Titre : Conformation des protéines

Conformation des protéines : Questions médicales fréquentes

Termes MeSH sélectionnés :

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Questions fréquentes et termes MeSH associés

Diagnostic 5

#1

Comment diagnostiquer une anomalie de conformation protéique ?

Des techniques comme la spectroscopie RMN et la cristallographie aux rayons X sont utilisées.
Protéines Spectroscopie Cristallographie
#2

Quels tests sont utilisés pour évaluer la conformation des protéines ?

Les tests incluent la chromatographie et l'électrophorèse sur gel.
Électrophorèse Chromatographie Protéines
#3

Quels marqueurs biologiques indiquent des problèmes de conformation ?

Des biomarqueurs comme les protéines mal repliées peuvent être détectés dans le sang.
Biomarqueurs Protéines Maladies protéiques
#4

Peut-on utiliser l'imagerie pour diagnostiquer des anomalies protéiques ?

Oui, l'imagerie par résonance magnétique peut aider à visualiser des anomalies.
Imagerie par résonance magnétique Protéines Diagnostic
#5

Quels symptômes cliniques peuvent indiquer une anomalie de conformation ?

Des symptômes comme la fatigue, la douleur articulaire ou des troubles neurologiques peuvent survenir.
Symptômes Protéines Maladies

Symptômes 5

#1

Quels symptômes sont associés aux maladies de conformation protéique ?

Les symptômes varient, incluant troubles neurologiques, douleurs et fatigue.
Symptômes Maladies protéiques Troubles neurologiques
#2

Comment les anomalies de conformation affectent-elles le corps ?

Elles peuvent entraîner des dysfonctionnements cellulaires et des maladies dégénératives.
Dysfonctionnement cellulaire Maladies dégénératives Protéines
#3

Les troubles cognitifs peuvent-ils être liés à des anomalies protéiques ?

Oui, certaines maladies comme Alzheimer sont liées à des protéines mal repliées.
Alzheimer Protéines Troubles cognitifs
#4

Quels signes cliniques indiquent une maladie de prion ?

Des signes incluent des troubles neurologiques rapides et des changements de comportement.
Maladie de prion Troubles neurologiques Comportement
#5

Les douleurs musculaires peuvent-elles être causées par des anomalies protéiques ?

Oui, des maladies comme la myopathie peuvent résulter de protéines mal conformées.
Myopathie Douleurs musculaires Protéines

Prévention 5

#1

Comment prévenir les maladies liées à la conformation des protéines ?

Une alimentation équilibrée, l'exercice et l'évitement de toxines peuvent aider.
Prévention Alimentation Exercice
#2

Les tests génétiques peuvent-ils aider à prévenir des maladies protéiques ?

Oui, ils permettent d'identifier les prédispositions génétiques aux maladies protéiques.
Tests génétiques Prédispositions Maladies protéiques
#3

L'éducation sur les maladies protéiques est-elle importante ?

Oui, elle aide à reconnaître les symptômes précoces et à chercher un traitement.
Éducation Symptômes Traitement
#4

Les vaccinations peuvent-elles prévenir des maladies liées aux protéines ?

Certaines vaccinations peuvent réduire le risque d'infections qui affectent les protéines.
Vaccinations Infections Protéines
#5

Le stress peut-il influencer la conformation des protéines ?

Oui, le stress oxydatif peut perturber le repliement des protéines et causer des maladies.
Stress oxydatif Protéines Maladies

Traitements 5

#1

Quels traitements existent pour les maladies liées à la conformation protéique ?

Les traitements incluent des thérapies géniques, des médicaments et des approches symptomatiques.
Thérapie génique Médicaments Maladies protéiques
#2

Peut-on corriger la conformation des protéines par des médicaments ?

Oui, certains médicaments peuvent stabiliser ou corriger le repliement des protéines.
Médicaments Protéines Repliement
#3

Les thérapies biologiques sont-elles efficaces contre les anomalies protéiques ?

