5A: PANEL: 51 Years of Buddy Ratner 1

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: Centennial III/IV

Description

8:00 AM – 8:05 AM | Welcome

8:05 AM – 8:26 AM | Nicholas Peppas, University of Texas at Austin

8:26 AM – 8:47 AM | Kristi Anseth, University of Colorado

8:47 AM – 9:08 AM | Omid Veiseh, Rice University

9:08 AM – 9:29 AM | Stuart Cooper, The Ohio State University

9:29 AM – 9:50 AM | Fred Schoen, Harvard-MIT

9:50 AM – 10:00 AM | Buddy Ratner, University of Washington

Moderators:

Dr. Ashutosh Chilkoti
Distinguished Professor of Biomedical Engineering
Duke University

Gabriel Lopez
Distinguished Professor | Department of Chemical and Biological Engineering
The University of New Mexico

  • 8:05 AM. 219. Biomaterials Surfaces, Adhesion, Ocular Therapy and Molecular Recognition: Recognizing the Leader of our Field. Nicholas Peppas, Professor, Cockrell Family Regents Chair in Engineering # 6, The University of Texas at Austin Speakers Dr. Nicholas Peppas
  • 8:26 AM. 220. Talk by Kristi Anseth, University of Colorado, Boulder Speakers Dr. Kristi Anseth
  • 8:47 AM. 221. Modulating the host immune response to implantable biomaterials. Omid Veiseh, Rice University Speakers Omid Veiseh
  • 9:08 AM. 222. 50 Years of Polyurethane Biomaterials. Stuart Cooper, The Ohio State University Speakers Dr. Stuart Cooper
  • 9:29 AM. 223. Regenerative biomaterials for cardiac valves and vascular grafts. Fred Schoen, Harvard-MIT Speakers Dr. Fred Schoen
  • 9:50 AM. 224. Talk by Buddy Ratner, Michael L. and Myrna Darland Endowed Chair in Technology Commercialization Professor of Bioengineering and Chemical Engineering, University of Washington Speakers Buddy Ratner

5B: Immunomodulatory Biomaterials 2

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: Centennial I

Description

This session will highlight recent advances in the design and application of biomaterials that actively shape immune responses for therapeutic benefit. These biomaterials will span natural and synthetic materials engineered to modulate both innate and adaptive immunity in contexts including tissue repair, regenerative medicine, autoimmune disease, allergies, cancer immunotherapy, and transplantation. Topics will include, but are not limited to, the delivery of immunomodulators and imaging agents, antigen delivery, scaffolds for immunomodulation, microbiome modulation, combination therapies, cell-based therapies, and hydrogels for driving immune cell recruitment and polarization.

Moderators:

Dr. Brian Kwee
Assistant Professor
University of Delaware

Yaoying Wu
Assistant Professor
Biomedical and Chemical Engineering
Syracuse University

Muhammad Rizwan
Assistant Professor | Biomedical Engineering | Ophthalmology
UT Southwestern Medical Center

