Open Access
Open access
volume 133 pages 110885

Picolinic acid, a tryptophan oxidation product, does not impact bone mineral density but increases marrow adiposity

Kehong Ding 1, 2
Meghan McGee-Lawrence 1, 3, 4
Helen Kaiser 4
Anuj Vikrant Sharma 4
Jessica Pierce 4
Debra L. Irsik 2
Jianrui Xu 2
Qing Zhong 1, 2
Sadanand Fulzele 1, 5
Eileen Kennedy 6
Mohammed Elsalanty 1, 7
Mark W. Hamrick 1, 3, 4
Carlos M. Isales 1
Publication typeJournal Article
Publication date2020-05-01
scimago Q1
wos Q1
SJR1.165
CiteScore7.3
Impact factor4.3
ISSN05315565, 18736815
Biochemistry
Molecular Biology
Cell Biology
Genetics
Endocrinology
Aging
Abstract
Tryptophan is an essential amino acid catabolized initially to kynurenine (kyn), an immunomodulatory metabolite that we have previously shown to promote bone loss. Kyn levels increase with aging and have also been associated with neurodegenerative disorders. Picolinic acid (PA) is another tryptophan metabolite downstream of kyn. However, in contrast to kyn, PA is reported to be neuroprotective and further, to promote osteogenesis in vitro . Thus, we hypothesized that PA might be osteoprotective in vivo . In an IACUC-approved protocol, we fed PA to aged (23-month-old) C57BL/6 mice for eight weeks. In an effort to determine potential interactions of PA with dietary protein we also fed PA in a low-protein diet (8%). The mice were divided into four groups: Control (18% dietary protein), +PA (700 ppm); Low-protein (8%), +PA (700 ppm). The PA feedings had no impact on mouse weight, body composition or bone density. At sacrifice bone and stem cells were collected for analysis, including μCT and RT-qPCR. Addition of PA to the diet had no impact on trabecular bone parameters. However, marrow adiposity was significantly increased in PA-fed mice, and in bone marrow stromal cells isolated from these mice increases in the expression of the lipid storage genes, Plin1 and Cidec, were observed. Thus, as a downstream metabolite of kyn, PA no longer showed kyn's detrimental effects on bone but instead appears to impact energy balance. • Tryptophan oxidation products accumulate with age and inflammation • Tryptophan breakdown products such as kynurenine result in bone loss • Picolinic Acid is a breakdown product downstream of kynurenine • Picolinic Acid administration did not negatively impact bone mass but increased marrow adiposity • Tryptophan metabolites may have varied effects on tissues in which they accumulate
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GOST Copy
Ding K. et al. Picolinic acid, a tryptophan oxidation product, does not impact bone mineral density but increases marrow adiposity // Experimental Gerontology. 2020. Vol. 133. p. 110885.
GOST all authors (up to 50) Copy
Ding K., McGee-Lawrence M., Kaiser H., Sharma A. V., Pierce J., Irsik D. L., Xu J., Zhong Q., Fulzele S., Kennedy E., Elsalanty M., Hamrick M. W., Isales C. M. Picolinic acid, a tryptophan oxidation product, does not impact bone mineral density but increases marrow adiposity // Experimental Gerontology. 2020. Vol. 133. p. 110885.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.exger.2020.110885
UR - https://doi.org/10.1016/j.exger.2020.110885
TI - Picolinic acid, a tryptophan oxidation product, does not impact bone mineral density but increases marrow adiposity
T2 - Experimental Gerontology
AU - Ding, Kehong
AU - McGee-Lawrence, Meghan
AU - Kaiser, Helen
AU - Sharma, Anuj Vikrant
AU - Pierce, Jessica
AU - Irsik, Debra L.
AU - Xu, Jianrui
AU - Zhong, Qing
AU - Fulzele, Sadanand
AU - Kennedy, Eileen
AU - Elsalanty, Mohammed
AU - Hamrick, Mark W.
AU - Isales, Carlos M.
PY - 2020
DA - 2020/05/01
PB - Elsevier
SP - 110885
VL - 133
PMID - 32088397
SN - 0531-5565
SN - 1873-6815
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2020_Ding,
author = {Kehong Ding and Meghan McGee-Lawrence and Helen Kaiser and Anuj Vikrant Sharma and Jessica Pierce and Debra L. Irsik and Jianrui Xu and Qing Zhong and Sadanand Fulzele and Eileen Kennedy and Mohammed Elsalanty and Mark W. Hamrick and Carlos M. Isales},
title = {Picolinic acid, a tryptophan oxidation product, does not impact bone mineral density but increases marrow adiposity},
journal = {Experimental Gerontology},
year = {2020},
volume = {133},
publisher = {Elsevier},
month = {may},
url = {https://doi.org/10.1016/j.exger.2020.110885},
pages = {110885},
doi = {10.1016/j.exger.2020.110885}
}