The metabaging cycle promotes non-metabolic chronic diseases of ageing

Cell Proliferation ›› 2024, Vol. 57 ›› Issue (10) : e13712

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Cell Proliferation ›› 2024, Vol. 57 ›› Issue (10) : e13712 DOI: 10.1002/cpr.13712
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The metabaging cycle promotes non-metabolic chronic diseases of ageing

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. The metabaging cycle promotes non-metabolic chronic diseases of ageing. Cell Proliferation, 2024, 57(10): e13712 DOI:10.1002/cpr.13712

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References

[1]

PanyardDJ, YuB, SnyderMP. The metabolomics of human aging: advances, challenges, and opportunities. Sci Adv. 2022;8:eadd6155.

[2]

ZhangC, LiuY, ZengL, et al. Combined associations of cognitive impairment and psychological resilience with all-cause mortality in community-dwelling older adults. J Affect Disord. 2024;351:962-970.

[3]

SunL, LiZ, HuC, et al. Age-dependent changes in the gut microbiota and serum metabolome correlate with renal function and human aging. Aging Cell. 2023;22:e14028.

[4]

YuD, WanH, TongC, et al. A multi-tissue metabolome atlas of primate pregnancy. Cell. 2024;187:764-781.e714.

[5]

MaS, Shyh-Chang N. The Metabaging cycle. Cell Prolif. 2022;55:e13197.

[6]

WeiG, LuK, UmarM, et al. Risk of metabolic abnormalities in osteoarthritis: a new perspective to understand its pathological mechanisms. Bone Research. 2023;11:63.

[7]

HongJ, ZhangG, DongF, Rechler MM. Insulin-like growth factor (IGF)-binding Protein-3 mutants that do not bind IGF-I or IGF-II stimulate apoptosis in human prostate cancer cells. J Biol Chem. 2002;277:10489-10497.

[8]

MazonJN, de Mello AH, FerreiraGK, RezinGT. The impact of obesity on neurodegenerative diseases. Life Sci. 2017;182:22-28.

[9]

LiuW, WangC, HaoJ, YinL, WangY, Li W. Association between metabolic syndrome and osteoporosis: a systematic review and meta-analysis. Int J Endocrinol. 2021;1-9:2021.

[10]

ZhangC, CuiJ, LiS, et al. Combined effects of vitamin D deficiency and systemic inflammation on all-cause mortality and cause-specific mortality in older adults. BMC Geriatr. 2024;24:122.

[11]

GorjiA. Neuroinflammation: the pathogenic mechanism of neurological disorders. Int J Mol Sci. 2022;23(10):5744.

[12]

BecherB, SpathS, GovermanJ. Cytokine networks in neuroinflammation. Nat Rev Immunol. 2016;17:49-59.

[13]

BuffoloF, Petrosino V, AlbiniM, et al. Neuroinflammation induces synaptic scaling through IL-1β-mediated activation of the transcriptional repressor REST/NRSF. Cell Death Dis. 2021;12:180.

[14]

KwonHS, KohS-H. Neuroinflammation in neurodegenerative disorders: the roles of microglia and astrocytes. Translational Neurodegeneration. 2020;9:42.

[15]

MetodiewaD, Kośka C. Reactive oxygen species and reactive nitrogen species: relevance to cyto(neuro)toxic events and neurologic disorders. An Overview Neurotoxicity Research. 2000;1:197-233.

[16]

SiesH, JonesDP. Reactive oxygen species (ROS) as pleiotropic physiological signalling agents. Nat Rev Mol Cell Biol. 2020;21:363-383.

[17]

WitteME, GeurtsJJG, de VriesHE, van der ValkP, van Horssen J. Mitochondrial dysfunction: a potential link between neuroinflammation and neurodegeneration? Mitochondrion. 2010;10:411-418.

[18]

ShihR-H, WangC-Y, YangC-M. NF-kappaB signaling pathways in neurological inflammation: a mini review. Frontiers in Molecular Neuroscience. 2015;8:77.

[19]

GaleaI. The blood–brain barrier in systemic infection and inflammation. Cell Mol Immunol. 2021;18:2489-2501.

[20]

SchererT, Sakamoto K, BuettnerC. Brain insulin signalling in metabolic homeostasis and disease. Nat Rev Endocrinol. 2021;17:468-483.

[21]

DyerAH, Vahdatpour C, SanfeliuA, TropeaD. The role of insulin-like growth factor 1 (IGF-1) in brain development, maturation and neuroplasticity. Neuroscience. 2016;325:89-99.

[22]

DirckxN, MoorerMC, ClemensTL, Riddle RC. The role of osteoblasts in energy homeostasis. Nat Rev Endocrinol. 2019;15:651-665.

[23]

FerronM, WeiJ, YoshizawaT, et al. Insulin signaling in osteoblasts integrates bone remodeling and energy metabolism. Cell. 2010;142:296-308.