  • 8:00 AM. 225. Targeted microneedle delivery of nickel for diagnosis of allergic contact dermatitis.Zheng-Chi Lee1, Arben Nace, M.S.1, Dara Bakar, M.D.1, Elaine Kim, B.A.1, Spencer Tuohy, B.A.1, Leo Wang, MD, PhD, FAAD2 1Perelman School of Medicine, University of Pennsylvania, 2University of Pennsylvania
  • 8:15 AM. 226. Porous and Compressible Alginate Cryogel for the Mitigation of Cytokine Release Syndrome.Kexin Zhang, M.S.1, Yuchen Jiang, M.S.1, Kyle Vining, D.D.S., Ph.D.1 1University of Pennsylvania
  • 8:30 AM. 227. Engineered Immunological Niche Reveals Immune Signatures of Islet Allograft Rejection.Jyotirmoy Roy1, Abdalmonam Nejma2, Mohammad Tarique2, Shengli Wu2, Brianna Ha1, Esma Yolcu2, Lonnie Shea1 1University of Michigan, 2University of Missouri
  • 8:45 AM. 228. Development of a Regulatory Vaccine (REGvak) for Dendritic Cell Modulation and Rheumatoid Arthritis Immunotherapy.Kevin Smith, B.S.1, Jamal Lewis, Ph.D.1 1University of Florida
  • 9:00 AM. 229. Injectable Alginate Hydrogels for Treatment of Hypoxic Ischemic Encephalopathy.Lindsay Gallagher1, Bailey Collins, B.S.1, Lauren Mottel, M.S.1, Jaclyn Schwarz, Ph.D.1, Brian Kwee, Ph.D.1, Elizabeth Wright-Jin, M.D., Ph.D.2 1University of Delaware, 2Nemours Children's Hospital
  • 9:15 AM. 230. Elucidating Biomaterial-Induced Immunomodulatory Mechanisms of Tissue Remodeling.Jessica Stelzel, PhD1, Stuart Bauer, M.S.1, Yin Xi Ni, B.A.1, Zhi-Chen Yao, Ph.D.1, Victor Quiroz, B.A.1, Jamie Hernandez, Ph.D.1, Bryan McCarty, B.A.2, Russell Martin, Ph.D.3, Kailei Goodier, M.S.1, Sashank Reddy, MD PhD4, Hai-Quan Mao, PhD1, Joshua Doloff, Ph.D.1 1Johns Hopkins University, 2Turing Labs Inc., 3LifeSprout Inc., 4Johns Hopkins University School of Medicine
  • 9:30 AM. 231. Harnessing Mitochondrial Danger Lipids in mRNA Nanoparticles to Program Tumor-Localized Immune Responses.Ashish Kulkarni, Ph.D.1 1University of Massachusetts Amherst
  • 9:45 AM. 232. A Supramolecular Cancer Vaccine Induces Cross Presentation and Immune Activation.Benjamin Keselowsky, PhD1, Gregory Hudalla, PhD1, Stephen Michel1, Elias Sayour, MD, PhD1 1University of Florida

5C: Drug Delivery SIG 2: Materials-based Immune Programming

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM

Description

This session will survey the diverse range of contemporary drug delivery systems and innovations. Drug delivering biomaterials can include nanoparticles, hydrogels, nanofibers, cell and virus-derived particles, or bioconjugates. Payloads can include DNA, RNA, antibodies, recombinant proteins, or small molecules. Disease applications can range from neurodegeneration to autoimmune disease, trauma, infection, or cancer. Work at all scales, from basic formulation science through therapeutic application in disease models is welcome. Studies that critically evaluate the impact of injection route on treatment efficacy and/or use novel imaging modalities to evaluate drug delivery performance are especially encouraged.

Moderators:

Jamal Lewis
Associate Professor
Herbert Wertheim College of Engineering
University of Florida

Bugyun Li
West Virginia University

Elham Taherian

  • 8:00 AM. 233. Localized Delivery of Single- and Dual-Enzyme Peptide Gels for Therapeutic Biocatalysis.Madeline Fuchs1, Jennifer Simonovich, PhD1, Isabella Pinto1, Gregory Hudalla, PhD1, Benjamin Keselowsky, PhD1 1University of Florida
  • 8:15 AM. 234. A Modular Biodegradable Microparticle Delivery System to Control Antigen Release Kinetics and Improve Vaccines.Alyssa Kunkel1, Ruhi Rachakonda1, Samuel Wu1, Tyler Graf1, Kevin McHugh, Ph.D.1 1Rice University
  • 8:30 AM. 235. A modular delivery platform for single-injection rabies vaccination.Tyler Graf1, Kevin McHugh, Ph.D.1 1Rice University
  • 8:45 AM. 236. Development of a Single-Injection Polio Vaccine with Microparticle-Based Timed Pulsatile Release.John Daristotle1, Xueguang Lu2, Zachary Tochka3, Kevin McHugh, Ph.D.4, Gary Li3, Nandita Menon3, Yehui Sun3, Stephanie Tomasic3, Tyler Graf3, Stephany Tzeng5, Adam Behrens3, Erica Budina3, Wenting Gao3, Ziqi Chen3, Timothy Forster3, Sviatlana Rose3, Dhruv Varshney3, Linzixuan Zhang3, Jooli Han6, Khanh Tran3, Sydney MacDonald3, Basit Jafri7, Bernardo Mainou7, Robert Langer3, Ana Jaklenec3 1OmniPulse Biosciences, 2Institute of Chemistry, Chinese Academy of Sciences, 3Massachusetts Institute of Technology, 4Rice University, 5Johns Hopkins University, 6Seoul National University College of Medicine, 7Centers for Disease Control and Prevention
  • 9:00 AM. 237. Aromatic lipid nanoparticle vaccine confers antigen-specific immunization with increased tissue-specific delivery.Hannah Yamagata1, Michael Mitchell, PhD2 1UPenn, 2University of Pennsylvania
  • 9:15 AM. 238. Cationic nanoparticles as vaccine enhancers in colorectal cancer immunotherapy.Md Meraj Anjum, PhD1, L.S.L Janardhanam, PhD1, Mohammad Alnatour, PhD1, Ramkrishna Sen, PhD1, Sean M Geary, PhD1, Aliasger Salem, PhD1 1University of Iowa
  • 9:30 AM. 239. Engineering hydrogels for sustained vaccine delivery in pancreatic ductal adenocarcinoma.Peter Xie, MEng1, James Agolia, MD1, Ovijit Chaudhuri1, Daniel Delitto, MD/PhD1 1Stanford University
  • 9:45 AM. 240. In situ immunization of melanoma with CpG-loaded nanoparticles overcomes resistance to immune checkpoint blockade agents.Aliasger Salem, PhD1 1University of Iowa

