View abstracts gallery | Return to main event page | Abstracts booklet (in PDF)
No. | Name | Title | Poster | Theme/Program |
---|---|---|---|---|
1 | Albert Kamanzi |
Single-particle imaging of lipid nanoparticles for drug delivery applications |
Targeted drug delivery Gene therapy Microfluidics |
|
2 |
Alice Li |
Gene therapy | ||
3 |
Amanda Santos Palma |
The influence of lysozyme in the structural features of cubosomes: a potential drug delivery system |
Targeted drug delivery | |
4 |
Amy Wong Strilchuk |
Transient gene therapy to decrease the stability of thrombi for coagulopathy and thrombosis |
Gene therapy | |
5 |
Ana Silva |
Pessaries with progesterone-loaded nanostructured lipid carriers (NLC) for prolonged release |
Nanomedicine | |
6 |
Colin Blackadar |
Targeted drug delivery Microfluidics |
||
7 |
Cynthia Shaheen |
Diagnostics Microfluidics Drug Development & Testing Technology |
||
8 |
Enling Chang |
Targeted drug delivery Cancer treatment |
||
9 |
Eva Mueller |
Targeted drug delivery | ||
10 |
Fernando Freitas de Lima |
Development and Characterization of Lipid Nanocapsules with Attalea Phalerata Pulp Oil |
Bioactive compounds | |
11 |
Forugh Sanaee |
Targeted drug delivery Cancer treatment |
||
12 |
Jessalyn Baljon |
A Nanocarrier Platform for Enhancing Immune Responses to Neoantigen-Targeted Cancer Vaccines |
Targeted drug delivery Cancer treatment |
|
13 |
Karin Torres-Obreque |
PEGylation the key for increased thermostability of biopharmaceuticals: crisantaspase case-study |
Cancer treatment | |
14 |
Laxmi Swetha |
Targeted drug delivery Microfluidics Cancer treatment |
||
15 |
Letizia Nicoletti |
Novel lipoplexes for efficient microRNA delivery to human cardiac fibroblasts |
Gene therapy | |
16 |
Mahmoud Younis |
Targeted drug delivery Gene therapy Microfluidics Cancer treatment |
||
17 |
Maria Poley |
Targeted drug delivery Cancer treatment Women's health |
||
18 |
Marta Bergamo |
Other | ||
19 |
Maya Kaduri |
Cancer treatment | ||
20 |
Michael Halim |
Cancer treatment | ||
21 |
Muneera Beach |
Targeted drug delivery | ||
22 |
Muneera Beach |
Targeted drug delivery | ||
23 |
Natalia Sannikova |
Impact of Lipid Composition on Liposome Stability and Cannabinoid Drug Encapsulation Efficiency |
Microfluidics Hydrophobic drug delivery |
|
24 |
Noorjahan Aibani |
Targeted drug delivery | ||
25 |
Owen Daly |
PRECLINICAL EVALUATION OF A MODIFIED MRNA FOR THE TREATMENT OF OTC DEFICIENCY |
Gene therapy mRNA-LNP therapy |
|
26 |
Pamela Schimmer |
Cancer treatment | ||
27 |
Parth Patel |
Targeted drug delivery | ||
28 |
Presley MacMillan |
Targeted drug delivery Cancer treatment |
||
29 |
Richard Holland |
Targeted drug delivery | ||
30 |
Sarah Thomson |
Targeted drug delivery Gene therapy |
||
31 |
Shahla Shojaei |
A dynamic microphysiological model of placenta to study the effect of gold nanoparticles |
Targeted drug delivery Diagnostics Microfluidics |
|
32 |
Shan Zou |
Anti-Leukemia Effect by Stimulated-Macrophages in Co-Culture |
Cancer treatment | |
33 |
Songlin Yang |
Targeted drug delivery Diagnostics Microfluidics |
||
34 |
Vinod Kumar |
COVID-19 | ||
35 |
Yi-Nan Zhang |
Targeted drug delivery Vaccines |
||
36 |
Youcef Chakib Hacene |
Extraction of PEGylated nanoparticles by immunoprecipitation |
Analytical methodology | |
37 |
Agustín Picco |
Targeted drug delivery Controlled Release Nanocarriers |
||
38 |
Amir Khajavinia |
Development of an extraction method for the quantification of docetaxel loaded in PLGA nanoparticles |
Targeted drug delivery | |
39 |
Amrita Dikpati |
Targeted drug delivery | ||
41 |
Assaf Zinger |
Enhancing Inflammation Targeting Using Tunable Leukocyte-based Biomimetic Nanoparticles |
Targeted drug delivery Microfluidics Cancer treatment |
|
42 |
Avi Schroeder |
Barcoded Nanoparticles for Precision Cancer Medicine: Targeting pancreatic tumors with nanomedicine |
Targeted drug delivery Diagnostics Cancer treatment |
|
44 |
Ben Ouyang |
Targeted drug delivery Cancer treatment |
||
45 |
Christina Tan |
Time Course Study of Blood-pool and Liver Targeting Gold Nanoparticle Contrast Agents |
Nanoparticle Contrast Agents | |
46 |
Claudia Costa |
Targeted drug delivery | ||
47 |
Daniel Gonzalez-Carter |
Targeted drug delivery | ||
48 |
Giovanna Cassone Salata |
Bioresponsive Microemulsion for Prevention of Breast Cancer Development |
Cancer treatment | |
50 |
Iara Mara de Oliveira Viana |
Complement cascade and the biological fate of liposomes in rodents |