Oui, elles peuvent cibler des protéines spécifiques et améliorer la fonction cellulaire.
Thérapies biologiques Protéines Fonction cellulaire
#4

Quels rôles jouent les chaperonnes dans le traitement des maladies protéiques ?

Les chaperonnes aident à replier correctement les protéines, réduisant les agrégats.
Chaperonnes Protéines Agrégats
#5

Les approches diététiques peuvent-elles influencer la conformation des protéines ?

Oui, une alimentation riche en antioxydants peut aider à maintenir la santé protéique.
Alimentation Antioxydants Protéines

Complications 5

#1

Quelles complications peuvent survenir avec des anomalies protéiques ?

Des complications incluent des maladies neurodégénératives et des troubles métaboliques.
Complications Maladies neurodégénératives Troubles métaboliques
#2

Les maladies de prion entraînent-elles des complications graves ?

Oui, elles peuvent causer des démences rapides et des troubles neurologiques sévères.
Maladies de prion Démences Troubles neurologiques
#3

Comment les anomalies protéiques affectent-elles le système immunitaire ?

Elles peuvent altérer la réponse immunitaire, rendant l'organisme plus vulnérable.
Système immunitaire Anomalies protéiques Vulnérabilité
#4

Les complications cardiovasculaires sont-elles liées à des anomalies protéiques ?

Oui, certaines protéines mal conformées peuvent contribuer à des maladies cardiovasculaires.
Complications cardiovasculaires Protéines Maladies
#5

Les troubles métaboliques peuvent-ils résulter d'anomalies protéiques ?

Oui, des protéines mal repliées peuvent perturber le métabolisme et causer des troubles.
Troubles métaboliques Protéines Perturbation

Facteurs de risque 5

#1

Quels facteurs de risque sont associés aux maladies protéiques ?

Les facteurs incluent des prédispositions génétiques, l'âge et l'exposition à des toxines.
Facteurs de risque Prédispositions génétiques Toxines
#2

Le vieillissement est-il un facteur de risque pour les anomalies protéiques ?

Oui, le vieillissement peut affecter le repliement et la fonction des protéines.
Vieillissement Protéines Anomalies
#3

L'alimentation influence-t-elle le risque de maladies protéiques ?

Oui, une alimentation pauvre en nutriments essentiels peut augmenter le risque.
Alimentation Nutriments Risque
#4

Le stress environnemental peut-il affecter la conformation des protéines ?

Oui, des facteurs comme la pollution peuvent perturber le repliement des protéines.
Stress environnemental Pollution Protéines
#5

Les infections virales sont-elles un facteur de risque pour les maladies protéiques ?

