Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 2.490
Filter
2.
Alzheimers Res Ther ; 16(1): 114, 2024 May 21.
Article in English | MEDLINE | ID: mdl-38773642

ABSTRACT

Alzheimer's disease (AD) poses a significant public health problem, affecting millions of people across the world. Despite decades of research into therapeutic strategies for AD, effective prevention or treatment for this devastating disorder remains elusive. In this review, we discuss the potential of photobiomodulation (PBM) for preventing and alleviating AD-associated pathologies, with a focus on the biological mechanisms underlying this therapy. Future research directions and guidance for clinical practice for this non-invasive and non-pharmacological therapy are also highlighted. The available evidence indicates that different treatment paradigms, including transcranial and systemic PBM, along with the recently proposed remote PBM, all could be promising for AD. PBM exerts diverse biological effects, such as enhancing mitochondrial function, mitigating the neuroinflammation caused by activated glial cells, increasing cerebral perfusion, improving glymphatic drainage, regulating the gut microbiome, boosting myokine production, and modulating the immune system. We suggest that PBM may serve as a powerful therapeutic intervention for AD.


Subject(s)
Alzheimer Disease , Low-Level Light Therapy , Alzheimer Disease/radiotherapy , Alzheimer Disease/therapy , Low-Level Light Therapy/methods , Animals , Humans , Disease Models, Animal , Translational Research, Biomedical/methods
3.
Stroke ; 55(6): 1707-1719, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38738375

ABSTRACT

Intracranial atherosclerotic disease (ICAD) is a leading cause of ischemic stroke worldwide. However, research on the pathophysiology of ICAD is scarce due to the relative inaccessibility of histology samples and the lack of comprehensive experimental models. As a result, much of the current understanding of ICAD relies on research on extracranial atherosclerosis. This approach is problematic as intracranial and extracranial arteries are anatomically, structurally, physiologically, and metabolically distinct, indicating that intracranial and extracranial atherosclerosis likely develop through different biologic pathways. The current standard of care for ICAD treatment relies predominantly on therapeutics developed to treat extracranial atherosclerosis and is insufficient given the alarmingly high risk of stroke. To provide a definitive treatment for the disease, a deeper understanding of the pathophysiology underlying ICAD is specifically required. True mechanistic understanding of disease pathogenesis is only possible using robust experimental models. In this review, we aim to identify the advantages and limitations of the existing in vivo and in vitro models of ICAD and basic atherosclerotic processes, which may be used to inform better models of ICAD in the future and drive new therapeutic strategies to reduce stroke risk.


Subject(s)
Intracranial Arteriosclerosis , Translational Research, Biomedical , Intracranial Arteriosclerosis/therapy , Humans , Translational Research, Biomedical/methods , Animals , Disease Models, Animal
4.
Am J Public Health ; 114(S5): S396-S401, 2024 May.
Article in English | MEDLINE | ID: mdl-38776498

ABSTRACT

Through a COVID-19 public health intervention implemented across sequenced research trials, we present a community engagement phased framework that embeds intervention implementation: (1) consultation and preparation, (2) collaboration and implementation, and (3) partnership and sustainment. Intervention effects included mitigation of psychological distress and a 0.28 increase in the Latinx population tested for SARS-CoV-2. We summarize community engagement activities and implementation strategies that took place across the trials to illustrate the value of the framework for public health practice and research. (Am J Public Health. 2024;114(S5):S396-S401. https://doi.org/10.2105/AJPH.2024.307669).


Subject(s)
COVID-19 , Humans , COVID-19/prevention & control , Community Participation/methods , SARS-CoV-2 , Public Health/methods , Hispanic or Latino , Translational Research, Biomedical/methods , Translational Research, Biomedical/organization & administration
5.
Sci Prog ; 107(2): 368504241253693, 2024.
Article in English | MEDLINE | ID: mdl-38752259

ABSTRACT

Nonanimal biomedical research methods have advanced rapidly over the last decade making them the first-choice model for many researchers due to improved translatability and avoidance of ethical concerns. Yet confidence in novel nonanimal methods is still being established and they remain a small portion of nonclinical biomedical research, which can lead peer reviewers to evaluate animal-free studies or grant proposals in a biased manner. This "animal methods bias" is the preference for animal-based research methods where they are not necessary or where nonanimal-based methods are suitable. It affects the fair consideration of animal-free biomedical research, hampering the uptake and dissemination of these approaches by putting pressure on researchers to conduct animal experiments and potentially perpetuating the use of poorly translatable model systems. An international team of researchers and advocates called the Coalition to Illuminate and Address Animal Methods Bias (COLAAB) aims to provide concrete evidence of the existence and consequences of this bias and to develop and implement solutions towards overcoming it. The COLAAB recently developed the first of several mitigation tools: the Author Guide for Addressing Animal Methods Bias in Publishing, which is described herein along with broader implications and future directions of this work.


