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1.
Int J Nurs Educ Scholarsh ; 21(1)2024 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-38842139

RESUMO

INTRODUCTION: This scoping review protocol will be used to map the evidence regarding structure and organization of formal nursing undergraduate focused academic practice partnerships in Canada and globally. DESIGN: This scoping review will adhere to guidance provided by Chapter 11 of the JBI Manual for Evidence Synthesis: Scoping Reviews guidelines and the Preferred Reporting Items for Systematic Reviews and Meta-Analyses Scoping Review extension checklist. METHODS: Evidence will be eligible for inclusion if published in English, within the last 10 years, and available in full text. Databases will be searched for published literature and unpublished grey literature. DISCUSSION: This protocol provides guidance on conducting a scoping review on formal nursing undergraduate focused academic practice partnerships. The review will enhance understanding of the structure and organization of formal nursing undergraduate focused academic practice partnerships, informing the design and work of future partnerships. This protocol is registered in the Open Science Framework https://doi.org/10.17605/OSF.IO/JCTRM.


Assuntos
Bacharelado em Enfermagem , Pesquisa em Enfermagem , Humanos , Canadá , Bacharelado em Enfermagem/organização & administração , Bacharelado em Enfermagem/métodos , Pesquisa em Enfermagem/educação
2.
Cell Mol Life Sci ; 81(1): 9, 2023 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-38099951

RESUMO

Cells and tissues display a remarkable range of plasticity and tissue-patterning activities that are emergent of complex signaling dynamics within their microenvironments. These properties, which when operating normally guide embryogenesis and regeneration, become highly disordered in diseases such as cancer. While morphogens and other molecular factors help determine the shapes of tissues and their patterned cellular organization, the parallel contributions of biophysical control mechanisms must be considered to accurately predict and model important processes such as growth, maturation, injury, repair, and senescence. We now know that mechanical, optical, electric, and electromagnetic signals are integral to cellular plasticity and tissue patterning. Because biophysical modalities underly interactions between cells and their extracellular matrices, including cell cycle, metabolism, migration, and differentiation, their applications as tuning dials for regenerative and anti-cancer therapies are being rapidly exploited. Despite this, the importance of cellular communication through biophysical signaling remains disproportionately underrepresented in the literature. Here, we provide a review of biophysical signaling modalities and known mechanisms that initiate, modulate, or inhibit plasticity and tissue patterning in models of regeneration and cancer. We also discuss current approaches in biomedical engineering that harness biophysical control mechanisms to model, characterize, diagnose, and treat disease states.


Assuntos
Neoplasias , Humanos , Transdução de Sinais , Bioengenharia , Biofísica , Comunicação Celular , Microambiente Tumoral
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