Wong studied materials science and engineering at the Massachusetts Institute of Technology. Wong is an accomplished cellist – in 1984 she was a finalist in the Seventeen Magazine & General Motors National Concerto Competition, and during her undergraduate and graduate career was a member of the MIT Chamber Music Society. As an undergraduate at MIT she was a General Motors Women's Club scholar, a Uniroyal National Merit Scholar and Tau Beta Pi society member. She graduated in 1988, before beginning a PhD (Materials Science & Engineering) in the Program for Polymer Science and Technology as an IBM graduate research fellow, working with Robert S. Langer.[1] She earned her PhD from Massachusetts Institute of Technology in 1994.[1]
Wong was appointed a National Institutes of Health postdoctoral fellow at University of California, Santa Barbara working under Jacob N. Israelachvili. Her doctoral research investigated electrically conducting polymers, identifying that they can be used as a culture substrate to modulate the shape and growth of mammalian cells.[2] In her postdoctoral training, to mimic biological ligand - receptor interactions, Wong studied the interactions between polymer-tethered ligands and receptors using surface forces apparatus.[3] She also developed polymer cushioned bilayers as model cell membrane systems and characterized their biophysical properties using the surface forces apparatus and neutron reflectometry.[4][5]
Career
Wong joined Boston University as a Clare Boothe Luce Assistant Professor in 1998, Faculty of the College of Engineering in the Department of Biomedical Engineering and later in the Division of Materials Science and Engineering. She is a faculty mentor in training programs in the College of Arts and Sciences and the BU School of Medicine.[1] She develops biomaterials that can interact with living cells, interrogating biocompatibility and cell behaviour.[6][7] She was promoted to Professor in 2013.
Wong's research focuses on developing biomaterials for the early detection and treatment of disease.[8] She is interested in understanding how the physical cellular environment determines cell behavior by developing substrata with features that can imitate pathophysiological and physiological environments.[7] This approach includes studying cell behaviours such as directed cell migration, which she first began in cardiovascular cells[9][10][11][12] and later expanded to include metastatic cancer cells.[13][14][15] Her recent research in this area has been focused on combining the understanding of factors that control cardiovascular cell behavior[16][17][18][19] with micropatterned cell sheet technology[20][21][22][23] to develop surgical solutions for paediatric patients with congenital heart defects.[24][25]
Wong has also developed microfluidic processing methods to create fibers of the biopolymer silk[26][27] and has recently been focusing on developing protein alloy fibers.[28] Using tools developed to describe the silk's structure and drawing on her musical training, Wong enlisted composer John MacDonald (Tufts University), who translated the structure of different silk protein fragment sequences into a series of musical compositions for flute.[29]
Wong's most recent work has been developing targeted ultrasound[30][31][32] and magnetic resonance (MR)[33][34]contrast agents for the early detection of disease. Her MR contrast agent studies grew out of her work using nanotechnology to develop contrast agents to enhance oil recovery.[35][36][37] She is currently conducting pre-clinical studies of targeted ultrasound contrast agents in collaboration with Nanovalent Pharmaceuticals[38] to detect and treat surgical adhesions.[39]
Academic service
Wong served on the Executive Board of the Biomedical Engineering Society from 2011 to 2014. In 2011, she served as the first woman Chair of the Gordon Research Conference on Biomaterials & Tissue Engineering – a conference that began in 1966 as the Science and Technology of Biomaterials.[40] An informal brainstorming session of women at this meeting led to a social media group formed by Laura Suggs (UT Austin) with the aim of creating a network to connect women faculty in Biomedical Engineering. Wong is the lead editor of Biomaterials: Principles and Practices.[1] From 2016-2018 she served as co-chair of AIMBE Women; in 2016 conference co-chair of the 90th American Chemical Society's Colloid and Surface Science Symposium; and in 2017 as a Volume Organizer of the Materials Research Society's (MRS) MRS Bulletin. She is on the editorial board of several journals and is Associate Editor (the Americas) for the journal Drug Delivery and Translational Research. In 2018 she was elected to the Council of the Tissue Engineering Regenerative Medicine International Society (TERMIS) - North America.[citation needed]
At Boston University, Wong is the Inaugural Director of the Provost's Initiative to promote gender equality and inclusion in STEM at all levels: Advance, Recruit, Retain and Organize Women in STEM (ARROWS).[41][42] The program advocates for women in STEM at all career stages, from early school education to K–12 and academia.[41] It works on both the Charles River and Boston University School of Medicine campuses.[41]
In 2016, Wong – together with Julie Chen and Paula Rayman of U Mass Lowell – approached the AAAS with an idea for the STEM Equity Achievement (SEA) Change Awards for diversity, equity and inclusion in higher-ed institutions, which, as of 2018, is in the bronze pilot stage.[43] The idea was inspired by the Athena SWAN program in the UK and the National Science Foundation ADVANCE program.
