scholarly journals Frontiers in Cardiovascular Biology: a forum for exploratory basic science and translational research from the ESC Council for Basic Cardiovascular Sciences

2016 ◽  
Vol 111 (2) ◽  
pp. 119-119
Author(s):  
Elisabetta Cerbai ◽  
Karin R. Sipido ◽  
Lina Badimon
2008 ◽  
Vol 23 (2) ◽  
pp. 97-107 ◽  
Author(s):  
◽  
Binith Cheeran ◽  
Leonardo Cohen ◽  
Bruce Dobkin ◽  
Gary Ford ◽  
...  

Background. Major advances during the past 50 years highlight the immense potential for restoration of function after neural injury, even in the damaged adult human brain. Yet, the translation of these advances into clinically useful treatments is painstakingly slow. Objective. Here, we consider why the traditional model of a “translational research pipeline” that transforms basic science into novel clinical practice has failed to improve rehabilitation practice for people after stroke. Results. We find that (1) most treatments trialed in vitro and in animal models have not yet resulted in obviously useful functional gains in patients; (2) most clinical trials of restorative treatments after stroke have been limited to small-scale studies; (3) patient recruitment for larger clinical trials is difficult; (4) the determinants of patient outcomes and what patients want remain complex and ill-defined, so that basic scientists have no clear view of the clinical importance of the problems that they are addressing; (5) research in academic neuroscience centers is poorly integrated with practice in front-line hospitals and the community, where the majority of patients are treated; and (6) partnership with both industry stakeholders and patient pressure groups is poorly developed, at least in the United Kingdom where research in the translational restorative neurosciences in stroke depends on public sector research funds and private charities. Conclusions. We argue that interaction between patients, front-line clinicians, and clinical and basic scientists is essential so that they can explore their different priorities, skills, and concerns. These interactions can be facilitated by funding research consortia that include basic and clinical scientists, clinicians and patient/carer representatives with funds targeted at those impairments that are major determinants of patient and carer outcomes. Consortia would be instrumental in developing a lexicon of common methods, standardized outcome measures, data sharing and long-term goals. Interactions of this sort would create a research-friendly, rather than only target-led, culture in front-line stroke rehabilitation services.


Author(s):  
Boris Rubinsky

Translational research turns fundamental new science and innovations into a product that has value to the public. The process is difficult because it combines a variety of diverse disciplines and skills from basic science, clinical medicine, engineering, business, public health, laws and regulations. These areas are so wide apart that it is very difficult to combine. The author has engaged in translational research since the early 1980’s and will describe the processes, pitfalls and rewards through typical examples from his projects that include: development of imaging monitored cryosurgery from concept to treatment of hundreds of thousands of patients, transgenes in food engineering from basic science to a twenty year wait for FDA approval, microelectroporation from basic concept to incorporation of the technology by numerous companies and non-thermal irreversible electroporation from basic concept to current clinical use in over 50 hospitals and over thousand treated patients.


2019 ◽  
Vol 3 (6) ◽  
pp. 291-294
Author(s):  
Carol Feghali-Bostwick ◽  
Jillian Harvey ◽  
Carissa Hasseler ◽  
Diana Lee-Chavarria ◽  
Perry Halushka

AbstractThe mission of the National Center for Advancing Translational Science (NCATS) is to catalyze the generation of innovative methods and technologies that will enhance the development, testing, and implementation of diagnostics and therapeutics across a wide range of human diseases and conditions.1 NCATS funded a predoctoral TL1 training grant at our institution. We developed a novel team-based Translational Journal Club utilizing three-member teams to find a basic science paper and two clinical study papers that covered a single therapeutic, either a pivotal study or a dissemination and implementation study; one member of the team presented a paper on the above topics in successive weeks. In addition, the trainees attended lectures on: how to design a pivotal clinical trial, dissemination and implementation, and drug development from a basic science discovery through its approval. From these presentations, the trainees appreciated the T0 to T3/4 continuum and its challenges. They also attended sessions on how to present scientific concepts, making them better communicators. The trainees found the Translational Journal club to be very rewarding, illuminating, and providing a much better understanding of the translational research processes required to develop new therapies.


2014 ◽  
Vol 61 (3) ◽  
pp. 696-705 ◽  
Author(s):  
Tobias Boettler ◽  
Darius Moradpour ◽  
Robert Thimme ◽  
Fabien Zoulim

2009 ◽  
Vol 78 (2) ◽  
pp. 563-566 ◽  
Author(s):  
Ferric C. Fang ◽  
Arturo Casadevall

ABSTRACT The concept of translational research, which aims to facilitate the application of basic scientific discoveries in clinical and community settings, is currently in vogue. While there are powerful forces driving this trend, support for translational research must be accompanied by a robust investment in basic science, which provides the essential raw material for translation and continues to represent humanity's best hope to meet a wide range of public health challenges.


2018 ◽  
Author(s):  
Caitlin Loeffler ◽  
Aaron Karlsberg ◽  
Lana S. Martin ◽  
Eleazar Eskin ◽  
David Koslicki ◽  
...  

AbstractMetagenomics studies leverage genomic reference databases to generate discoveries in basic science and translational research. However, current microbial studies use disparate reference databases that lack consistent standards of specimen inclusion, data preparation, taxon labelling and accessibility, hindering their quality and comprehensiveness, and calling for the establishment of recommendations for reference genome database assembly. Here, we analyze existing fungal and bacterial databases and discuss guidelines for the development of a master reference database that promises to improve the quality and quantity of omics research.


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