[24]

LiCW, YuK, Shyh-ChangN, et al. Sterol metabolism and protein metabolism are differentially correlated with sarcopenia in Asian Chinese men and women. Cell Prolif. 2021;54:e12989.

[25]

MerzKE, Thurmond DC. Role of skeletal muscle in insulin resistance and glucose uptake. Compr Physiol. 2020;10(3):785-809.

[26]

WangP, LiuX, YaoZ, et al. Lin28a maintains a subset of adult muscle stem cells in an embryonic-like state. Cell Res. 2023;33:712-726.

[27]

ZhuH, Shyh-Chang N, SegrèAV, et al. The Lin28/let-7 Axis regulates glucose metabolism. Cell. 2011;147:81-94.

[28]

ShinodaG, Shyh-Chang N, SoysaTY, et al. Fetal deficiency of Lin28 programs life-long aberrations in growth and glucose metabolism. Stem Cells. 2013;31:1563-1573.

[29]

Shyh-ChangN, ZhuH, Yvanka de SoysaT, et al. Lin28 enhances tissue repair by reprogramming cellular metabolism. Cell. 2013;155:778-792.

[30]

FukawaT, Yan-Jiang BC, Min-WenJC, et al. Excessive fatty acid oxidation induces muscle atrophy in cancer cachexia. Nat Med. 2016;22:666-671.

[31]

PengB, YangY, WuZ, et al. Red blood cell extracellular vesicles deliver therapeutic siRNAs to skeletal muscles for treatment of cancer cachexia. Mol Ther. 2023;31:1418-1436.

[32]

HamrickMW, McGee-Lawrence ME, FrechetteDM. Fatty infiltration of skeletal muscle: mechanisms and comparisons with bone marrow adiposity. Front Endocrinol. 2016;7:69.

[33]

BiltzNK, Collins KH, ShenKC, SchwartzK, HarrisCA, MeyerGA. Infiltration of intramuscular adipose tissue impairs skeletal muscle contraction. J Physiol. 2020;598:2669-2683.

[34]

ZhouQ, SunJ, WuZ, et al. The older, the less potential benefit for type 2 diabetes from weight control. BMC Geriatr. 2022;22:346.

[35]

BhardwajP, BrownKA. Obese adipose tissue as a driver of breast cancer growth and development: update and emerging evidence. Front Oncol. 2021;11:638918.

[36]

DivellaR, De Luca R, AbbateI, NaglieriE, Daniele A. Obesity and cancer: the role of adipose tissue and adipo-cytokines-induced chronic inflammation. J Cancer. 2016;7:2346-2359.

[37]

DumasJ-F, Brisson L. Interaction between adipose tissue and cancer cells: role for cancer progression. Cancer and Metastasis Reviews. 2020;40:31-46.

[38]

ChiefariE, Mirabelli M, la VigneraS, et al. Insulin resistance and cancer: in search for a causal link. Int J Mol Sci. 2021;22(20):11137.

[39]

JanssenJAMJL. Hyperinsulinemia and its pivotal role in aging, obesity, type 2 diabetes, cardiovascular disease and cancer. Int J Mol Sci. 2021;22(15):7797.

[40]

ArcidiaconoB, Iiritano S, NoceraA, et al. Insulin resistance and cancer risk: an overview of the Pathogenetic mechanisms. Exp Diabetes Res. 2012;1-12:2012.

[41]

YangL, TanZ, LiY, et al. Insulin-like growth factor 1 promotes proliferation and invasion of papillary thyroid cancer through the STAT3 pathway. J Clin Lab Anal. 2020;34:e23531.

[42]

GallagherEJ, LeRoith D. Minireview: IGF, insulin, and cancer. Endocrinology. 2011;152:2546-2551.

[43]

LiuX, LuoS, ZengP, et al. Characteristics of decline in cognition and locomotion among the elderly in seven provinces of China. Aging Medicine (Milton (NSW)). 2019;2:190-197.

[44]

PangJ, TuF, HanY, ZhangE, ZhangY, Zhang T. Age-related change in muscle strength, muscle mass, and fat mass between the dominant and non-dominant upper limbs. Front Public Health. 2023;11:1284959.

[45]

JiangZ, ZhangL, YaoZ, et al. Machine learning-based phenotypic screening for postmitotic growth inducers uncover vitamin D3 metabolites as small molecule ribosome agonists. Cell Prolif. 2022;55:e13214.

[46]

LuoL, ChuaYB, LiuT, et al. Muscle injuries induce a prostacyclin-PPARγ/PGC1a-FAO spike that boosts regeneration. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 2023;10:e2301519.

[47]

WangP, LiuX, ChenY, et al. Adult progenitor rejuvenation with embryonic factors. Cell Prolif. 2023;56:e13459.

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2024 The Author(s). Cell Proliferation published by Beijing Institute for Stem Cell and Regenerative Medicine and John Wiley & Sons Ltd.

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