5D: High-Performance Biomaterials for Tissue Engineering and Regenerative Medicine

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: Hanover AB

Description

Biologically derived polymers and composites offer excellent opportunities in the biomaterials field. This versatile class of materials includes biopolymers (polyhydroxy alkanoates, hyaluronic acid), polysaccharides (starch, chitin/chitosan, alginate) or proteins (collagen, fibrin, silk fibroin) enabling developing engineered systems with outstanding biological performance. The innovative use of its characteristics, taking advantage of the similar structure or composition with respect to biological tissues, enables designing high performance solutions for biocompatibility, biodegradability and bioactivity of biomaterials. Also the advanced areas of tissue engineering, drug delivery and smart/active/adaptative systems may benefit from the wealth of natural polymers existing in nature.

  • 8:00 AM. 241. Functionalized Biomaterial Substrates for Advanced Therapies. Nuno Neves, i3bs Speakers Dr. Nuno Neves
  • 8:30 AM. 242. Injectable Tissue-Penetrating Hyaluronic Acid (iTP-HA) Hydrogel for In-Tissue Crosslinking and Multiscale Cartilage Protection.Tristan Pepper, Ph.D.1, Jay Patel, Ph.D.2, Christine Lee, Student3, Lauren Foster, Student4 1Georgia Institute of Technology and Emory University, 2Emory University, 3Georgia Tech, 4Emory
  • 8:45 AM. 243. Dual-Component Scaffolds with Real-Time Biosensing for Diabetic Wound Healing.Connor Moore1, Nooshin Zandi, PhD1, Nivesh Sharma2, Mengnan Dennis, Doctorate Degree2, Michael Daniele, PhD1, Martin King, PhD3, Amay Bandodkar, PhD2, Ashley Brown, PhD2 1North Carolina State University and University of North Carolina at Chapel Hill, 2North Carolina State University, 3NC State University
  • 9:00 AM. 244. Heparin-modified aligned collagen scaffolds enhance in vitro myogenesis.Geshani Bandara, BS1, Ryann Boudreau, BS1, William Wyatt, BS1, Steven Caliari, PhD1 1University of Virginia
  • 9:15 AM. 245. Anisotropic dECM Integrated Hydrogel with Tendon-Like Mechanics and Strain-Responsive Sensing Capability.Yeon Woo park1, Kumaresan Sakthiabirami2, Jae Hwang Song2, Min Hee Kim3, Won Ho Park1 1Chungnam National University, 2Konyang University Hospital, 3Kyungpook National University
  • 9:30 AM. 246. Collagen density in collagen:fibrin matrices promotesosteogenic:angiogenic development through matrix strain.Gennifer Chiou1, Gabriela Cervantes-Gonzales2, Rena Bizios1, Joo Ong2, Teja Guda2 1UT San Antonio, 2The University of Texas at San Antonio
  • 9:45 AM. 247. Making Synthetic Hydrogels Inspired by Biology.Ruth Ebubechukwu1, E. Thomas Pashuck1 1Lehigh University

