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Updated: May 14, 2026

A Novel Clinical Grade Isolation Method for Human Kidney Perivascular Stromal Cells
Published on: August 7, 2017
Pathfinder cells provide a novel therapeutic intervention for acute kidney injury
Liane M McGlynn1, Kathrin Eller, Alasdair I MacDonald
1Instititute of Cancer Sciences, University of Glasgow, Glasgow, United Kingdom.
Abstract:
Pathfinder cells (PCs) are a novel class of adult-derived cells that facilitate functional repair of host tissue. We used rat PCs to demonstrate that they enable the functional mitigation of ischemia reperfusion (I/R) injury in a mouse model of renal damage. Female C57BL/6 mice were subjected to 30 min of renal ischemia and treated with intravenous (i.v.) injection of saline (control) or male rat pancreas-derived PCs in blinded experimentation. Kidney function was assessed 14 days after treatment by measuring serum creatinine (SC) levels. Kidney tissue was assessed by immunohistochemistry (IHC) for markers of cellular damage, proliferation, and senescence (TUNEL, Ki67, p16(ink4a), p21). Fluorescence in situ hybridization (FISH) was performed to determine the presence of any rat (i.e., pathfinder) cells in the mouse tissue. PC-treated animals demonstrated superior renal function at day 14 post-I/R, in comparison to saline-treated controls, as measured by SC levels (0.13 mg/dL vs. 0.23 mg/dL, p<0.001). PC-treated kidney tissue expressed significantly lower levels of p16(ink4a) in comparison to the control group (p=0.009). FISH analysis demonstrated that the overwhelming majority of repaired kidney tissue was mouse in origin. Rat PCs were only detected at a frequency of 0.02%. These data confirm that PCs have the ability to mitigate functional damage to kidney tissue following I/R injury. Kidneys of PC-treated animals showed evidence of improved function and reduced expression of damage markers. The PCs appear to act in a paracrine fashion, stimulating the host tissue to recover functionally, rather than by differentiating into renal cells. This study demonstrates that pancreatic-derived PCs from the adult rat can enable functional repair of renal damage in mice. It validates the use of PCs to regenerate damaged tissues and also offers a novel therapeutic intervention for repair of solid organ damage in situ.
Insights
Pathfinder cells (PCs) from rats significantly improved kidney function in mice after ischemia reperfusion injury. These cells promote host tissue repair rather than direct cell replacement, offering a novel therapeutic approach for organ damage.
Area of Science:
- Regenerative Medicine
- Cell Therapy
- Organ Transplantation
Background:
- Ischemia reperfusion (I/R) injury is a major cause of acute kidney injury.
- Adult-derived cells offer potential for tissue repair.
- Pathfinder cells (PCs) are a novel class of cells facilitating host tissue repair.
Purpose of the Study:
- To investigate the efficacy of rat pancreas-derived PCs in mitigating I/R injury in a mouse kidney model.
- To assess the functional and histological recovery of kidneys post-I/R injury following PC treatment.
- To determine the mechanism of action of PCs in renal repair.
Main Methods:
- Induction of renal I/R injury in female C57BL/6 mice.
- Intravenous administration of saline (control) or rat pancreas-derived PCs.
- Assessment of kidney function via serum creatinine levels at 14 days post-treatment.
- Histological analysis using immunohistochemistry for damage, proliferation, and senescence markers (TUNEL, Ki67, p16(ink4a), p21).
- Fluorescence in situ hybridization (FISH) to track the origin of repaired cells.
Main Results:
- PC-treated mice showed significantly improved renal function (lower serum creatinine) compared to controls (0.13 mg/dL vs. 0.23 mg/dL, p<0.001).
- PC treatment led to significantly reduced expression of the senescence marker p16(ink4a) in kidney tissue (p=0.009).
- FISH analysis confirmed that the vast majority of repaired kidney tissue was of host (mouse) origin, with rat PCs detected at only 0.02% frequency.
Conclusions:
- Pancreas-derived Pathfinder cells from adult rats effectively mitigate functional damage in a mouse model of renal I/R injury.
- PCs appear to act via a paracrine mechanism, stimulating endogenous repair processes rather than through direct differentiation.
- This study validates the therapeutic potential of PCs for regenerating damaged tissues and treating solid organ damage in situ.
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