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Novel Insight into the Serum Sphingolipid Fingerprint Characterizing Longevity

Academic Article
Publication Date:
2022
Citation:
Novel Insight into the Serum Sphingolipid Fingerprint Characterizing Longevity / P. Barbacini, E. Torretta, B. Arosio, E. Ferri, D. Capitanio, M. Moriggi, C. Gelfi. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1661-6596. - 23:5(2022 Mar), pp. 2428.1-2428.18. [10.3390/ijms23052428]
abstract:
Sphingolipids (SLs) are structural components of the lipid bilayer regulating cell func-tions. In biological fluids, their distribution is sex-specific and is at variance in aging and many disorders. The aim of this study is to identify SL species associated with the decelerated aging of centenarians. SLs, extracted from serum of adults (Ad, 35–37 years old), aged (Ag, 75–77 years old) and centenarian (C, 105–107 years old) women were analyzed by LC-MS/MS in combination with mRNA levels in peripheral blood mononuclear cells (PBMCs) of SL biosynthetic enzymes. Results indicated in Ag and C vs. Ad a comparable ceramides (Cers) increase, whereas dihydroceramide (dhCer) decreased in C vs. Ad. Hexosylceramides (HexCer) species, specifically HexCer 16:0, 22:0 and 24:1 acyl chains, increased in C vs. Ag representing a specific trait of C. Sphingosine (Sph), dihydrosphingosine (dhSph), sphingosine-1-phosphate (S1P) and dihydrosphingosine-1-phosphate (dhS1P), increased both in Ag and C vs. Ad, with higher levels in Ag, indicating a SL fine-tuning associated with a reduced physiological decline in C. mRNA levels of enzymes involved in ceramide de novo biosynthesis increased in Ag whereas enzymes involved in sphin-gomyelin (SM) degradation increased in C. Collectively, results suggest that Ag produce Cers by de novo synthesis whereas C activate a protective mechanism degrading SMs to Cers converting it into glycosphingolipids.
IRIS type:
01 - Articolo su periodico
Keywords:
Aging; Centenarians; Longevity; Mass spectrometry; Nitric oxide; ROS; Sphingolipids
List of contributors:
P. Barbacini, E. Torretta, B. Arosio, E. Ferri, D. Capitanio, M. Moriggi, C. Gelfi
Authors of the University:
AROSIO BEATRICE ( author )
CAPITANIO DANIELE ( author )
GELFI CECILIA ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/916885
Full Text:
https://air.unimi.it/retrieve/handle/2434/916885/2003959/ijms-23-02428-v2.pdf
Project:
Increased sarcopenia in a cohort of elderly carrying snap25 polymorphisms: mechanistic insights from the SNAP25 heterozygous murine model
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Settore BIO/12 - Biochimica Clinica e Biologia Molecolare Clinica

Settore MED/09 - Medicina Interna
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