stimulates Wnt/β-catenin signaling pathway by binding to LGR4/5/6 receptors

Detects RSPO1 in samples; can block or label RSPO1

Primary Use

Functional studies in cell signaling, stem cell proliferation, tissue regeneration, and organoid culture

Analytical applications like Western blot, ELISA, immunohistochemistry (IHC), and flow cytometry

Role in Research

Drives biological response (e.g., cell growth or regeneration)

Tracks RSPO1 presence, monitors expression patterns, or inhibits activity

Application in Regenerative Medicine

Promotes stem cell renewal and epithelial repair in model systems

Used to study RSPO1's role in tissue repair and inflammation pathways

Use in Cancer Studies

Introduced to model RSPO1 overexpression and its effect on tumor development

Measures endogenous RSPO1 levels in tumor tissues or cells

Formulation

Typically supplied in lyophilized or liquid form, expressed in mammalian systems

Provided as purified IgG or conjugated antibody for detection assays

Cross-Species Utility

Often designed for human, but cross-reactivity may allow use in mice or other models

Available with species-specific reactivity (e.g., anti-human RSPO1, anti-mouse RSPO1)

Complementary Use

Enhances pathway activation in experiments

Used alongside RSPO1 protein to verify expression and downstream effects

Choose Beta LifeScience for RSPO1 Research

Our recombinant human R spondin 1 protein products are designed with researchers in mind. We use advanced mammalian expression systems to ensure structural fidelity and high bioactivity. Each lot undergoes rigorous testing, including:

  • SDS-PAGE analysis for purity
  • Cell-based assays for functional activity
  • Endotoxin testing (where applicable)
  • Validation against performance criteria

These quality control measures ensure that you receive a protein you can trust—no surprises, just reproducible results.

Recombinant human R-Spondin 1 protein is a cornerstone tool in Wnt research, organoid development, and regenerative medicine. Whether you’re culturing intestinal cells or studying cancer signaling, our highly active, mammalian-expressed RSPO1 protein delivers dependable performance.

With consistent activity, high purity, and verified functionality, Beta LifeScience ensures you can focus on science—not sourcing. Explore our RSPO1 collection and take your research to the next level.

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