5E: BioInterfaces SIG

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: Hanover CDE

Description

The junction between materials and biological systems is a critical and complex interface with the potential to control the function of macromolecules and dictate cell and tissue responses. Increasingly, cells and biomacromolecules are designable components of biomaterials, creating additional opportunities for innovative research at the interface of materials science and fundamental biology. This session serves as a forum for advances in approaches to modulate interfacial properties, investigations of structure-function and self-assembly at biointerfaces, and applications of interface-driven biomedicine. Specific areas of interest include fundamental research related to dynamic interactions at the material-biomolecular interface from nano to bulk scales and applied research focused on providing hemocompatible and non-fouling biomaterial surfaces. We also encourage contributions that advance a biomaterials lens to cutting-edge research in protein and cell biology, and research that translates progress in molecular and cell biology into innovative biomaterials.

  • 8:00 AM. 248. From Molecular Synthesis to Supramolecular Structure: Deciphering the Activity of RNA Lipid Nanoparticles. | Marshall Padilla, University of Pennsylvania Speakers Marshall Padilla
  • 8:30 AM. 249. Functional Anti-bacterial Coatings for Localized Modulation of Airway Microenvironment During Intubation.Gabriela Cervantes-Gonzales1, Teja Guda1, Rena Bizios1, Joo Ong1, Gregory Dion2, Ronit Malka3 1The University of Texas at San Antonio, 2University of Cincinnati Medical Center, 3Brooke Army Medical Center
  • 8:45 AM. 250. Hemostatic Polyurethane Shape Memory Polymer Foams for Infection Prevention in Traumatic Wounds.Ernest Emmanuel Obeng1, Chelsea Antwi2, Paris Smith2, Changling Du2, Katheryn Dong2, Michaela Hall3, Joshua Satalin3, Michaela Kollisch-Singule4, Mary Beth Monroe1 1Texas A&M University, 2Syracuse University, 3SUNY Upstate Medical University, 4Arkansas Children's Hospital
  • 9:00 AM. 251. Mechanically Tunable Topographies to Direct Cellular and Multicellular Organization Across Biological Systems.Jouha Min1 1University of Michigan
  • 9:15 AM. 252. Matrix Mechanics Modulates Engineered Microvessels Permeability and Contractility.Elizabeth Stanely1, Lydia Kruis1, Anna Bunge1, Michael Hu1, Gonzalo Anyosa1, Brendon M. Baker, PhD2 1University of Michigan, 2UNIVERSITY OF MICHIGAN- ANN ARBOR
  • 9:30 AM. 253. Protein Corona on Supramolecular Nanofibers Enhances Biomaterial Phagocytosis and Immunogenicity.Helena Freire Haddad1, Vinicius Xie Fu1, Maria Kulapurathazhe1, Katherine Lyon1, Joel Collier, PhD1 1Duke University
  • 9:45 AM. 254. Multi-domain disordered proteins enable programmable assembly of biomaterial-condensates in human cells.Ian Sicher, M.Eng.1, Maria Camila Giraldo-Castaño, B.S.2, Mariell Pascual, B.S.2, Felipe Quiroz, PhD3, Spencer Hayes, M.S.2 1Georgia Institute of Technology, 2Georgia Institute of Technology & Emory University, 3Wallace H. Coulter Department of Biomedical Engineering at Georgia Tech and Emory University

5F: Engineering Cells and Their Microenvironments SIG
1

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: Hanover FG

Description

The Engineering Cells & Their Microenvironments Special Interest Group focuses on technologies and approaches at the single-cell level and the engineering of cellular microenvironments. This includes designing dynamic cues within biomaterials to regulate cell signaling and stem cell fate, as well as advancing stem cell manufacturing and differentiation, immunoengineering, and biomaterials for cell-based detection and diagnosis.

