Peritumoural immunomodulatory scaffolds

A peritumourally implanted macroporous scaffold releasing small molecules and antibodies to suppress regulatory T cells and to attract and stimulate effector T cells enhanced endogenous antitumoural responses in mice bearing aggressive tumours.
Like

Share this post

Choose a social network to share with, or copy the URL to share elsewhere

This is a representation of how your post may appear on social media. The actual post will vary between social networks

The cover illustrates that a scaffold releasing specific small molecules and antibodies can suppress regulatory T cells and attract and stimulate effector T cells when implanted peritumourally in mice.

See Majedi et al.

Image: Ella Marushchenko and Ekaterina Zvorykina, Ella Maru Studio, Inc. Cover design: Allen Beattie.

Please sign in or register for FREE

If you are a registered user on Research Communities by Springer Nature, please sign in

Follow the Topic

Biotechnology
Life Sciences > Biological Sciences > Biotechnology

Related Collections

With Collections, you can get published faster and increase your visibility.

Neuroengineering

With this cross-journal Collection, the editors at Nature Biomedical Engineering, Nature Medicine, Nature Neuroscience, Nature Biotechnology, Nature Communications, Communications Medicine, Communications Biology, and Scientific Reports invite manuscripts that highlight the development, use and insight obtained from applying neuroengineering approaches.

Publishing Model: Hybrid

Deadline: Oct 31, 2026

Medical Ultrasound: Emerging Techniques and Applications

This cross-journal Collection showcases the broad and exciting field of emerging techniques and applications in medical ultrasound.

Publishing Model: Hybrid

Deadline: Jan 29, 2027