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ve. However, due to the special microenvironment after central nervous system damage, some non-degradable inorganic materials will increase the pressure of self-healing and even secondary damage to neurons, which has been solved by the emergence of exosomes. Some previous studies used tumor cell line exosomes as drug carriers, but the carcinogenic factors carried by themselves have extremely high hidden dangers, and endogenous macrophage exosomes have absolute advantages over their safety.The immune system plays an essential role in tissue repair and regeneration. Regardless of innate or adaptive immune responses, immunosuppressive strategies such as macrophage polarization and regulatory T (Treg) cell induction can be used to modulate the immune system to promote tissue repair and regeneration. Biomaterials can improve the production of anti-inflammatory macrophages and Treg cells by providing physiochemical cues or delivering therapeutics such as cytokines, small molecules, microRNA, growth factors, or stem cells in the damaged tissues. Herein, we present an overview of immunosuppressive modulation by biomaterials in tissue regeneration and highlight the mechanisms of macrophage polarization and Treg cell induction. Overall, we foresee that future biomaterials for regenerative strategies will entail more interactions between biomaterials and the immune cells, and more mechanisms of immunosuppression related to T cell subsets remain to be discovered and applied to develop novel biomaterials for tissue repair and regeneration. STATEMENT OF SIGNIFICANCE Immunosuppression plays a key role in tissue repair and regeneration, and biomaterials can interact with the immune system through their biological properties and by providing physiochemical cues. Here, we summarize the studies on biomaterials that have been used for immunosuppression to facilitate tissue regeneration. In the first part of this review, we demonstrate the crucial role of macrophage polarization and induction of T regulatory (Treg) cells in immunosuppression. In the second part, distinct approaches used by biomaterials to induce immunosuppression are introduced, which show excellent performance in terms of promoting tissue regeneration.Depletion of human serum albumin (HSA), the most abundant protein in human plasma, from serum/plasma is a prerequisite before their proteomic analysis. Molecularly imprinted polymers (MIPs) using HSA as a template have been designed for this purpose, but suffer from a low sorption capacity and low selectivity. Here, a new HSA-imprinted polymer was synthesized using N-isopropylacrylamide (NIPAM) as the main monomer; acrylamide (AAm), methacrylic acid (MAA), and dimethylaminoethyl methacrylate (DMAEMA) as functional monomers; and oligoglutamic acid-based peptide crosslinker (PC) as a crosslinker at pH 5.5. When pH is adjusted to 7.4, the peptide chains in the polymer change from a helical conformation to an extended coil conformation, and the polymer swells. Consequently, the template protein is removed completely. When pH is adjusted back to 5.5, the peptide chains fold back precisely to the helical conformation. Both the size and shape of the imprint cavities are restored. Therefore, the polymer rebinds the tnted polymer (MIP) using human serum albumin (HSA) as a template was synthesized using N-isopropylacrylamide (NIPAM) as the main monomer; acrylamide (AAm), methacrylic acid (MAA), and dimethylaminoethyl methacrylate (DMAEMA) as functional monomers; and oligoglutamic acid-based peptide crosslinker as a crosslinker. Because of the reversible and precise pH-induced helix-coil transition of the peptide chains, the template protein was removed facilely and completely under mild conditions. Simultaneously, a significant improvement in imprinting efficiency was obtained. The sorption capacity was as high as 648.05 mg/g and the imprinting factor was 7.9. Because of its high selectivity and high binding capacity, the MIP synthesized here is highly promising for the depletion of HSA, the most abundant protein in serum, which is a prerequisite for its proteomic analysis. For the first time, complete and selective depletion of HSA from human serum was achieved using a protein-imprinted polymer.

Severe food allergic reactions can be life-threatening or fatal and are experienced by up to 40% of children with food allergies, with adolescents at greatest risk. check details There are no comprehensive measures to assess food allergy management behaviors that could prevent allergic reactions.

To describe food allergy self-management behaviors as reported by adolescents on a 24-hour recall measure and identify related factors.

Adolescents aged 10 to 14 years with immunoglobulin E-mediated food allergy completed the Food Allergy Management 24-Hour Recall as an interview. Participants answered questions on each food they ate on the previous day and food allergy self-management behaviors.

Participants were a diverse sample (28% White) of 101 adolescents (mean age=11.80 years; 53% male sex). Most meals and snacks (76%) were observed by adults. Epinephrine autoinjectors (EAIs) were reportedly available for almost all meals and snacks (93%). Almost all foods had been eaten before (95%) and were verified as allergen free (92%). Furthermore, 35% of the time, past experience with the food was the only method used to verify safety. Child age, number of food allergies, or time since allergic reaction was not related to self-management behavior. EAI availability and ingredient verification were most common at home and in school; adult observation was least likely in the home.

Adolescents reported that EAIs were frequently available, but they relied on past experience with food to determine safety. Appropriate assessment of food safety should be a primary intervention target. The Food Allergy Management 24-Hour Recall may be a useful tool to assess and track food allergy self-management.

Adolescents reported that EAIs were frequently available, but they relied on past experience with food to determine safety. Appropriate assessment of food safety should be a primary intervention target. The Food Allergy Management 24-Hour Recall may be a useful tool to assess and track food allergy self-management.

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