Nano-bio interface | |
51 |
Jayesh Kulkarni |
Spontaneous, solvent-free entrapment of siRNA within lipid nanoparticles |
Gene therapy Microfluidics |
|
52 |
Kieu Lam |
Lipid nanoparticles enabling specific and functional extrahepatic delivery of nucleic acids |
Targeted drug delivery | |
53 |
Lokesh Narsineni |
Development of peptide-modified gemini nanoplexes for non-viral gene delivery to the retina |
Gene therapy | |
54 |
Marilina Cathcarth |
Targeted drug delivery Protein corona Antifouling Coatings |
||
55 |
Marta Overchuk |
Photodynamic Priming as a Means of Enhancing Nanomedicine Delivery and Overcoming Tumour Desmoplasia |
Targeted drug delivery Cancer treatment |
|
56 |
Maximilian Regenold |
Drug loading levels affect in vitro release of vinorelbine from thermosensitive liposomes |
Targeted drug delivery Cancer treatment |
|
57 |
Miffy Hok Yan Cheng |
Diagnostics Cancer treatment |
||
58 |
Moe Wehbe |
Cancer treatment | ||
59 |
Philippe Grenier |
Anti-polyethylene Glycol antibodies alter the protein corona on nanoparticles and their fate in vivo |
Overcoming biological barriers | |
62 |
Abdelaziz Saafane |
Iron oxide nanoparticles: Question of nanosafety for nanomedicine applications |
Nanotoxicity | |
63 |
Stavroula Zagkou |
Targeted drug delivery | ||
64 |
Suresh Gadde |
Translational Nanomedicines for the Treatment of Triple Negative Breast Cancer |
Cancer treatment | |
65 |
Tiffany Carlaw |
Gene therapy | ||
66 |
Valentina Francia |
Exploring the Potential of a Personalized Corona in Lipid-based Nanoparticles for siRNA delivery |
Targeted drug delivery Gene therapy |
|
67 |
Siyue Yu |
Gene therapy | ||
68 |
You Xu |
Design of spray-dried TNF-α siRNA-loaded LPNs with high aerosol performance for treatment of COPD |
Targeted drug delivery | |
69 |
Alessandra Spada |
Targeted drug delivery | ||
70 |
Amir Gharib |
Targeted drug delivery | ||
71 |
Antonella Ibarguen Mejia |
Development of an LC-MS/MS Method for the Characterization of Liposomes used in Drug Delivery |
Materials characterization | |
72 |
Barbara Malheiros |
Targeted drug delivery Nanoparticles for drug delivery |
||
73 |
Carcia Carson |
Engineering Nanotechnologies to Improve Immune Responses to Personalized Cancer Vaccines |
Cancer treatment | |
74 |
Courtney van Ballegooie |
Microfluidics Cancer treatment Triggered Release |
||
75 |
Elisabet Rodriguez Llorian |
Economic Evidence on Potentially Curative Gene Therapy Products: A Systematic Review |
Gene therapy | |
76 |
Erhunmwunsee Dalton Avan |
Transferrin-Targeted Nanoparticle Delivery of ACGs: Release Kinetics and In-vitro Stability Studies |
Targeted drug delivery Cancer treatment |
|
77 |
Farahnaz Fathordoobady |
Nanoemulsion for drug delivery | ||
78 |
Heather Denroche |
Targeted drug delivery | ||
79 |
Jerry Leung |
Enhancing Platelets with Gene Therapy for More Effective Transfusions |
Gene therapy | |
80 |
Shrey Sindhwani |
Cancer treatment | ||
81 |
Letícia Ferragut Casotti |
Factorial Study of Cubic Nanostructures Formulations and Structural Characterization |
Targeted drug delivery | |
82 |
Lih Jiin Juang |
Coagulation factor XII contributes to hemostasis when activated by soil in wounds |
Natural nanoparticles & coagulation | |
83 |
Mahmoud Abdelkarim |
Microfluidics | ||
84 |
Mandy Chan |
COVID-19 | ||
86 |
Maximiliano Agazzi |
Targeted drug delivery Cancer treatment |
||
87 |
Mayra Lotierzo |
Micellar to cubic transition in phytanthriol based nanoparticles |
Targeted drug delivery | |
89 |
Niloy Chatterjee |
NANOMEDICINE-AN UNEXPLORED THERAPEUTIC REALM AGAINST COVID-19 |
COVID-19 | |
90 |
Santiago Esteban Herrera |
Targeted drug delivery | ||
91 |
Sara Abd El- Hafeez |
Controlled release | ||
92 |
Sara Anselmo |
Effect of cholesterol on the interaction between amphyphylic peptides and liposomes |
Other | |
93 |
Victor Passos Gibson |
Survivin-targeted siRNA sensitizes retinoblastoma primary cells to Melphalan and Carboplatin |
Gene therapy | |
94 |
Wesley Walker |
Bacteriopheophorbide nanoemulsions as photodynamic therapy agents |
Cancer treatment | |
95 |
Xin Ye |
Development of HSD17B13 Targeting siRNA-GalNAc as a Potential Therapy for Fibrosis in NASH |
Targeted drug delivery | |
96 |
Zahra Eivazi Zadeh |
Antibacterial agents | ||
97 |
Igor M. Paiva |
|||
98 |
Nashmia Zia |
Targeted drug delivery, Cancer treatment | ||
99 |
Nashmia Zia |
Diagnostics, SPECT nano-radiopharmaceutical |