Moderators:

Taylor Hebner
Assistant Professor of Chemical Engineering
Purdue University

Chelsea Magin
Associate Professor | CEDC-Bioengineering
University of Colorado Denver | Anschutz

  • 8:00 AM. 255. Tunable Peptide-Functionalized Hydrogels Enhance Cardiac Differentiation and Function of Human iPSC.Mohammadjafar Hashemi, PhD in chemical engineering1, Debeni Devi Nongmaithem1, Charlotte Chen1, Bahareh Bahman1, Nathaniel Huebsch1 1Washington University in St. Louis
  • 8:15 AM. 256. Dynamically Mechanically Tunable Synthetic Hydrogels Support Organoid Culture.Michael Seitz1, Susan Moradi1, Dominic Tigani, M.S.1, Tessa DeCicco1, Zhen Ma, Ph.D1, Michael Blatchley, Ph.D1, Era Jain, Ph.D.1 1Syracuse university
  • 8:30 AM. 257. Epithelial Lineage Specific Nascent Matrix Contributes to Early Fibrotic Remodeling.Donia Ahmed, M.S.1, Esther Gao, -1, Alaa Assi, -1, Matthew Tan, -1, Jingyi Xia1, Brendon M. Baker, PhD2, Claudia Loebel, MD, PhD3 1University of Michigan, 2UNIVERSITY OF MICHIGAN- ANN ARBOR, 3University of Pennsylvania
  • 8:45 AM. 258. Biomaterial-Mediated Temporal Deposition of Precise Matrix by Meniscal Fibrochondrocytes.Saitheja Pucha, B.S.1, Rehaan Jain1, Kyley Burkey, B.S2, Jenny Robinson, Ph.D.2, Jay Patel, Ph.D.1 1Emory University, 2University of Washington
  • 9:00 AM. 259. Aging of the human blood and immune system in a nonlinear, synthetic hydrogel system.Truc Dinh1, Dallin Jacobs2, Charlotte Stevens1, Connor George1, Aidan Gilchrist, Ph.D.2 1University of California, Davis, 2Univeristy of California, Davis
  • 9:15 AM. 260. Nascent extracellular matrix converts biomaterial cues into cell fate decisions.Joshua Liu, MS1, Eleanor Plaster2, Mingyue Fan, PhD1, Donia Ahmed, M.S.2, Pamela Duran, PhD2, Peyton Panovich, PhD2, Alexandra Piotrowski-Daspit, PhD2, Carlos Aguilar, PhD2, Megan Killian, PhD2, Claudia Loebel, MD, PhD1 1University of Pennsylvania, 2University of Michigan
  • 9:30 AM. 261. Cell Network Formation within Strain-Stiffening Bottlebrush Polymer Hydrogels.Monica Ohnsorg, PhD1, Nicole Friend, PhD2, Daniel Saeb2, Sophie Givens, PhD2, Kayla Mash2, Kristi Anseth3 1University of Wisconsin - Madison, 2University of Colorado, Boulder, 3University of Colorado at Boulder
  • 9:45 AM. 262. Develop an engineered brain microvascular model for vessel co-option using synthetic zinc finger transcription regulator (SynZiFTR).Sheridan Fok, PhD candidate1, Brendan Harley2, Ahmad Khalil, PhD3, Hanrong Ye, PhD3 1University of Illinois Urbana-Champaign, 2University of Illinois at Urbana Champaign, 3Boston University

5G: Extracellular Vesicles for Biomedical Applications

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: GH East AB

Description

Extracellular vesicles (EVs) are natural nanoparticles that carry RNA, DNA, proteins, and lipids, and have been given much attention in recent years due to the growing knowledge of their role in driving disease and maintaining health. The objective of this session is to bring together investigators focusing on the characterization and biology of EVs, engineering of EVs, and their utility as diagnostic biomarkers and therapeutics. Example topics include EV nanomaterials science, the interaction of EVs with biological systems, EV biodistribution in vivo and pharmacology, and the utility of EVs for molecular targeting, imaging, diagnostics, immunoengineering, tissue engineering, and drug delivery. EVs from different sources including both mammalian and bacteria-derived EVs will be included.

