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AG04054 Fibroblast from Skin, Arm

Description:

GERONTOLOGY RESEARCH CENTER (GRC) CELL CULTURE COLLECTION
BALTIMORE LONGITUDINAL STUDY ON AGING (BLSA)

Affected:

No

Sex:

Male

Age:

29 YR (At Sampling)

  • Overview
  • Characterizations
  • Phenotypic Data
  • Publications
  • External Links
  • Culture Protocols

Overview

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Repository NIA Aging Cell Culture Repository
Subcollection GRC
Biopsy Source Arm
Cell Type Fibroblast
Tissue Type Skin
Transformant Untransformed
Sample Source Fibroblast from Skin, Arm
Race White
Family Member 1
Relation to Proband proband
Confirmation Clinical summary/Case history
ISCN 46,XY,tas(9;21)(qter;pter)[2]/46,XY[48]
Species Homo sapiens
Common Name Human
Remarks The biopsy site is the mesial aspect of the mid-upper left arm, taken antemortem. The primary culture was initiated from explants of a 2 mm-punch biopsy. The cell morphology is fibroblast-like and the karyotype is 46,XY with 8 % of the cells examined showing random chromosome loss/gain. Cultures initiated from biopsies taken 7 and 17 years later from this same donor are AG11557 and AG13442, respectively. The legacy karyotype description shown in this Remark may not be representative of the current available product.

Characterizations

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PDL at Freeze 6.99
 
IDENTIFICATION OF SPECIES OF ORIGIN Species of Origin Confirmed by Nucleoside Phosphorylase, Glucose-6-Phosphate Dehydrogenase, and Lactate Dehydrogenase Isoenzyme Electrophoresis and by Chromosome Analysis
 

Phenotypic Data

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Remarks The biopsy site is the mesial aspect of the mid-upper left arm, taken antemortem. The primary culture was initiated from explants of a 2 mm-punch biopsy. The cell morphology is fibroblast-like and the karyotype is 46,XY with 8 % of the cells examined showing random chromosome loss/gain. Cultures initiated from biopsies taken 7 and 17 years later from this same donor are AG11557 and AG13442, respectively. The legacy karyotype description shown in this Remark may not be representative of the current available product.

Publications

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Mertens J, Herdy JR, Traxler L, Schafer ST, Schlachetzki JCM, Böhnke L, Reid DA, Lee H, Zangwill D, Fernandes DP, Agarwal RK, Lucciola R, Zhou-Yang L, Karbacher L, Edenhofer F, Stern S, Horvath S, Paquola ACM, Glass CK, Yuan SH, Ku M, Szücs A, Goldstein LSB, Galasko D, Gage FH, Age-dependent instability of mature neuronal fate in induced neurons from Alzheimer's patients Cell stem cell: 2020
PubMed ID: 33910058
 
Fleischer JG, Schulte R, Tsai HH, Tyagi S, Ibarra A, Shokhirev MN, Huang L, Hetzer MW, Navlakha S, Predicting age from the transcriptome of human dermal fibroblasts Genome Biology19: 2018
PubMed ID: 30567591
 
Herdy J, Schafer S, Kim Y, Ansari Z, Zangwill D, Ku M, Paquola A, Lee H, Mertens J, Gage FH, Chemical modulation of transcriptionally enriched signaling pathways to optimize the conversion of fibroblasts into neurons eLife8: 2018
PubMed ID: 31099332
 
Kim Y1, Zheng X2, Ansari Z1, Bunnell MC1, Herdy JR1, Traxler L3, Lee H1, Paquola ACM4, Blithikioti C1, Ku M5, Schlachetzki JCM6, Winkler J7, Edenhofer F8, Glass CK9, Paucar AA1, Jaeger BN1, Pham S1, Boyer L1, Campbell BC1, Hunter T2, Mertens J10, Gage FH, Mitochondrial Aging Defects Emerge in Directly Reprogrammed Human Neurons due to Their Metabolic Profile Cell Reports23:2550-2558 2018
PubMed ID: 29847787
 
Buckley-Sturrock A, Woodward SC, Senior RM, Griffin GL, Klagsbrun M, Davidson JM, Differential stimulation of collagenase and chemotactic activity in fibroblasts derived from rat wound repair tissue and human skin by growth factors. J Cell Physiol138:70-8 1989
PubMed ID: 2536037
 
Kinsella TJ, Dobson PP, Fornace AJ Jr, Barrett SF, Ganges MB, Robbins JH, Alzheimer's disease fibroblasts have normal repair of N-methyl-N'-nitro- N-nitrosoguanidine-induced DNA damage determined by the alkaline elution technique. Biochem Biophys Res Commun149:355-61 1987
PubMed ID: 3426578
 
Oliver CN, Ahn BW, Moerman EJ, Goldstein S, Stadtman ER, Age-related changes in oxidized proteins. J Biol Chem262:5488-91 1987
PubMed ID: 3571220
 
Sephel GC, Davidson JM, Elastin production in human skin fibroblast cultures and its decline with age. J Invest Dermatol86:279-85 1986
PubMed ID: 3745952
 
Vogel KG, Campbell K, Variability in proteoglycan synthesis among six strains of normal human adult skin fibroblasts. Connect Tissue Res15:187-98 1986
PubMed ID: 2944711
 
Azzarone B, Malpiece Y, Zaech P, Moretta L, Fauci A, Suarez H, Analysis of the expression of the 4F2 surface antigen in normal and neoplastic fibroblastic human cells of embryonic and adult origin. Exp Cell Res159:451-62 1985
PubMed ID: 4029274
 
Chapman ML, Zaun MR, Gracy RW, Changes in NAD levels in human lymphocytes and fibroblasts during aging and in premature aging syndromes. Mech Ageing Dev21:157-67 1983
PubMed ID: 6223188
 
Tollefsbol TO, Zaun MR, Gracy RW, Increased lability of triosephosphate isomerase in progeria and Werner's syndrome fibroblasts. Mech Ageing Dev20:93-101 1982
PubMed ID: 7176709
 
Schneider EL, Monticone R, Smith J, Braunschweiger K, Roberts T, Skin fibroblast cultures derived from members of the Baltimore longitudinal study: a new resource for studies of cellular aging. Cytogenet Cell Genet31:40-6 1981
PubMed ID: 7307581

External Links

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dbSNP dbSNP ID: 10072
GEO GEO Accession No: GSM244109
GEO Accession No: GSM244110

Culture Protocols

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Cumulative PDL at Freeze 18.99
Split Ratio 1:3
Temperature 37 C
Medium Eagle's MEM with Hank's BSS, with 26mM Hepes; ambient CO2 with 2mM L-glutamine or equivalent
Serum 15% fetal bovine serum Not inactivated
Supplement -
Pricing
Commercial:
$257.00USD
Academic &
Non-profit:
$103.00USD
NIA Grantees:
$47.00USD
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