Tag Archives: Joanne Liu

Promising antifungal treatments with targeted nanoparticles

A May 12, 2025 news item on phys.org announces some research from Brown University (Rhode Island, US) on fungus infections, Note: A link has been removed,

A team of researchers from Brown University has developed a new nanotechnology-based approach that could improve treatment of fungal infections, particularly those caused by the increasingly drug-resistant Candida species.

In a new study, the team demonstrated a method for targeting liposomes—tiny lipid-based nanoparticle drug delivery systems—directly to fungal cells. The study found that the new approach dramatically increased drug effectiveness, even against tough-to-treat fungal biofilms, without harming healthy human cells.

Candida auris is an emerging drug-resistant fungus. New research reveals a promising new way to combat it. Courtesy: Brown University [downloaded from: https://www.brown.edu/news/2025-05-12/liposomes]

A May 12, 2025 Brown University news release (also on EurekAlert), which originated the news item, provides more detail about the work, Note: A link has been removed,

“Fungal infections can be extremely difficult to treat and the drugs at doctors’ disposal are limited,” said Veronica LaMastro, a recent Ph.D. graduate in biomedical engineering at Brown and the study’s lead author. “By adding a targeting peptide on the surface of liposomes, we can better target the delivery of an anti-fungal drug to fungal cells, and increase its ability to kill those cells.”

The research, which is supported by the National Science Foundation, is published in the journal Advanced Functional Materials.

Candida species are common fungi that live harmlessly in and on the human body. But for people with weakened immune systems, including cancer patients, transplant recipients or those in intensive care, Candida can turn deadly. C. auris, in particular, has emerged as a “superbug,” spreading rapidly through health care systems and resisting many frontline drugs. Between 2017 and 2018, C. auris infections increased more than 300% in the United States alone.

To tackle this problem, the Brown team turned to liposomes, spherical nanoparticle packages made from natural and synthetic fats. These structures can carry drugs inside their hollow centers or within their fatty membranes, and can be used to improve the delivery and stability of drug therapies. The major advance in this new approach was to “decorate” the outer surface of the liposomes with a peptide — a short chain of amino acids — that is naturally attracted to Candida cells. The peptides act as a molecular homing device, helping the liposomes recognize and bind to Candida cells, LaMastro explained.

After screening several targeting peptides, the researchers found that one called penetratin was most effective in targeting Candida. The team then synthesized liposomes decorated with penetratin and containing an FDA [US Food and Drug Administration]-approved antifungal drug called posaconazole, which is currently used as a prophylactic agent to prevent Candida overgrowth.Once they had developed their targeted liposomes, the team put them to the test in a series of lab experiments. 

Lab tests showed that liposomes decorated with penetratin were significantly more likely to interact with Candida cells than standard liposomes, confirming the effectiveness of the targeting strategy. The targeted delivery system also dramatically increased the potency of the antifungal drug. It inhibited Candida growth at concentrations up to eight times lower than those required for free posaconazole and prevented biofilm formation at doses up to 1,300 times lower, the researchers found. The approach also appears to be generally safe: The targeted liposomes showed no toxicity to human cells commonly affected during infection, including cells found in skin, blood vessels, vaginal tissue and red blood cells, according to the study.

To test how well the treatment might work in a real-world infection, the team used a mouse model of intradermal C. albicans infection. Mice that received the targeted liposomes had a 60% lower fungal burden than those given regular drug-loaded liposomes, suggesting a real benefit in preventing fungal spread.

Taken together, the research suggests that targeted liposomes are a promising new method for fighting fungal infections, which are of substantial clinical importance. 

“Fungal infections are a vastly understudied area, especially in the engineering and biomaterials communities,” said Anita Shukla, a professor in Brown’s School of Engineering who directed the research in her lab. “But with rising antimicrobial resistance coupled to the increasing use of antifungals in clinical and agricultural settings, this type of work becomes more important. We hope more researchers will recognize that and do more work in this field.” 