Subject(s)
Animal Experimentation , Translational Research, Biomedical , Animals , Animal Experimentation/ethics , Translational Research, Biomedical/methods , Bias , Humans , Biomedical Research , Research Design
6.
Surg Oncol Clin N Am ; 33(3): 571-581, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38789199

ABSTRACT

In this article, the authors summarize the current state of translational science for esophageal and gastric cancers. The available targeted therapies, immunotherapies, and recently discovered molecular targets are reviewed. The authors introduce circulating tumor deoxyribonucleic acid and its promise as a biomarker to detect disease recurrence. The authors present patient-derived organoids as a new model for studying carcinogenesis and treatment responses. Finally, we discuss the implications of organoid models for precision oncology and describe exciting new work applying gene editing technology to organoids and studying tumor-microenvironment interactions using 3-dimensional co-culture systems.


Subject(s)
Esophageal Neoplasms , Stomach Neoplasms , Humans , Esophageal Neoplasms/genetics , Esophageal Neoplasms/therapy , Esophageal Neoplasms/pathology , Stomach Neoplasms/genetics , Stomach Neoplasms/therapy , Stomach Neoplasms/pathology , Translational Science, Biomedical/methods , Precision Medicine/methods , Organoids , Tumor Microenvironment , Animals , Translational Research, Biomedical/methods
7.
Int Rev Neurobiol ; 176: 477-524, 2024.
Article in English | MEDLINE | ID: mdl-38802181

ABSTRACT

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disorder in which selective death of motor neurons leads to muscle weakness and paralysis. Most research has focused on understanding and treating monogenic familial forms, most frequently caused by mutations in SOD1, FUS, TARDBP and C9orf72, although ALS is mostly sporadic and without a clear genetic cause. Rodent models have been developed to study monogenic ALS, but despite numerous pre-clinical studies and clinical trials, few disease-modifying therapies are available. ALS is a heterogeneous disease with complex underlying mechanisms where several genes and molecular pathways appear to play a role. One reason for the high failure rate of clinical translation from the current models could be oversimplification in pre-clinical studies. Here, we review advances in pre-clinical models to better capture the heterogeneous nature of ALS and discuss the value of novel model systems to guide translation and aid in the development of precision medicine.


Subject(s)
Amyotrophic Lateral Sclerosis , Disease Models, Animal , Amyotrophic Lateral Sclerosis/genetics , Amyotrophic Lateral Sclerosis/physiopathology , Amyotrophic Lateral Sclerosis/therapy , Animals , Humans , Translational Research, Biomedical/methods
8.
JMIR Med Educ ; 10: e53810, 2024 May 24.
Article in English | MEDLINE | ID: mdl-38801712

ABSTRACT

Unlabelled: For more than 50 years, digital technologies have been employed for the creation and distribution of knowledge in health services. In the last decade, digital social media have been developed for applications in clinical decision support and population health monitoring. Recently, these technologies have also been used for knowledge translation, such as in the process where research findings created in academic settings are established as evidence and distributed for use in clinical practice, policy making, and health self-management. To date, it has been common for medical and public health institutions to have social media accounts for the dissemination of novel research findings and to facilitate conversations about these findings. However, recent events such as the transformation of the microblog Twitter to platform X have brought to light the need for the social media industry to exploit user data to generate revenue. In this viewpoint, it is argued that a redirection of social media use is required in the translation of knowledge to action in the fields of medicine and public health. A new kind of social internet is currently forming, known as the "fediverse," which denotes an ensemble of open social media that can communicate with each other while remaining independent platforms. In several countries, government institutions, universities, and newspapers use open social media to distribute information and enable discussions. These organizations control their own channels while being able to communicate with other platforms through open standards. Examples of medical knowledge translation via such open social media platforms, where users are less exposed to disinformation than in general platforms, are also beginning to appear. The current status of the social media industry calls for a broad discussion about the use of social technologies by health institutions involving researchers and health service practitioners, academic leaders, scientific publishers, social technology providers, policy makers, and the public. This debate should not primarily take place on social media platforms but rather at universities, in scientific journals, at public seminars, and other venues, allowing for the transparent and undisturbed communication and formation of opinions.


