Fetal Kidney Transplantation for In Utero Fetuses
Morimoto, K.; Yamanaka, S.; Matsui, K.; Kinoshita, Y.; Inage, Y.; Yamamoto, S.; Koda, N.; Matsumoto, N.; Saito, Y.; Takamura, T.; Fujimoto, T.; Fukunaga, S.; Tajiri, S.; Matsumoto, K.; Ozawa, K.; Wada, S.; Kobayashi, E.; Yokoo, T.
Show abstract
Potter sequence, characterized by bilateral renal agenesis, oligohydramnios, and consequent pulmonary hypoplasia, presents a significant challenge in the management of affected neonates. Due to their prematurity and associated abdominal complications, these infants often fail to reach a stage where dialysis can be safely initiated and sustained, leading to an exceedingly high mortality rate. Therefore, there is hopeful anticipation that interventions serving as a bridge to achieve a state where dialysis can be safely performed will markedly improve life expectancy. We have developed a unique approach of "transplantation of fetal kidneys from a different species during the fetal period" as a bridge therapy until stable dialysis therapy can be implemented. This is a new concept of fetal therapy, targeting the fetus in utero and utilizing fetal kidneys of an appropriate size for transplantation. In this study, we first validated the approach using allogeneic transplantation. Fetal kidneys with bladders from GFP-expressing rats (gestational age 14.0-16.5 days) were transplanted subcutaneously into allogeneic rat fetuses in utero (gestational age 18.0-18.5 days) using a special needle transuterinally, and live pups were successfully obtained. The transplanted fetal kidneys with bladders were confirmed to have urine production capability. By periodic aspiration of the subcutaneous urinary cyst after birth, urine produced by the transplanted fetal kidney was successfully drained outside the body for an extended period (up to 150 days). Biochemical tests confirmed the solute removal capacity of the transplanted fetal kidney. Furthermore, despite allogeneic transplantation, long-term urine production was sustained without the use of immunosuppressants, confirming that organ transplantation into fetuses is associated with lower rejection compared to adult transplantation. Next, xenotransplantation was performed. When GFP-expressing mouse fetal kidneys (gestational age 13.0-13.5 days) were transplanted into rat fetuses in utero, maturation of renal tissue structures was confirmed even in the interspecies setting.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Creation of X-linked Alport Syndrome Rat Model with Col4a5 Deficiency 96%
- Glomerular spatial transcriptomics of IgA nephropathy according to the presence of mesangial proliferation 95%
- Temporal and sex-dependent gene expression patterns in a renal ischemia-reperfusion injury and recovery pig model 95%
Similar papers in this journal
- Reconstruction of the urinary tract at the appropriate time reduces fibrosis of the metanephros in rats as judged by imaging 98%
- Recombinant human soluble thrombomodulin is associated with attenuation of sepsis-induced renal impairment by inhibition of extracellular histone release 95%
- Mice with renal-specific alterations of stem cell-associated signaling develop symptoms of chronic kidney disease but surprisingly no tumors 94%
Similar papers in this journal
- Packed Red Blood Cell and Whole Blood Perfusates during an Ex-vivo Normothermic Perfusion for Assessment of High-Risk Donor Kidneys 94%
- Nephron Number and Kidney Outcomes in IgA Nephropathy: A Retrospective Cohort Study 93%
- A murine model of cardiovascular-kidney-metabolic syndrome demonstrates compromised limb function in the ischemic hind limb 92%
Similar papers in this journal
- Deep learning identifies pathological abnormalities predictive of graft loss in kidney transplant biopsies 93%
- Intraflagellar transport-A deficiency attenuates ADPKD in a renal tubular- and maturation-dependent manner 91%
- Molecular Programs of Glomerular Hyperfiltration in Early Diabetic Kidney Disease 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.