The team plans to continue studying and expanding their method, Shukla said. This study looked at a drug that is generally used to prevent Candida infections. The team now plans to test it with drugs used to treat already-established infections.

The research was supported by the National Science Foundation (CBET-1942418). Additional co-authors were Dominique Walker, Joanne Liu and Tobias Meng-Saccoccio. 

Here’s a link to and a citation for the paper,

Peptide-Decorated Liposomes Enhance Fungal Targeting and Antifungal Drug Delivery by Veronica LaMastro, Dominique Walker, Joanne Liu, Tobias Meng-Saccoccio, Anita Shukla. Advanced Functional Materials DOI: https://doi.org/10.1002/adfm.202508570 First published: 09 May 2025

This paper is behind a paywall.

4th International Conference on Science Advice to Governments (INGSA2021) August 30 – September 2, 2021

What I find most exciting about this conference is the range of countries being represented. At first glance, I’ve found Argentina, Thailand, Senegal, Ivory Coast, Costa Rica and more in a science meeting being held in Canada. Thank you to the organizers and to the organization International Network for Government Science Advice (INGSA)

As I’ve noted many times here in discussing the science advice we (Canadians) get through the Council of Canadian Academies (CCA), there’s far too much dependence on the same old, same old countries for international expertise. Let’s hope this meeting changes things.

The conference (with the theme Build Back Wiser: Knowledge, Policy and Publics in Dialogue) started on Monday, August 30, 2021 and is set to run for four days in Montréal, Québec. and as an online event The Premier of Québec, François Legault, and Mayor of Montréal, Valérie Plante (along with Peter Gluckman, Chair of INGSA and Rémi Quirion, Chief Scientist of Québec; this is the only province with a chief scientist) are there to welcome those who are present in person.

You can find a PDF of the four day programme here or go to the INGSA 2021 website for the programme and more. Here’s a sample from the programme of what excited me, from Day 1 (August 30, 2021),

8:45 | Plenary | Roundtable: Reflections from Covid-19: Where to from here?

Moderator:
Mona Nemer – Chief Science Advisor of Canada

Speakers:
Joanne Liu – Professor, School of Population and Global Health, McGill University, Quebec, Canada
Chor Pharn Lee – Principal Foresight Strategist at Centre for Strategic Futures, Prime Minister’s Office, Singapore
Andrea Ammon – Director of the European Centre for Disease Prevention and Control, Sweden
Rafael Radi – President of the National Academy of Sciences; Coordinator of Scientific Honorary Advisory Group to the President on Covid-19, Uruguay

9:45 | Panel: Science advice during COVID-19: What factors made the difference?

Moderator:

Romain Murenzi – Executive Director, The World Academy of Sciences (TWAS), Italy

Speakers:

Stephen Quest – Director-General, European Commission’s Joint Research Centre (JRC), Belgium
Yuxi Zhang – Postdoctoral Research Fellow, Blavatnik School of Government, University of Oxford, United Kingdom
Amadou Sall – Director, Pasteur Institute of Dakar, Senegal
Inaya Rakhmani – Director, Asia Research Centre, Universitas Indonesia

One last excerpt, from Day 2 (August 31, 2021),

Studio Session | Panel: Science advice for complex risk assessment: dealing with complex, new, and interacting threats

Moderator:
Eeva Hellström – Senior Lead, Strategy and Foresight, Finnish Innovation Fund Sitra, Finland

Speakers:
Albert van Jaarsveld – Director General and Chief Executive Officer, International Institute for Applied Systems Analysis, Austria
Abdoulaye Gounou – Head, Benin’s Office for the Evaluation of Public Policies and Analysis of Government Action
Catherine Mei Ling Wong – Sociologist, LRF Institute for the Public Understanding of Risk, National University of Singapore
Andria Grosvenor – Deputy Executive Director (Ag), Caribbean Disaster Emergency Management Agency, Barbados