Subject(s)
Public Health , Social Media , Humans , Public Health/methods , Information Dissemination/methods , Translational Research, Biomedical/methods
9.
J Vis Exp ; (206)2024 Apr 12.
Article in English | MEDLINE | ID: mdl-38682919

ABSTRACT

Preclinical intravital imaging such as microscopy and optical coherence tomography have proven to be valuable tools in cancer research for visualizing the tumor microenvironment and its response to therapy. These imaging modalities have micron-scale resolution but have limited use in the clinic due to their shallow penetration depth into tissue. More clinically applicable imaging modalities such as CT, MRI, and PET have much greater penetration depth but have comparatively lower spatial resolution (mm scale). To translate preclinical intravital imaging findings into the clinic, new methods must be developed to bridge this micro-to-macro resolution gap. Here we describe a dorsal skinfold window chamber tumor mouse model designed to enable preclinical intravital and clinically applicable (CT and MR) imaging in the same animal, and the image analysis platform that links these two disparate visualization methods. Importantly, the described window chamber approach enables the different imaging modalities to be co-registered in 3D using fiducial markers on the window chamber for direct spatial concordance. This model can be used for validation of existing clinical imaging methods, as well as for the development of new ones through direct correlation with "ground truth" high-resolution intravital findings. Finally, the tumor response to various treatments-chemotherapy, radiotherapy, photodynamic therapy-can be monitored longitudinally with this methodology using preclinical and clinically applicable imaging modalities. The dorsal skinfold window chamber tumor mouse model and imaging platforms described here can thus be used in a variety of cancer research studies, for example, in translating preclinical intravital microscopy findings to more clinically applicable imaging modalities such as CT or MRI.


Subject(s)
Intravital Microscopy , Magnetic Resonance Imaging , Translational Research, Biomedical , Animals , Mice , Intravital Microscopy/methods , Magnetic Resonance Imaging/methods , Translational Research, Biomedical/methods , Disease Models, Animal , Female
10.
Eur J Pharm Biopharm ; 199: 114292, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38636883

ABSTRACT

Artificial Oxygen Carriers (AOCs) have emerged as ground-breaking biomedical solutions, showcasing tremendous potential for enhancing human health and saving lives. Perfluorocarbon (PFC)-based AOCs, in particular, have garnered significant interest among researchers, leading to numerous clinical trials since the 1980 s. However, despite decades of exploration, the success rate has remained notably limited. This comprehensive review article delves into the landscape of clinical trials involving PFC compounds, shedding light on the challenges and factors contributing to the lack of clinical success with PFC nanoparticles till date. By scrutinizing the existing trials, the article aims to uncover the underlying issues like pharmacological side effects of the PFC and the nanomaterials used for the designing, complex formulation strategy and poor clinical trial designs of the formulation. More over each generation of the PFC formulation were discussed with details for their failure in the clinical trials limitations that block the path of PFC-based AOCs' full potential. Furthermore, the review emphasizes a forward-looking approach by outlining the future pathways and strategies essential for achieving success in clinical trials. AOCs require advanced yet biocompatible single-componentformulations. The new trend might be a novel drug delivery technique, like gel emulsion or reverse PFC emulsion with fluoro surfactants. Most importantly, well-planned clinical trials may end in a success story.


