scholarly journals Muscle and Bone Impairment in Infantile Nephropathic Cystinosis: New Concepts

Cells ◽  
2022 ◽  
Vol 11 (1) ◽  
pp. 170
Author(s):  
Dieter Haffner ◽  
Maren Leifheit-Nestler ◽  
Candide Alioli ◽  
Justine Bacchetta

Cystinosis Metabolic Bone Disease (CMBD) has emerged during the last decade as a well-recognized, long-term complication in patients suffering from infantile nephropathic cystinosis (INC), resulting in significant morbidity and impaired quality of life in teenagers and adults with INC. Its underlying pathophysiology is complex and multifactorial, associating complementary, albeit distinct entities, in addition to ordinary mineral and bone disorders observed in other types of chronic kidney disease. Amongst these long-term consequences are renal Fanconi syndrome, hypophosphatemic rickets, malnutrition, hormonal abnormalities, muscular impairment, and intrinsic cellular bone defects in bone cells, due to CTNS mutations. Recent research data in the field have demonstrated abnormal mineral regulation, intrinsic bone defects, cysteamine toxicity, muscle wasting and, likely interleukin-1-driven inflammation in the setting of CMBD. Here we summarize these new pathophysiological deregulations and discuss the crucial interplay between bone and muscle in INC. In future, vitamin D and/or biotherapies targeting the IL1β pathway may improve muscle wasting and subsequently CMBD, but this remains to be proven.

2020 ◽  
Vol 21 (9) ◽  
pp. 3109
Author(s):  
Irma Machuca-Gayet ◽  
Thomas Quinaux ◽  
Aurélia Bertholet-Thomas ◽  
Ségolène Gaillard ◽  
Débora Claramunt-Taberner ◽  
...  

Patients with chronic kidney disease (CKD) display significant mineral and bone disorders (CKD-MBD) that induce significant cardiovascular, growth and bone comorbidities. Nephropathic cystinosis is an inherited metabolic disorder caused by the lysosomal accumulation of cystine due to mutations in the CTNS gene encoding cystinosin, and leads to end-stage renal disease within the second decade. The cornerstone of management relies on cysteamine therapy to decrease lysosomal cystine accumulation in target organs. However, despite cysteamine therapy, patients display severe bone symptoms, and the concept of “cystinosis metabolic bone disease” is currently emerging. Even though its exact pathophysiology remains unclear, at least five distinct but complementary entities can explain bone impairment in addition to CKD-MBD: long-term consequences of renal Fanconi syndrome, malnutrition and copper deficiency, hormonal disturbances, myopathy, and intrinsic/iatrogenic bone defects. Direct effects of both CTNS mutation and cysteamine on osteoblasts and osteoclasts are described. Thus, the main objective of this manuscript is not only to provide a clinical update on bone disease in cystinosis, but also to summarize the current experimental evidence demonstrating a functional impairment of bone cells in this disease and to discuss new working hypotheses that deserve future research in the field.


Author(s):  
Wai W. Cheung ◽  
Sheng Hao ◽  
Ronghao Zheng ◽  
Zhen Wang ◽  
Alex Gonzalez ◽  
...  

2021 ◽  
Vol 80 (Suppl 1) ◽  
pp. 397.1-397
Author(s):  
S. Deshayes ◽  
K. Ly ◽  
V. Rieu ◽  
G. Maigné ◽  
N. M. Silva ◽  
...  