Oui, certaines infections peuvent induire des modifications dans la conformation des protéines.
Infections virales Maladies protéiques Protéines
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"name": "Comment les anomalies de conformation affectent-elles le corps ?", "position": 7, "acceptedAnswer": { "@type": "Answer", "text": "Elles peuvent entraîner des dysfonctionnements cellulaires et des maladies dégénératives." } }, { "@type": "Question", "name": "Les troubles cognitifs peuvent-ils être liés à des anomalies protéiques ?", "position": 8, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines maladies comme Alzheimer sont liées à des protéines mal repliées." } }, { "@type": "Question", "name": "Quels signes cliniques indiquent une maladie de prion ?", "position": 9, "acceptedAnswer": { "@type": "Answer", "text": "Des signes incluent des troubles neurologiques rapides et des changements de comportement." } }, { "@type": "Question", "name": "Les douleurs musculaires peuvent-elles être causées par des anomalies protéiques ?", "position": 10, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des maladies comme la myopathie peuvent résulter de protéines mal conformées." } }, { "@type": "Question", "name": "Comment prévenir les maladies liées à la conformation des protéines ?", "position": 11, "acceptedAnswer": { "@type": "Answer", "text": "Une alimentation équilibrée, l'exercice et l'évitement de toxines peuvent aider." } }, { "@type": "Question", "name": "Les tests génétiques peuvent-ils aider à prévenir des maladies protéiques ?", "position": 12, "acceptedAnswer": { "@type": "Answer", "text": "Oui, ils permettent d'identifier les prédispositions génétiques aux maladies protéiques." } }, { "@type": "Question", "name": "L'éducation sur les maladies protéiques est-elle importante ?", "position": 13, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elle aide à reconnaître les symptômes précoces et à chercher un traitement." } }, { "@type": "Question", "name": "Les vaccinations peuvent-elles prévenir des maladies liées aux protéines ?", "position": 14, "acceptedAnswer": { "@type": "Answer", "text": "Certaines vaccinations peuvent réduire le risque d'infections qui affectent les protéines." } }, { "@type": "Question", "name": "Le stress peut-il influencer la conformation des protéines ?", "position": 15, "acceptedAnswer": { "@type": "Answer", "text": "Oui, le stress oxydatif peut perturber le repliement des protéines et causer des maladies." } }, { "@type": "Question", "name": "Quels traitements existent pour les maladies liées à la conformation protéique ?", "position": 16, "acceptedAnswer": { "@type": "Answer", "text": "Les traitements incluent des thérapies géniques, des médicaments et des approches symptomatiques." } }, { "@type": "Question", "name": "Peut-on corriger la conformation des protéines par des médicaments ?", "position": 17, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certains médicaments peuvent stabiliser ou corriger le repliement des protéines." } }, { "@type": "Question", "name": "Les thérapies biologiques sont-elles efficaces contre les anomalies protéiques ?", "position": 18, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elles peuvent cibler des protéines spécifiques et améliorer la fonction cellulaire." } }, { "@type": "Question", "name": "Quels rôles jouent les chaperonnes dans le traitement des maladies protéiques ?", "position": 19, "acceptedAnswer": { "@type": "Answer", "text": "Les chaperonnes aident à replier correctement les protéines, réduisant les agrégats." } }, { "@type": "Question", "name": "Les approches diététiques peuvent-elles influencer la conformation des protéines ?", "position": 20, "acceptedAnswer": { "@type": "Answer", "text": "Oui, une alimentation riche en antioxydants peut aider à maintenir la santé protéique." } }, { "@type": "Question", "name": "Quelles complications peuvent survenir avec des anomalies protéiques ?", "position": 21, "acceptedAnswer": { "@type": "Answer", "text": "Des complications incluent des maladies neurodégénératives et des troubles métaboliques." } }, { "@type": "Question", "name": "Les maladies de prion entraînent-elles des complications graves ?", "position": 22, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elles peuvent causer des démences rapides et des troubles neurologiques sévères." } }, { "@type": "Question", "name": "Comment les anomalies protéiques affectent-elles le système immunitaire ?", "position": 23, "acceptedAnswer": { "@type": "Answer", "text": "Elles peuvent altérer la réponse immunitaire, rendant l'organisme plus vulnérable." } }, { "@type": "Question", "name": "Les complications cardiovasculaires sont-elles liées à des anomalies protéiques ?", "position": 24, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines protéines mal conformées peuvent contribuer à des maladies cardiovasculaires." } }, { "@type": "Question", "name": "Les troubles métaboliques peuvent-ils résulter d'anomalies protéiques ?", "position": 25, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des protéines mal repliées peuvent perturber le métabolisme et causer des troubles." } }, { "@type": "Question", "name": "Quels facteurs de risque sont associés aux maladies protéiques ?", "position": 26, "acceptedAnswer": { "@type": "Answer", "text": "Les facteurs incluent des prédispositions génétiques, l'âge et l'exposition à des toxines." } }, { "@type": "Question", "name": "Le vieillissement est-il un facteur de risque pour les anomalies protéiques ?", "position": 27, "acceptedAnswer": { "@type": "Answer", "text": "Oui, le vieillissement peut affecter le repliement et la fonction des protéines." } }, { "@type": "Question", "name": "L'alimentation influence-t-elle le risque de maladies protéiques ?", "position": 28, "acceptedAnswer": { "@type": "Answer", "text": "Oui, une alimentation pauvre en nutriments essentiels peut augmenter le risque." } }, { "@type": "Question", "name": "Le stress environnemental peut-il affecter la conformation des protéines ?", "position": 29, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des facteurs comme la pollution peuvent perturber le repliement des protéines." } }, { "@type": "Question", "name": "Les infections virales sont-elles un facteur de risque pour les maladies protéiques ?", "position": 30, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines infections peuvent induire des modifications dans la conformation des protéines." } } ] } ] }
Dr Olivier Menir