Subject(s)
Fluorocarbons , Nanoparticles , Oxygen , Fluorocarbons/chemistry , Humans , Nanoparticles/chemistry , Oxygen/administration & dosage , Oxygen/chemistry , Animals , Clinical Trials as Topic/methods , Translational Research, Biomedical/methods , Drug Carriers/chemistry
11.
J Vis Exp ; (206)2024 Apr 05.
Article in English | MEDLINE | ID: mdl-38647281

ABSTRACT

Organoid cell culture systems can recapitulate the complexity observed in tissues, making them useful in studying host-pathogen interactions, evaluating drug efficacy and toxicity, and tissue bioengineering. However, applying these models for the described reasons may be limited because of the three-dimensional (3D) nature of these models. For example, using 3D enteroid culture systems to study digestive diseases is challenging due to the inaccessibility of the intestinal lumen and its secreted substances. Indeed, stimulation of 3D organoids with pathogens requires either luminal microinjection, mechanical disruption of the 3D structure, or generation of apical-out enteroids. Moreover, these organoids cannot be co-cultured with immune and stromal cells, limiting in-depth mechanistic analysis into pathophysiological dynamics. To circumvent this, we optimized a bovine primary cell two-dimensional (2D) enteroid-derived monolayer culture system, allowing co-culture with other relevant cell types. Ileal crypts isolated from healthy adult cattle were cultured to generate 3D organoids that were cryopreserved for future use. A 2D monolayer was created using revived 3D enteroids that were passaged and disrupted to yield single cells, which were seeded on basement membrane extract-coated transwell cell culture inserts, thereby exposing their apical surface. The intestinal monolayer polarity, cellular differentiation, and barrier function were characterized using immunofluorescence microscopy and measuring transepithelial electrical resistance. Stimulation of the apical surface of the monolayer revealed the expected functionality of the monolayer, as demonstrated by cytokine secretion from both apical and basal compartments. The described 2D enteroid-derived monolayer model holds great promise in investigating host-pathogen interactions and intestinal physiology, drug development, and regenerative medicine.


Subject(s)
Organoids , Animals , Cattle , Organoids/cytology , Translational Research, Biomedical/methods , Cell Culture Techniques/methods , Coculture Techniques/methods , Ileum/cytology
12.
Methods Mol Biol ; 2806: 1-8, 2024.
Article in English | MEDLINE | ID: mdl-38676791

ABSTRACT

Patient-derived xenografts (PDXs) represent a critical advancement in preclinical cancer research, wherein human tumor samples are implanted into animal models for evaluation of therapeutic responses. PDXs have emerged as indispensable tools in translational cancer research, facilitating investigation into tumor microenvironments and personalized medicine. This chapter elucidates the historical evolution of PDXs, from early attempts in the eighteenth century to contemporary immunocompromised host models that enhance engraftment success.


Subject(s)
Immunocompromised Host , Translational Research, Biomedical , Humans , Animals , Translational Research, Biomedical/methods , Disease Models, Animal , Mice , Xenograft Model Antitumor Assays/methods , Neoplasms/immunology , Neoplasms/pathology , Heterografts , History, 20th Century , Precision Medicine/methods , Tumor Microenvironment/immunology , History, 21st Century
13.
Methods Mol Biol ; 2806: 153-185, 2024.
Article in English | MEDLINE | ID: mdl-38676802

ABSTRACT

Patient-derived xenografts (PDXs) are a valuable preclinical research platform generated through transplantation of a patient's resected tumor into an immunodeficient or humanized mouse. PDXs serve as a high-fidelity avatar for both precision medicine and therapeutic testing against the cancer patient's disease state. While PDXs show mixed response to initial establishment, those that successfully engraft and can be sustained with serial passaging form a useful tool for basic and translational prostate cancer (PCa) research. While genetically engineered mouse (GEM) models and human cancer cell lines, and their xenografts, each play beneficial roles in discovery science and initial drug screening, PDX tumors are emerging as the gold standard approach for therapeutic proof-of-concept prior to entering clinical trial. PDXs are a powerful platform, with PCa PDXs shown to represent the original patient tumor cell population and architecture, histopathology, genomic and transcriptomic landscape, and heterogeneity. Furthermore, PDX response to anticancer drugs in mice has been closely correlated to the original patient's susceptibility to these treatments in the clinic. Several PDXs have been established and have undergone critical in-depth characterization at the cellular and molecular level across multiple PCa tumor subtypes representing both primary and metastatic patient tumors and their inherent levels of androgen responsiveness and/or treatment resistance, including androgen-sensitive, castration resistant, and neuroendocrine PCa. Multiple PDX networks and repositories have been generated for the collaborative and shared use of these vital translational cancer tools. Here we describe the creation of a PDX maintenance colony from an established well-characterized PDX, best practice for PDX maintenance in mice, and their subsequent application in preclinical drug testing. This chapter aims to serve as a go to resource for the preparation and adoption of PCa PDX models in the research laboratory and for their use as a valuable preclinical platform for translational research and therapeutic agent development.


