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August 1, 20250 citationsOpen Access

Humanized TfR1 and transferrin gene-replacement rats for in vivo evaluation of BBB transport

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MYMetin YeşiltepeSMSanjay Kisan MetkarTYTao Yin

Key Points

  • Humanized TfR1 and transferrin gene-replacement rats improve evaluation of BBB transport for biologics.
  • Double homozygous rats showed iron distribution abnormalities, with hepatic iron increase and splenic decrease.
  • Heterozygous rats had mild hematologic changes, suggesting varying compensation based on gene dosage.
  • These new models enable better testing of CNS-targeting therapies like anti-TfR1 nanobodies for drug delivery.

Abstract

The transferrin receptor 1 (TfR1) transferrin (TF) axis plays a central role in iron homeostasis and has long been recognized as a promising route for delivering biologics across the blood brain barrier (BBB). We have developed a class of human-specific anti-TfR1 nanobodies (NewroBus) that exploit this transport pathway. However, the lack of cross-reactivity with rodent TfR1 limits the utility of standard animal models for preclinical testing. To overcome this challenge, we generated knock in (KI) rats in which the coding sequences of the endogenous Tfrc and Tf genes were replaced with human coding sequences, yielding animals that express human TfR1 and/or human TF under physiological control. Rats homozygous for both humanized alleles were viable and fertile, indicating that the human proteins can functionally replace their rodent equivalents. Nonetheless, these double homozygous rats exhibited erythropoietic abnormalities and tissue-specific alterations in iron distribution, characterized by decreased splenic and increased hepatic iron, suggesting incomplete functional compensation. In contrast, heterozygous rats showed only mild, subclinical hematologic changes (microcytosis and hypochromia). These findings demonstrate that the humanized TfR1 TF axis is compatible with life and iron regulation, albeit with varying degrees of compensation depending on gene dosage. Importantly, these KI rats provide a translationally relevant platform for evaluating pharmacokinetics, CNS penetration, and safety of human-specific BBB targeting therapeutics, including NewroBus-based biologics and other TfR1 mediated delivery strategies.

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Cite This Study

Yeşiltepe et al. (2025) studied this question.

synapsesocial.com/papers/689a0c65e6551bb0af8cf9b6https://doi.org/10.1101/2025.07.25.666792
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Also Consider

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  1. 1Abstract 969: Humanized TFR1 knock-in mice: A powerful platform for evaluating TFR1-targeting brain shuttles2026
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  3. 3Abstract 2045: Novel TFRC humanized mouse model for drug delivery to the brain2024
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