Periodic Table of Immunomodulatory Elements and Derived Two‐Dimensional Biomaterials

Author:

Rafieerad Alireza1,Saleth Leena Regi1,Khanahmadi Soofia2,Amiri Ahmad3,Alagarsamy Keshav Narayan1,Dhingra Sanjiv1ORCID

Affiliation:

1. Institute of Cardiovascular Sciences St. Boniface Hospital Albrechtsen Research Centre Biomedical Engineering Program Department of Physiology and Pathophysiology Rady Faculty of Health Sciences University of Manitoba Winnipeg Manitoba R2H2A6 Canada

2. Institute for Molecular Biosciences Johann Wolfgang Goethe Universität 60438 Frankfurt am Main Germany

3. Russell School of Chemical Engineering The University of Tulsa Tulsa OK 74104 USA

Abstract

AbstractPeriodic table of chemical elements serves as the foundation of material chemistry, impacting human health in many different ways. It contributes to the creation, growth, and manipulation of functional metallic, ceramic, metalloid, polymeric, and carbon‐based materials on and near an atomic scale. Recent nanotechnology advancements have revolutionized the field of biomedical engineering to tackle longstanding clinical challenges. The use of nano‐biomaterials has gained traction in medicine, specifically in the areas of nano‐immunoengineering to treat inflammatory and infectious diseases. Two‐dimensional (2D) nanomaterials have been found to possess high bioactive surface area and compatibility with human and mammalian cells at controlled doses. Furthermore, these biomaterials have intrinsic immunomodulatory properties, which is crucial for their application in immuno‐nanomedicine. While significant progress has been made in understanding their bioactivity and biocompatibility, the exact immunomodulatory responses and mechanisms of these materials are still being explored. Current work outlines an innovative “immunomodulatory periodic table of elements” beyond the periodic table of life, medicine, and microbial genomics and comprehensively reviews the role of each element in designing immunoengineered 2D biomaterials in a group‐wise manner. It recapitulates the most recent advances in immunomodulatory nanomaterials, paving the way for the development of new mono, hybrid, composite, and hetero‐structured biomaterials.

Funder

Canadian Institutes of Health Research

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

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