Subject(s)
Drug Development , Prostatic Neoplasms , Translational Research, Biomedical , Xenograft Model Antitumor Assays , Humans , Animals , Male , Prostatic Neoplasms/pathology , Prostatic Neoplasms/genetics , Prostatic Neoplasms/drug therapy , Mice , Translational Research, Biomedical/methods , Drug Development/methods , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Disease Models, Animal , Precision Medicine/methods
14.
Methods Mol Biol ; 2806: 9-18, 2024.
Article in English | MEDLINE | ID: mdl-38676792

ABSTRACT

Patient-derived xenografts (PDXs) have emerged as a pivotal tool in translational cancer research, addressing limitations of traditional methods and facilitating improved therapeutic interventions. These models involve engrafting human primary malignant cells or tissues into immunodeficient mice, allowing for the investigation of cancer mechanobiology, validation of therapeutic targets, and preclinical assessment of treatment strategies. This chapter provides an overview of PDXs methodology and their applications in both basic cancer research and preclinical studies. Despite current limitations, ongoing advancements in humanized xenochimeric models and autologous immune cell engraftment hold promise for enhancing PDX model accuracy and relevance. As PDX models continue to refine and extend their applications, they are poised to play a pivotal role in shaping the future of translational cancer research.


Subject(s)
Neoplasms , Xenograft Model Antitumor Assays , Humans , Animals , Neoplasms/pathology , Neoplasms/therapy , Neoplasms/immunology , Mice , Xenograft Model Antitumor Assays/methods , Disease Models, Animal , Heterografts , Translational Research, Biomedical/methods
15.
Int J Circumpolar Health ; 83(1): 2333075, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38590199

ABSTRACT

Numerous theories, models, and frameworks (TMFs) currently exist for knowledge translation (KT), with scholarship that is increasingly inclusive of populations experiencing health inequalities. This study proposes two objectives: 1) exploring a nine-step method for synthesising best practices, acknowledging existing syntheses in the form of tailored-databases and review-style publications; and 2) collating best practices to inform KT that is inclusive to indigenous individuals living with disabilities in circumpolar regions. The resulting synthesis emphasises 10 best practices: explicitly connect the accountability of stakeholders to the wellbeing of the people they serve; recognise entanglement with existing neoliberal systems; assess impacts of KT on indigenous treatment providers; employ personal outreach visits; rectify longstanding delegitimization; avoid assuming the target group to be homogeneous, critically examine inequitable distribution of benefits and risks; consider how emphasis on a KT initiative can distract from historical and systemic inequalities; target inequitable, systemic social and economic forces; consider how KT can also be mobilised to gain power and control; assess what is selected for KT, and how it intersects with power position of external stakeholders and internal champions; and, allow people access-to-knowledge which changes inequitable systems.


Subject(s)
Disabled Persons , Translational Science, Biomedical , Humans , Translational Research, Biomedical/methods , Population Groups
16.
Life Sci Space Res (Amst) ; 41: 100-109, 2024 May.
Article in English | MEDLINE | ID: mdl-38670636

ABSTRACT

The phrase "Bench-to-Bedside" is a well-known phrase in medicine, highlighting scientific discoveries that directly translate to impacting patient care. Key examples of translational research include identification of key molecular targets in diseases and development of diagnostic laboratory tests for earlier disease detection. Bridging these scientific advances to the bedside/clinic has played a meaningful impact in numerous patient lives. The spaceflight environment poses a unique opportunity to also make this impact; the nature of harsh extraterrestrial conditions and medically austere and remote environments push for cutting-edge technology innovation. Many of these novel technologies built for the spaceflight environment also have numerous benefits for human health on Earth. In this manuscript, we focus on "Spaceflight-to-Eye Clinic" and discuss technologies built for the spaceflight environment that eventually helped to optimize ophthalmic health on Earth (e.g., LADAR for satellite docking now utilized in eye-tracking technology for LASIK). We also discuss current technology research for spaceflight associated neuro-ocular syndrome (SANS) that may also be applied to terrestrial ophthalmic health. Ultimately, various advances made to enable to the future of space exploration have also advanced the ophthalmic health of individuals on Earth.