Contenu validé par Dr Olivier Menir

Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale


Validation scientifique effectuée le 25/02/2025

Contenu vérifié selon les dernières recommandations médicales

Sous-catégories

60 au total
└─

Éléments structuraux des protéines

Protein Structural Elements D000072416 - G02.111.570.820.709.275
└─

Structure quaternaire des protéines

Protein Structure, Quaternary D020836 - G02.111.570.820.709.550
└─

Structure secondaire des protéines

Protein Structure, Secondary D017433 - G02.111.570.820.709.600
└─

Structure tertiaire des protéines

Protein Structure, Tertiary D017434 - G02.111.570.820.709.610
└─└─└─

Motifs AT-hook

AT-Hook Motifs D024761 - G02.111.570.820.709.275.500.050
└─└─└─

Motifs de knottins

Cystine Knot Motifs D047168 - G02.111.570.820.709.275.500.127
└─└─└─

Motifs F-box

F-Box Motifs D044782 - G02.111.570.820.709.275.500.205
└─└─└─

Motifs à hélice-boucle-hélice

Helix-Loop-Helix Motifs D018257 - G02.111.570.820.709.275.500.360
└─└─└─

Motif d'activation de l'immunorécepteur dépendant de la tyrosine

Immunoreceptor Tyrosine-Based Activation Motif D061625 - G02.111.570.820.709.275.500.440
└─└─└─

Motif d'inhibition de l'immunorécepteur dépendant de la tyrosine

Immunoreceptor Tyrosine-Based Inhibition Motif D061626 - G02.111.570.820.709.275.500.480
└─└─└─

Motifs kazal

Kazal Motifs D000074161 - G02.111.570.820.709.275.500.490
└─└─└─

Glissières à leucine

Leucine Zippers D016350 - G02.111.570.820.709.275.500.520
└─└─└─

Motif de liaison au poly-ADP-ribose

Poly-ADP-Ribose Binding Motif D000075225 - G02.111.570.820.709.275.500.695
└─└─└─

Motifs de liaison à l'ARN

RNA-Binding Motifs D000071376 - G02.111.570.820.709.275.500.869
└─└─└─

Domaine AAA

AAA Domain D000074182 - G02.111.570.820.709.275.500.913
└─└─└─

Doigts de zinc

Zinc Fingers D016335 - G02.111.570.820.709.275.500.985
└─└─└─

Domaines C2

C2 Domains D000070538 - G02.111.570.820.709.275.750.125
└─└─└─

Modules de liaison au carbohydrate

Carbohydrate Binding Modules D000094342 - G02.111.570.820.709.275.750.157
└─└─└─

Domaine catalytique

Catalytic Domain D020134 - G02.111.570.820.709.275.750.188
└─└─└─

Domaine discoïdine

Discoidin Domain D000070822 - G02.111.570.820.709.275.750.219
└─└─└─

Domaines à boîtes HMG

HMG-Box Domains D024742 - G02.111.570.820.709.275.750.235
└─└─└─

Domaines immunoglobuline

Immunoglobulin Domains D000070557 - G02.111.570.820.709.275.750.250
└─└─└─

Kringles

Kringles D018082 - G02.111.570.820.709.275.750.375
└─└─└─

Domaine de liaison aux méthyl-CpG

Methyl CpG Binding Domain D000070593 - G02.111.570.820.709.275.750.438
└─└─└─

Domaines homologues de la pleckstrine

Pleckstrin Homology Domains D000070539 - G02.111.570.820.709.275.750.469
└─└─└─

Domaines PR-SET

PR-SET Domains D000074463 - G02.111.570.820.709.275.750.477
└─└─└─

Domaines de protéine riches en proline

Proline-Rich Protein Domains D055232 - G02.111.570.820.709.275.750.485
└─└─└─

Motifs et domaines d'intéraction protéique

Protein Interaction Domains and Motifs D054730 - G02.111.570.820.709.275.750.500
└─└─└─