Background:The treatment of giant cell arteritis (GCA) relies on corticosteroids but is burdened by a high rate of relapses and adverse effects. Anti-interleukin-6 treatments show a clear benefit with a significant steroid-sparing effect, but late relapses occur after treatment discontinuation. In addition to interleukin-6, interleukin-1 also appears to play a significant role in GCA pathophysiology.Objectives:We report herein the efficacy of anakinra, an interleukin-1 receptor antagonist, in 6 GCA patients exhibiting corticosteroid dependence or resistance, specifically analyzing the outcome of aortitis in 4 of them, and including the long-term follow-up of 2 previously described patients (1).Methods:This retrospective study analyzed the cases of all GCA patients treated with anakinra from the French Study Group for Large Vessel Vasculitis.Patients had to satisfy the following two criteria to be enrolled in this retrospective study. First, their diagnosis of GCA should be based on the fulfillment of at least 3 criteria of the American College of Rheumatology (ACR) for GCA or on the satisfaction of 2 of these criteria along with the demonstration of LVI on imaging. Second, patients should have received anakinra because of corticosteroid dependence or resistance.Corticosteroid dependence was defined as ≥2 relapses or the combination of 2 of the following criteria: a daily dose of oral prednisone >20 mg/day (or 0.3 mg/kg) at 6 months; a daily dose of oral prednisone >10 mg/day (or 0.2 mg/kg) at 12 months; and/or a treatment maintained >24 months because of a relapsing disease course. Corticosteroid resistance was defined as persistent increased inflammatory parameters at month 3 despite a steroid dosage over 0.5 mg/kg.Results:After a median duration of anakinra therapy of 19 [18–32] months, all 6 patients exhibited complete clinical and biological remission. Among the 4 patients with large-vessel involvement, 2 had a disappearance of aortitis under anakinra, and 2 showed a decrease in vascular uptake. After a median follow-up of 56 [48–63] months, corticosteroids were discontinued in 4 patients, and corticosteroid dosage could be decreased to 5 mg/day in 2 patients. One patient relapsed 13 months after anakinra introduction in the context of increasing the daily anakinra injection interval to every 48 hours. Three patients experienced transient injection-site reactions, and 1 patient had pneumonia.Figure 1.Steroid dosages before and after the introduction of anakinra in 6 patients with giant-cell arteritis and corticosteroid dependence or resistance. The black arrow indicates the time of anakinra introduction.Conclusion:In this short series, anakinra appears to be an efficient and safe steroid-sparing agent in refractory GCA, with a possible beneficial effect on large-vessel involvement.References:[1]Ly K-H, Stirnemann J, Liozon E, Michel M, Fain O, Fauchais A-L. Interleukin-1 blockade in refractory giant cell arteritis. Joint Bone Spine 2014;81:76–8.Disclosure of Interests:Samuel Deshayes: None declared, Kim LY: None declared, Virginie Rieu: None declared, Gwénola Maigné: None declared, Nicolas Martin Silva: None declared, Alain Manrique: None declared, Jacques Monteil: None declared, Hubert de Boysson Speakers bureau: Roche-Chugai, Grant/research support from: Roche-Chugai, Achille Aouba Grant/research support from: SOBI


1993 ◽  
Vol 53 (3) ◽  
pp. 206-209 ◽  
Author(s):  
Kohei Notoya ◽  
Keiji Yoshida ◽  
Shigehisa Taketomi ◽  
Iwao Yamazaki ◽  
Masayoshi Kumegawa

2009 ◽  
Vol 41 (1) ◽  
pp. 89-96 ◽  
Author(s):  
Anna G. Orr ◽  
Anup Sharma ◽  
Nikolaus B. Binder ◽  
Andrew H. Miller ◽  
Bradley D. Pearce

Injury ◽  
2021 ◽  
Author(s):  
Gonzalo Luengo-Alonso ◽  
Ismael Auñon Martin ◽  
Victor Rodriguez Vega ◽  
Aranzazu Capel Agundez ◽  
Pedro Caba Doussoux

1976 ◽  
Vol 14 (13) ◽  
pp. 49-51

Treatment with a corticosteroid aims to achieve the remission of disease or satisfactory relief of symptoms with the least unwanted effects. With continuous long-term corticosteroid therapy these include adrenal cortical atrophy due to hypothalamic-pituitary suppression, growth retardation in children, obesity, Cushingoid appearance, bruising, muscle wasting and weakness, osteoporosis, sodium and water retention, diabetes and cataracts. Some of these are inevitable if the daily dose exceeds 10 mg of prednisolone or its equivalent, but the risk can be reduced by giving the drug on alternate days.1a b This regimen is not mentioned in most data sheets for oral corticosteroid preparations.


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