Studio Session | Innovations in Science Advice – Science Diplomacy driving evidence for policymaking

Moderator:
Mehrdad Hariri – CEO and President of the Canadian Science Policy Centre, Canada

Speakers:
Primal Silva – Canadian Food Inspection Agency’s Chief Science Operating Officer, Canada
Zakri bin Abdul Hamid – Chair of the South-East Asia Science Advice Network (SEA SAN); Pro-Chancellor of Multimedia University in Malaysia
Christian Arnault Emini – Senior Economic Adviser to the Prime Minister’s Office in Cameroon
Florence Gauzy Krieger and Sebastian Goers – RLS-Sciences Network [See more about RLS-Sciences below]
Elke Dall and Angela Schindler-Daniels – European Union Science Diplomacy Alliance
Alexis Roig – CEO, SciTech DiploHub – Barcelona Science and Technology Diplomacy Hub, Spain

RLS-Sciences (RLS-Sciences Network) has this description for itself on the About/Background webpage,

RLS-Sciences works under the framework of the Regional Leaders Summit. The Regional Leaders Summit (RLS) is a forum comprising seven regional governments (state, federal state, or provincial), which together represent approximately one hundred eighty million people across five continents, and a collective GDP of three trillion USD. The regions are: Bavaria (Germany), Georgia (USA), Québec (Canada), São Paulo (Brazil), Shandong (China), Upper Austria (Austria), and Western Cape (South Africa). Since 2002, the heads of government for these regions have met every two years for a political summit. These summits offer the RLS regions an opportunity for political dialogue.

Getting back to the main topic of this post, INGSA has some satellite events on offer, including this on Open Science,

Open Science: Science for the 21st century |

Science ouverte : la science au XXIe siècle

Thursday September 9, 2021; 11am-2pm EST |
Jeudi 9 septembre 2021, 11 h à 14 h (HNE).

Places Limited – Registrations Required – Click to register now

This event will be in English and French (using simultaneous translation)  | 
Cet événement se déroulera en anglais et en français (traduction simultanée)

In the past 18 months we have seen an unprecedented level of sharing as medical scientists worked collaboratively and shared data to find solutions to the COVID-19 pandemic. The pandemic has accelerated the ongoing cultural shift in research practices towards open science. 

This acceleration of the discovery/research process presents opportunities for institutions and governments to develop infrastructure, tools, funding, policies, and training to support, promote, and reward open science efforts. It also presents new opportunities to accelerate progress towards the UN Agenda 2030 Sustainable Development Goals through international scientific cooperation.

At the same time, it presents new challenges: rapid developments in open science often outpace national open science policies, funding, and infrastructure frameworks. Moreover, the development of international standard setting instruments, such as the future UNESCO Recommendation on Open Science, requires international harmonization of national policies, the establishment of frameworks to ensure equitable participation, and education, training, and professional development.

This 3-hour satellite event brings together international and national policy makers, funders, and experts in open science infrastructure to discuss these issues. 

The outcome of the satellite event will be a summary report with recommendations for open science policy alignment at institutional, national, and international levels.

The event will be hosted on an events platform, with simultaneous interpretation in English and French.  Participants will be able to choose which concurrent session they participate in upon registration. Registration is free but will be closed when capacity is reached.

This satellite event takes place in time for an interesting anniversary. The Montreal Neurological Institute (MNI), also known as Montreal Neuro, declared itself as Open Science in 2016, the first academic research institute (as far as we know) to do so in the world (see my January 22, 2016 posting for details about their open science initiative and my December 19, 2016 posting for more about their open science and their decision to not pursue patents for a five year period).

The Open Science satellite event is organized by:

The Canadian Commission for UNESCO [United Nations Educational, Scientific and Cultural Organization],

The Neuro (Montreal Neurological Institute-Hospital),

The Knowledge Equity Lab [Note: A University of Toronto initiative with Leslie Chan as director, this website is currently under maintenance]

That’s all folks (for now)!