Répétition ankyrine

Ankyrin Repeat D017089 - G02.111.570.820.709.275.875.030
└─└─└─

Répétition kelch

Kelch Repeat D000071776 - G02.111.570.820.709.275.875.273
└─└─└─

Répétition tétratricopeptide

Tetratricopeptide Repeat D000074436 - G02.111.570.820.709.275.875.394
└─└─└─

Répétitions WD40

WD40 Repeats D000071678 - G02.111.570.820.709.275.875.515
└─└─└─└─

Motifs EF Hands

EF Hand Motifs D020832 - G02.111.570.820.709.275.500.360.240
└─└─└─└─

Motifs à hélice-tour-hélice

Helix-Turn-Helix Motifs D019077 - G02.111.570.820.709.275.500.360.360
└─└─└─└─

Motif de liaison à l'ARN double brin

Double-Stranded RNA Binding Motif D000071241 - G02.111.570.820.709.275.500.869.250
└─└─└─└─

Motif de reconnaissance de l'ARN

RNA Recognition Motif D000071377 - G02.111.570.820.709.275.500.869.500
└─└─└─└─

Doigts de zinc CYS2-HIS2

CYS2-HIS2 Zinc Fingers D000070580 - G02.111.570.820.709.275.500.985.250
└─└─└─└─

Doigts de zinc PHD

PHD Zinc Fingers D000075925 - G02.111.570.820.709.275.500.985.438
└─└─└─└─

Domaine fibronectine de type III

Fibronectin Type III Domain D000071238 - G02.111.570.820.709.275.750.250.500
└─└─└─└─

Domaine B30.2-SPRY

B30.2-SPRY Domain D000071197 - G02.111.570.820.709.275.750.500.290
└─└─└─└─

Domaine BTB-POZ

BTB-POZ Domain D000071757 - G02.111.570.820.709.275.750.500.343
└─└─└─└─

Superfamille des domaines de mort

Death Domain Superfamily D000071458 - G02.111.570.820.709.275.750.500.395
└─└─└─└─

Domaines FERM

FERM Domains D000075926 - G02.111.570.820.709.275.750.500.422
└─└─└─└─

Domaines MYND

MYND Domains D000074608 - G02.111.570.820.709.275.750.500.474
└─└─└─└─

Domaines PDZ

PDZ Domains D054731 - G02.111.570.820.709.275.750.500.500
└─└─└─└─

Domaines à doigts de zinc de type RING

RING Finger Domains D054829 - G02.111.570.820.709.275.750.500.625
└─└─└─└─

Domaine d'homologie SRC

src Homology Domains D018909 - G02.111.570.820.709.275.750.500.750
└─└─└─└─

Motif stérile alpha

Sterile Alpha Motif D000071682 - G02.111.570.820.709.275.750.500.813
└─└─└─└─

Domaine Tudor

Tudor Domain D000071856 - G02.111.570.820.709.275.750.500.844
└─└─└─└─

Domaines WW

WW Domains D000074585 - G02.111.570.820.709.275.750.500.937
└─└─└─└─└─

Motif ETS

ETS Motif D000071419 - G02.111.570.820.709.275.500.360.360.500
└─└─└─└─└─

Domaine d'activation et de recrutement des caspases

Caspase Activation and Recruitment Domain D000071476 - G02.111.570.820.709.275.750.500.395.250
└─└─└─└─└─

Domaine de mort

Death Domain D000071459 - G02.111.570.820.709.275.750.500.395.500
└─└─└─└─└─

Domaine effecteur de mort

Death Effector Domain D000071461 - G02.111.570.820.709.275.750.500.395.750
└─└─└─└─└─

