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Chemotherapy targets the hair-follicle vascular network but not the stem cells.

Chemotherapy targets the hair-follicle vascular network but not the stem cells. Research Abstract Details 

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  • Chemotherapy targets the hair-follicle vascular network but not the stem cells. Abstract Text:

    yasuyuki amohYasuyuki Amoh,lingna liLingna Li,kensei katsuokaKensei Katsuoka,robert m hoffmanRobert M Hoffman,

    Chemotherapy-induced alopecia is a major problem in clinical oncology. Doxorubicin, a widely used cancer chemotherapy drug, induces disruption of the hair cycle and subsequent alopecia. We show in this report that doxorubicin causes disruption of the hair-follicle-associated blood vessel network resulting in a greatly reduced density of these blood vessels. Dystrophic hair follicles were also observed with abnormal melanogenesis in the mice treated with doxorubicin. Visualization of the effect of doxorubicin on hair-follicle angiogenesis was made possible by the use of transgenic mice in which green fluorescent protein was driven by regulatory elements of the nestin gene (ND-GFP). In these transgenic mice, the hair-follicle stem cells and the follicle structure as well as the blood vessels associated with the hair follicles express ND-GFP. The hair-follicle stem cells did not appear to be affected by doxorubicin, which may explain why hair regrows after chemotherapy. These results suggest that inhibition of hair-follicle-associated angiogenesis by doxorubicin may be an important factor in hair-follicle dystrophy associated with chemotherapy-induced alopecia. The ND-GFP mouse model is thus useful for the study of the role of angiogenesis in the hair-follicle cycle and the effect of drugs on processes associated with chemotherapy-induced alopecia.

    Chemotherapy targets the hair-follicle vascular network but not the stem cells. Publishing Authors By Initials

    y amohY Amoh,l liL Li,k katsuokaK Katsuoka,rm hoffmanRM Hoffman,

    For similar cells: stem cells research abstracts see: cells: stem cells research

    PUBMED ID PMID:

    MEDLINE DATE:

    Chemotherapy targets the hair-follicle vascular network but not the stem cells. Journal Published:

    PUBLICATION TYPE: Research Support, N.I.H., Extr

    Journal: The Journal of investigative dermatology

    VOLUME: 127

    Page Numbers: 11-5

    Journal Abbreviation: J. Invest. Dermatol.

    ISSN: 1523-1747

    DAY: 13

    MONTH: 07

    YEAR: 2006

    Chemotherapy targets the hair-follicle vascular network but not the stem cells. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 426720

    Chemotherapy targets the hair-follicle vascular network but not the stem cells. Keywords Mesh Terms:

    KEYWORDS: Stem Cells

    MESH TERMS: drug effects

    Chemical & Substance for Abstract: Chemotherapy targets the hair-follicle vascular network but not the stem cells. Information

    Substance Name: Doxorubicin

    Registry Number: 23214-92-8

    Grant and Affiliation Information for Chemotherapy targets the hair-follicle vascular network but not the stem cells.

    AFFILIATION: AntiCancer Inc., San Diego, California 92111, USA.

    Country: United States

    United States Research PublicationUnited States Research Publication

    AGENCY: United States NIAMS

    GRANT: AR050933

    ACRONYM: AR

    MEDLINETA: J Invest Dermatol

    REFSOURCE:

    DATABASENAME:

    ACCESSION NUMBER:

    Number Hits: 0

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