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tag regeneration disease medicine immunology

Woman smiling at the camera working out on a blue yoga mat.
Keeping Older Muscles Strong
Hannah Thomasy, PhD, Drug Discovery News | Sep 5, 2023 | 5 min read
From stem cell-recruiting gels to hormone cycle restoration, Tracy Criswell has big ideas about how to combat age-related decline in muscle regeneration.
T regulatory cell in red sandwiching an antigen presenting cell in blue
Gut Bacteria Help T Cells Heal Muscle: Study
Natalia Mesa, PhD | Mar 14, 2023 | 4 min read
Regulatory T cells in the colon travel to muscles to promote wound healing in mice, raising questions about how antibiotics may impact injury recovery.
knitted pink heart with a mended hole
CAR T Cells Mend Broken Mouse Hearts
Sophie Fessl, PhD | Jan 6, 2022 | 4 min read
Specialized immune cells generated in vivo reduce cardiac scar tissue in mice, a new study shows.
3D medical illustration of peripheral blood cells: a lymphocyte (left) and a monocyte (right) surrounded by red blood cells.
PBMCs: Mononucleated and Multipurposed
Deanna MacNeil, PhD | Dec 16, 2022 | 4 min read
Researchers employ peripheral blood mononuclear cells (PBMCs) in clinical and academic applications related to the immune system and regenerative medicine.
Immune Cell–Stem Cell Cooperation
Sarthak Sinha, Jeff Biernaskie, and Waleed Rahmani | Jul 1, 2016 | 10+ min read
Understanding interactions between the immune system and stem cells could pave the way for successful stem cell–based regenerative therapies.
Histology of mouse lungs using purple and green staining on a white background. Left: a healthy lung. Right: a fibrotic lung.<br><br>
Immunotherapy Treats Fibrosis in Mice
Alejandra Manjarrez, PhD | Sep 15, 2022 | 4 min read
Researchers report that vaccination against proteins found on profibrotic cells reduced liver and lung fibrosis in laboratory rodents.
Hematopoietic Stem Cells
Hematopoietic Stem Cells and Their Role in Development and Disease Therapy
Jennifer Zieba, PhD | Aug 24, 2022 | 5 min read
Hematopietic stem cells (HSCs) are multipotent cells found in the blood and bone marrow with the ability to self-renew and differentiate into multiple cell types during bone marrow hematopoiesis
Eat Yourself to Live: Autophagy’s Role in Health and Disease
Vikramjit Lahiri and Daniel J. Klionsky | Mar 1, 2018 | 10+ min read
New details of the molecular process by which our cells consume themselves point to therapeutic potential.
3D image of a neuron cell network with a red glow representing inflammation.
New Insight into Brain Inflammation Inspires New Hope for Epilepsy Treatment 
Deanna MacNeil, PhD | Jun 1, 2023 | 2 min read
Clinicians and researchers teamed up to investigate how inappropriate proinflammatory mechanisms contribute to the pathogenesis of drug-refractory epilepsy.
Researchers Seek Common Ground On Regeneration
Eugene Russo | May 23, 1999 | 6 min read
Ah, the privileged life of a salamander. Chop off a limb, and within days a new one grows in its place. In recent years, scientists have become increasingly interested in tracing the molecular origins of this seemingly magical ability. By harnessing the mechanisms involved in a number of animal models, researchers hope to one day grow a variety of new human tissues in place of the old or defective, thereby supplanting the need for less "natural" remedies such as bionic limbs or organ transplant

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