Domaine pyrine

Pyrin Domain D000071196 - G02.111.570.820.709.275.750.500.395.875
└─└─

Séquences répétées d'acides aminés

Repetitive Sequences, Amino Acid D020449 - G02.111.570.820.709.275.875
└─└─

Structure en hélice alpha

Protein Conformation, alpha-Helical D000072756 - G02.111.570.820.709.600.020
└─└─

Motifs d'acides aminés

Amino Acid Motifs D020816 - G02.111.570.820.709.600.500
└─└─

Structure en brin bêta

Protein Conformation, beta-Strand D000072757 - G02.111.570.820.709.600.750
└─└─

Domaines protéiques

Protein Domains D000072417 - G02.111.570.820.709.610.500

Auteurs principaux

Maria Silvina Fornasari

2 publications dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina.
Publications dans "Conformation des protéines" :

Diego Javier Zea

2 publications dans cette catégorie

Affiliations :
  • Structural Bioinformatics Unit, Fundación Instituto Leloir, CONICET, Buenos Aires, Argentina.
Publications dans "Conformation des protéines" :

Gustavo Parisi

2 publications dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina. gusparisi@gmail.com.
Publications dans "Conformation des protéines" :

Attila Gursoy

2 publications dans cette catégorie

Affiliations :
  • Computer Science and Engineering Department, Koc University, Istanbul, Turkey. agursoy@ku.edu.tr.

Ozlem Keskin

2 publications dans cette catégorie

Affiliations :
  • Chemical and Biological Engineering Department, Koc University, Istanbul, Turkey.

Ming Dong

2 publications dans cette catégorie

Affiliations :
  • Department of Chemistry, North Carolina Agricultural and Technical State University, Greensboro, NC, USA.
Publications dans "Conformation des protéines" :

David Baker

2 publications dans cette catégorie

Affiliations :
  • Department of Biochemistry, University of Washington, Seattle, WA 98105; dabaker@uw.edu so@fas.harvard.edu.
  • Institute for Protein Design, University of Washington, Seattle, WA 98105.
  • Howard Hughes Medical Institute, University of Washington, Seattle, WA 98105.
Publications dans "Conformation des protéines" :

Hao Tian

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Sian Xiao

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Peng Tao

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Alexander Miguel Monzon

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina.
Publications dans "Conformation des protéines" :

H A Scheraga

1 publication dans cette catégorie

Affiliations :
  • Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York, USA.
Publications dans "Conformation des protéines" :

S Rackovsky

1 publication dans cette catégorie

Affiliations :
  • Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York, USA.
  • Department of Biochemistry and Biophysics, University of Rochester School of Medicine and Dentistry, Rochester, New York, USA.
Publications dans "Conformation des protéines" :

Avner Schlessinger

1 publication dans cette catégorie

Affiliations :
  • Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, New York, United States.
Publications dans "Conformation des protéines" :

Massimiliano Bonomi

1 publication dans cette catégorie

Affiliations :
  • Department of Structural Biology and Chemistry, Institut Pasteur, Université Paris Cité, Paris, France.
Publications dans "Conformation des protéines" :

Michael Assfalg

1 publication dans cette catégorie

Affiliations :
  • Department of Biotechnology, University of Verona, 37134 Verona, Italy.
Publications dans "Conformation des protéines" :

Diego S Vazquez

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Pamela L Toledo

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Alejo R Gianotti

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Mario R Ermácora

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Sources (10000 au total)

Assessment of Mobile Health Applications for Management of Knee and/or Hip Osteoarthritis Using the Mobile Application Rating Scale.

Mobile health applications (apps) can help individuals with knee and/or hip osteoarthritis (OA) learn about, monitor, and manage their condition. These apps have not been formally evaluated.... The aim of this study was to evaluate the publicly available mobile health apps for individuals with knee and/or hip OA using a systematic review.... We searched the Apple App Store, Android Google Play, and Amazon Appstore using the terms "arthritis," "osteoarthritis," "hip OA," "knee OA," "hip," "knee," "rehabilitation," "rehab," and "physical th... Among 1104 identified apps, 94 met the inclusion/exclusion criteria for MARS appraisal. Fourteen apps met the predetermined score thresholds for final summary. Of the 14 apps appraised, the total over... The majority of the apps we identified for knee and/or hip OA did not meet predetermined score thresholds for final summary. Many failed to provide comprehensive education and deliver management plans...

