Astrocyte-targeted gene delivery of interleukin 2 specifically increases brain-resident regulatory T cell numbers and protects against pathological neuroinflammation

Open Access
Authors
  • P. Lemaitre
  • M. Marino
  • J. Dooley
  • L. Kouser
  • S. Verschoren
  • V. Lagou
  • H. Kemps
  • P. Gervois
  • A. de Boer
  • O.T. Burton
  • J. Wahis
  • J. Verhaert
  • S.H.K. Tareen
  • C.P. Roca
  • K. Singh
  • C.E. Whyte
  • A. Kerstens
  • Z. Callaerts-Vegh
  • S. Poovathingal
  • T. Prezzemolo
  • K. Wierda
  • A. Dashwood
  • J. Xie
  • E. Van Wonterghem
  • E. Creemers
  • M. Aloulou
  • W. Gsell
  • O. Abiega
  • S. Munck
  • R.E. Vandenbroucke
  • A. Bronckaers
  • R. Lemmens
  • B. De Strooper
  • Ludo Van Den Bosch
  • U. Himmelreich
  • C.P. Fitzsimons ORCID logo
  • M.G. Holt
  • Adrian Liston
Publication date 06-2022
Journal Nature Immunology
Volume | Issue number 23 | 6
Pages (from-to) 878-891
Organisations
  • Faculty of Science (FNWI) - Swammerdam Institute for Life Sciences (SILS)
Abstract
The ability of immune-modulating biologics to prevent and reverse pathology has transformed recent clinical practice. Full utility in the neuroinflammation space, however, requires identification of both effective targets for local immune modulation and a delivery system capable of crossing the blood-brain barrier. The recent identification and characterization of a small population of regulatory T (Treg) cells resident in the brain presents one such potential therapeutic target. Here, we identified brain interleukin 2 (IL-2) levels as a limiting factor for brain-resident Treg cells. We developed a gene-delivery approach for astrocytes, with a small-molecule on-switch to allow temporal control, and enhanced production in reactive astrocytes to spatially direct delivery to inflammatory sites. Mice with brain-specific IL-2 delivery were protected in traumatic brain injury, stroke and multiple sclerosis models, without impacting the peripheral immune system. These results validate brain-specific IL-2 gene delivery as effective protection against neuroinflammation, and provide a versatile platform for delivery of diverse biologics to neuroinflammatory patients.
Document type Article
Language English
Published at https://doi.org/10.1038/s41590-022-01208-z
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