  • 8:00 AM. 263. Local Delivery of miRNA Using an Injectable Click Hydrogel and Lipid Nanoparticle System.Thomas Jacobs, BA, BS1, Ila Hales2, David Cohen, MD1, Zvi Schwartz, PhD, DMD1, Barbara Boyan, PhD1 1Virginia Commonwealth University, 2Arizona State University
  • 8:15 AM. 264. Extracellular Vesicle-Mediated Therapeutic Targeting for Modulating Enteric Neuroimmune Responses.Karla Ortega Sandoval1, Shreya Artha Raghavan, Associate Professor2, Natalia Higuita-Castro, Associate Professor3, Maria Rincon Benavides, Post Doctoral Scholar3, Daniel Velasquez Ramirez3 1Texas A&M, 2texas a&m university, 3The Ohio State University
  • 8:30 AM. 265. Tissue-specific matrix-bound nanovesicles regulate the immunoregulatory process of biological mesh-aided abdominal hernia repair.zhengni Liu, /1, Beili Zhang, /2, Lei Liu, /3 1The University of Queensland, 2Shanghai JiaoTong University, 3Shanghai East hospital
  • 8:45 AM. 266. Enhancing Anti-Tumor Effects of Engineered Extracellular Vesicles via Endocytosis Route Switching and Interferon Response Suppression.Zixuan Huang1 1Shanghai Jiao Tong University
  • 9:00 AM. 267. Extracellular vesicle-crosslinked hydrogels with intrinsic angiogenic and immunomodulatory activity for regenerative tissue repair.Artemis Margaronis1, Santiago Correa1 1Columbia University
  • 9:15 AM. 268. Impact of Estradiol-Priming on Elastic Matrix Regenerative Properties of Stem Cell Extracellular Vesicles and their Biodistribution in a Rat Abdominal Aortic Aneurysm Model.Ali Abba Mutah, MS1, Anand Ramamurthi, PhD, FAHA1 1LEHIGH UNIVERSITY, BETHLEHEM PA.
  • 9:30 AM. 269. Urinary Extracellular Vesicles as Therapeutics for Autosomal Recessive Polycystic Kidney Disease (ARPKD).Yi Huang, Ph.D.1, Huihua Xing, Ph.D.1, Ali Osouli, M.S.1, Lisa Guay-Woodford, M.D.2, Eunji Chung, Ph.D.1 1University of Southern California, 2Children’s Hospital of Philadelphia
  • 9:45 AM. 270. AI-Guided Peptide Ligand Discovery for Cell-Specific Gene Delivery to Human Inner Ear Organoids.Sophia Wang1, Xiaoshu Pan, PhD2, Zachary Greenberg, MS2 1Fulton Science Academy Private School, 2University of Florida

5H: Postdoctoral Research Award

Date: Friday, March 27, 2026
Time: 8:00 AM to 10:00 AM
Room: GH East CD

Description

The goal of the SFB-PRA is to recognize excellence in future leaders of biomaterials and provide a platform to present their work to faculty and potential recruiters. Finalist will present at the PRA competition and the award recipients will be selected upon the quality and presentation of their work.

Moderators:

Claudia Loebel, M.D. Ph.D. | Assistant Professor, University of Pennsylvania
Fan Zhang, M.D. | Professor, University of Washington

  • 8:00 AM. 271. Microblasting Patch Disrupts Bacterial Barriers Mechanically to Treat Polymicrobial Biofilm-Mediated Wounds.
  • 8:15 AM. 272. Screening Salivary Gland-Acting Drugs to Control Oral Biofilm Virulence via the Salivary Gland Mimetic Tissue Chip.Sydney Yang, PhD1, Lisa DeLouise, PhD, MPD2, Danielle Benoit1 1University of Oregon, 2University of Rochester
  • 8:30 AM. 273. Structurally Anisotropic Microgel Particles (STAMPs) Regulate Cellular Invasion and Angiogenesis
  • 8:45 AM. 274. Bio-Hybrid Electro-Osmotic Pumping Platform for Active Lymphatic Rerouting in Lymphedema
  • 9:00 AM. 275. Engineering Organelle-Based Therapeutics: Controlled Mitochondrial Transfer for Bone Repair
  • 9:15 AM. 276. Enhanced Dynamic Covalent Chemistry for Controlled Drug Release from Supramolecular Hydrogels
  • 9:30 AM. A Precisely Controlled Long-Acting Immunosuppression Platform Enables Prolonged Survival of Vascularized Composite Allografts
  • 9:45 AM. 278. Shaping Vaccine Immune Responses Through mRNA Lipid Nanoparticle Design