^ abWong, Joyce Y.; Leach, Jennie B.; Brown, Xin Q. (2004-10-10). "Balance of chemistry, topography, and mechanics at the cell–biomaterial interface: Issues and challenges for assessing the role of substrate mechanics on cell response". Surface Science. 570 (1–2): 119–133. Bibcode:2004SurSc.570..119W. doi:10.1016/j.susc.2004.06.186. ISSN0039-6028.
^Wong, Joyce Y.; Velasco, Alan; Rajagopalan, Padmavathy; Pham, Quynh (2003-03-01). "Directed Movement of Vascular Smooth Muscle Cells on Gradient-Compliant Hydrogels". Langmuir. 19 (5): 1908–1913. doi:10.1021/la026403p. ISSN0743-7463.
^Zaari, N.; Rajagopalan, P.; Kim, S. K.; Engler, A. J.; Wong, J. Y. (2004). "Photopolymerization in Microfluidic Gradient Generators: Microscale Control of Substrate Compliance to Manipulate Cell Response". Advanced Materials. 16 (23–24): 2133–2137. Bibcode:2004AdM....16.2133Z. doi:10.1002/adma.200400883. ISSN1521-4095. S2CID135688441.
^Sazonova, Olga V. (2011). Cell-cell interactions and extracellular matrix presentation mediate the effects of substrate stiffness on vascular smooth muscle cell behavior. OCLC796017358.
^Park, Yoonjee; Whitaker, Ragnhild D.; Nap, Rikkert J.; Paulsen, Jeffrey L.; Mathiyazhagan, Vidhya; Doerrer, Linda H.; Song, Yi-Qiao; Hürlimann, Martin D.; Szleifer, Igal (2012-04-03). "Stability of Superparamagnetic Iron Oxide Nanoparticles at Different pH Values: Experimental and Theoretical Analysis". Langmuir. 28 (15): 6246–6255. doi:10.1021/la204628c. ISSN0743-7463. PMID22409538.
^Park, Yoonjee C.; Paulsen, Jeffrey; Nap, Rikkert J.; Whitaker, Ragnhild D.; Mathiyazhagan, Vidhya; Song, Yi-Qiao; Hürlimann, Martin; Szleifer, Igal; Wong, Joyce Y. (2014-01-14). "Adsorption of Superparamagnetic Iron Oxide Nanoparticles on Silica and Calcium Carbonate Sand". Langmuir. 30 (3): 784–792. doi:10.1021/la404387t. ISSN0743-7463. PMID24393031.
^Nap, Rikkert J.; Park, Yoonjee; Wong, Joyce Y.; Szleifer, I. (2013-11-11). "Adsorption of Acid and Polymer Coated Nanoparticles: A Statistical Thermodynamics Approach". Langmuir. 29 (47): 14482–14493. doi:10.1021/la403143a. ISSN0743-7463. PMID24143965.
^Barthel, W.; Markwardt, F. (1975-10-15). "Aggregation of blood platelets by adrenaline and its uptake". Biochemical Pharmacology. 24 (20): 1903–1904. doi:10.1016/0006-2952(75)90415-3. ISSN0006-2952. PMID20.
^Isaac, O.; Thiemer, K. (September 1975). "[Biochemical studies on camomile components/III. In vitro studies about the antipeptic activity of (--)-alpha-bisabolol (author's transl)]". Arzneimittel-Forschung. 25 (9): 1352–1354. ISSN0004-4172. PMID21.