Subject(s)
Delivery of Health Care , Space Flight , Humans , Eye Diseases , Aerospace Medicine/methods , Translational Research, Biomedical/methods , Weightlessness , Ophthalmology/methods
17.
Cogn Affect Behav Neurosci ; 24(2): 384-387, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38459406

ABSTRACT

There is a growing focus on the computational aspects of psychiatric disorders in humans. This idea also is gaining traction in nonhuman animal studies. Commenting on a new comprehensive overview of the benefits of applying this approach in translational research by Neville et al. (Cognitive Affective & Behavioral Neuroscience 1-14, 2024), we discuss the implications for translational model validity within this framework. We argue that thinking computationally in translational psychiatry calls for a change in the way that we evaluate animal models of human psychiatric processes, with a shift in focus towards symptom-producing computations rather than the symptoms themselves. Further, in line with Neville et al.'s adoption of the reinforcement learning framework to model animal behaviour, we illustrate how this approach can be applied beyond simple decision-making paradigms to model more naturalistic behaviours.


Subject(s)
Translational Research, Biomedical , Humans , Translational Research, Biomedical/methods , Animals , Mental Disorders , Psychiatry/methods , Psychiatry/trends , Thinking/physiology , Reinforcement, Psychology , Disease Models, Animal
18.
Cogn Affect Behav Neurosci ; 24(2): 228-245, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38356013

ABSTRACT

Anxiety disorders affect millions of people worldwide and present a challenge in neuroscience research because of their substantial heterogeneity in clinical presentation. While a great deal of progress has been made in understanding the neurobiology of fear and anxiety, these insights have not led to effective treatments. Understanding the relationship between phenotypic heterogeneity and the underlying biology is a critical first step in solving this problem. We show translation, reverse translation, and computational modeling can contribute to a refined, cross-species understanding of fear and anxiety as well as anxiety disorders. More specifically, we outline how animal models can be leveraged to develop testable hypotheses in humans by using targeted, cross-species approaches and ethologically informed behavioral paradigms. We discuss reverse translational approaches that can guide and prioritize animal research in nontraditional research species. Finally, we advocate for the use of computational models to harmonize cross-species and cross-methodology research into anxiety. Together, this translational neuroscience approach will help to bridge the widening gap between how we currently conceptualize and diagnose anxiety disorders, as well as aid in the discovery of better treatments for these conditions.


Subject(s)
Anxiety Disorders , Anxiety , Neurosciences , Translational Research, Biomedical , Animals , Humans , Anxiety/physiopathology , Translational Research, Biomedical/methods , Neurosciences/methods , Anxiety Disorders/physiopathology , Disease Models, Animal , Fear/physiology
20.
Cogn Affect Behav Neurosci ; 24(2): 325-348, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38200282

ABSTRACT

Concerns about poor animal to human translation have come increasingly to the fore, in particular with regards to cognitive improvements in rodent models, which have failed to translate to meaningful clinical benefit in humans. This problem has been widely acknowledged, most recently in the field of Alzheimer's disease, although this issue pervades the spectrum of central nervous system (CNS) disorders, including neurodevelopmental, neuropsychiatric, and neurodegenerative diseases. Consequently, recent efforts have focused on improving preclinical to clinical translation by incorporating more clinically analogous outcome measures of cognition, such as touchscreen-based assays, which can be employed across species, and have great potential to minimize the translational gap. For aging-related research, it also is important to incorporate model systems that facilitate the study of the long prodromal phase in which cognitive decline begins to emerge and which is a major limitation of short-lived species, such as laboratory rodents. We posit that to improve translation of cognitive function and dysfunction, nonhuman primate models, which have conserved anatomical and functional organization of the primate brain, are necessary to move the field of translational research forward and to bridge the translational gaps. The present studies describe the establishment of a comprehensive battery of touchscreen-based tasks that capture a spectrum of domains sensitive to detecting aging-related cognitive decline, which will provide the greatest benefit through longitudinal evaluation throughout the prolonged lifespan of the marmoset.


Subject(s)
Aging , Callithrix , Translational Research, Biomedical , Animals , Aging/physiology , Translational Research, Biomedical/methods , Male , Cognition/physiology , Female , Disease Models, Animal , Neuropsychological Tests/standards , Cognition Disorders/diagnosis
SELECTION OF CITATIONS
SEARCH DETAIL
...