Mobile applications in gastrointestinal surgery: a systematic review.

Mobile applications can facilitate or improve gastrointestinal surgical care by benefiting patients, healthcare providers, or both. The extent to which applications are currently in use in gastrointes... The PubMed, EMBASE and Cochrane databases were searched for articles up to October 6th 2022. Articles were considered eligible if they assessed or described mobile applications used in a gastrointesti... Thirty-eight articles describing twenty-nine applications were included. The applications were classified into seven categories: monitoring, weight loss, postoperative recovery, education, communicati... The interest for applications and their use in gastrointestinal surgery is increasing. From our study, it appears that most studies using applications fail to report adequate clinical evaluation, and ...

Design and evaluation of a colon cancer mobile application.

Colorectal cancer (CRC) is the third leading cause of cancer and the second cause of cancer-related deaths in the world. Despite the infrastructure and the availability of organized screening programs... The present research was conducted in two phases: software design and evaluation. In the first phase, the software was prepared using the cascade method. First, all the educational content related to ... In the software evaluation phase, the application was used by 204 users. In this stage, 84 (41.2%) women and 120 (58.8%) men, with an average (Standard Deviation) age of 47.53 (13.68) participated. Pa... The results of the research indicated the positive impact of the Colon Cancer Application on the abilities of the users of self-assessment of colon cancer. Therefore, based on the findings, it can be ... This study was registered in the Iranian Registry of Clinical Trials ( https://irct.behdasht.gov.ir ) on 13/2/2024, with the IRCT ID: IRCT20210131050189N9....

Are Mobile Applications in Laryngology Designed for All Patients?

Mobile applications (apps) are multiplying in laryngology, with little standardization of content, functionality, or accessibility. The purpose of this study is to evaluate the quality, functionality,... Of the 3230 apps identified from the Apple and Google Play stores, 28 patient-facing apps met inclusion criteria. Apps were evaluated using validated scales assessing quality and functionality: the Mo... Twenty-six apps (92%) had adequate quality (MARS score > 3). The mean PEMAT score was 89% for actionability and 86% for understandability. On average, apps utilized 25/33 health literate strategies. T... While most apps scored well in quality and functionality, many laryngology apps did not meet standards for health literacy. Most apps were written at a reading level above the national average, lacked...

Applications of Federated Learning in Mobile Health: Scoping Review.

The proliferation of mobile health (mHealth) applications is partly driven by the advancements in sensing and communication technologies, as well as the integration of artificial intelligence techniqu... The goal of this scoping review is to gain an understanding of FL and its potential in dealing with sensitive and heterogeneous data in mHealth applications. Through this review, various stakeholders,... We conducted a scoping review following the guidelines of PRISMA-ScR (Preferred Reporting Items for Systematic Reviews and Meta-Analyses Extension for Scoping Reviews). We searched 7 commonly used dat... A total of 1095 articles were retrieved during the database search, and 26 articles that met the inclusion criteria were included in the review. The analysis of these articles revealed 2 main applicat... This scoping review has highlighted the potential of FL as a privacy-preserving approach in mHealth applications and identified the technical limitations associated with its use. The challenges and op...

Mobile application: digital health card for deaf adolescents.

To develop a mobile health application (mHealth) accessible to deaf adolescents, based on their health card, promoting autonomy to the access to the user's health information.... This was a methodological study, divided into three stages: a questionnaire to understand the knowledge of deaf adolescents about the health card, and development of the application using videos in Br... Most deaf adolescents were not aware of the health card. The application has two interface modes: male and female card, with the particularities of each sex. Furthermore, user's data security is carri... The application provides information from the health card in text and video in Libras, according to the selected sex, promoting adolescents' autonomy in accessing health information. Future implementa...