chondrocyte

[USA]/[ˈkɒndrəʊˌsɪt]/
[UK]/[ˈkɑːndroʊˌsɪt]/
Frekvens: Meget høj

Oversættelse

n. En knoglehylceller; En celle fundet i knoglehyl, der er ansvarlig for at vedligeholde knoglehylmatrixen.

Udtryk & Fast Sammenstilling

chondrocyte differentiation

chondrocyt-differentiering

chondrocyte apoptosis

chondrocyt-apoptose

chondrocyte proliferation

chondrocyt-proliferation

chondrocyte metabolism

chondrocyt-metabolisme

chondrocyte culture

chondrocyt-kultur

chondrocyte function

chondrocyt-funktion

chondrocyte viability

chondrocyt-levetid

chondrocyte aging

chondrocyt-aldring

chondrocyte phenotype

chondrocyt-fenotype

chondrocyte matrix

chondrocyt-matrix

Eksempelsætninger

chondrocyte differentiation is regulated by various growth factors during cartilage development.

Chondrocyt-differentiering reguleres af forskellige voksefaktorer under cartilageudvikling.

abnormal chondrocyte proliferation contributes to the progression of osteoarthritis.

Abnormal chondrocyt-proliferation bidrager til forløbet af osteoartrit.

increased chondrocyte apoptosis has been observed in damaged articular cartilage.

Øget chondrocyt-apoptose er blevet observeret i skadet ledbeskyttende cartilage.

chondrocyte metabolism can be altered by inflammatory cytokines in joint disease.

Chondrocyt-metabolismen kan ændres af inflammatoriske cytokiner i ledsygdom.

maintaining the chondrocyte phenotype is essential for cartilage tissue engineering.

At bevare chondrocyt-fenotypen er afgørende for cartilagevævsteknologi.

primary chondrocyte culture is commonly used to study cartilage biology in vitro.

Primær chondrocyt-kultur bruges ofte til at studere cartilagebiologi in vitro.

chondrocyte migration plays a critical role in cartilage repair mechanisms.

Chondrocyt-migration spiller en afgørende rolle i cartilage-reparationsmekanismer.

cellular senescence in chondrocytes is associated with age-related cartilage degeneration.

Celle-senescence i chondrocyter er forbundet med aldersrelateret cartilage-degenerering.

chondrocyte matrix synthesis is crucial for maintaining the structural integrity of cartilage.

Chondrocyt-matrix syntese er afgørende for at opretholde strukturelle integritet af cartilage.

chondrocyte hypertrophy leads to vascular invasion and endochondral ossification.

Chondrocyt-hypertrofi fører til vaskulær invasion og endokondral osteogenese.

degenerative changes in chondrocytes result in reduced extracellular matrix production.

Degenerative ændringer i chondrocyter resulterer i reduceret ekstracellulær matrix produktion.

mechanical loading influences chondrocyte activity and cartilage homeostasis.

Mekanisk belastning påvirker chondrocyt-aktivitet og cartilage homeostase.

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