Literature DB >> 22538307

Exertional rhabdomyolysis: a clinical review with a focus on genetic influences.

Mark E Landau1, Kimbra Kenney, Patricia Deuster, William Campbell.   

Abstract

In this review, the clinical and laboratory features of exertional rhabdomyolysis (ER) are discussed in detail, emphasizing the full clinical spectrum from physiological elevations of serum creatine kinase after exertion to life-threatening rhabdomyolysis with acute kidney injury and associated systemic complications. Laboratory markers used to diagnose both ER and rhabdomyolysis are very sensitive, but not very specific, and imperfectly distinguish "subclinical" or asymptomatic from severe, life-threatening illness. However, genetic factors, both recognized and yet to be discovered, likely influence this diverse clinical spectrum of disease and response to exercise. Genetic mutations causative for McArdle disease, carnitine palmitoyl transferase deficiency 2, myoadenylate deaminase deficiency, and malignant hyperthermia have all been associated with ER. Polymorphic variations in the myosin light chain kinase, α-actin 3, creatine kinase-muscle isoform, angiotensin I-converting enzyme, heat shock protein, and interleukin-6 genes have also been associated with either ER or exercise-induced serum creatine kinase elevations typical of ER. The prognosis for ER is significantly better than that for other etiologies of rhabdomyolysis, but the risk of recurrence after an initial episode is unknown. Guidelines for management are provided.

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Year:  2012        PMID: 22538307     DOI: 10.1097/CND.0b013e31822721ca

Source DB:  PubMed          Journal:  J Clin Neuromuscul Dis        ISSN: 1522-0443


  13 in total

1.  Induction and Assessment of Exertional Skeletal Muscle Damage in Humans.

Authors:  Michael R Deyhle; Jacob R Sorensen; Robert D Hyldahl
Journal:  J Vis Exp       Date:  2016-12-11       Impact factor: 1.355

2.  Rhabdomyolysis. The role of diagnostic and prognostic factors.

Authors:  Eran Keltz; Fahmi Yousef Khan; Gideon Mann
Journal:  Muscles Ligaments Tendons J       Date:  2014-02-24

Review 3.  Rhabdomyolysis: pathogenesis, diagnosis, and treatment.

Authors:  Patrick A Torres; John A Helmstetter; Adam M Kaye; Alan David Kaye
Journal:  Ochsner J       Date:  2015

4.  Genetic polymorphisms associated with exertional rhabdomyolysis.

Authors:  Patricia A Deuster; Carmen L Contreras-Sesvold; Francis G O'Connor; William W Campbell; Kimbra Kenney; John F Capacchione; Mark E Landau; Sheila M Muldoon; Elisabeth J Rushing; Yuval Heled
Journal:  Eur J Appl Physiol       Date:  2013-03-31       Impact factor: 3.078

5.  Extreme Elevation of Creatine Kinase in a Young Male Patient With Recurrent Rhabdomyolysis.

Authors:  Layla Al Bizri; Anh Do; Daniel R Ouellette
Journal:  Cureus       Date:  2022-05-07

6.  Exertional rhabdomyolysis in the athlete: a clinical review.

Authors:  David C Tietze; James Borchers
Journal:  Sports Health       Date:  2014-07       Impact factor: 3.843

Review 7.  Beyond muscle destruction: a systematic review of rhabdomyolysis for clinical practice.

Authors:  Luis O Chavez; Monica Leon; Sharon Einav; Joseph Varon
Journal:  Crit Care       Date:  2016-06-15       Impact factor: 9.097

8.  Exertional rhabdomyolysis: physiological response or manifestation of an underlying myopathy?

Authors:  Renata S Scalco; Marc Snoeck; Ros Quinlivan; Susan Treves; Pascal Laforét; Heinz Jungbluth; Nicol C Voermans
Journal:  BMJ Open Sport Exerc Med       Date:  2016-09-07

9.  Increased Prevalence of the IL-6-174C Genetic Polymorphism in Long Distance Swimmers.

Authors:  Sigal Ben-Zaken; Yoav Meckel; Dan Nemet; Eias Kassem; Alon Eliakim
Journal:  J Hum Kinet       Date:  2017-08-01       Impact factor: 2.193

10.  Optimum polygenic profile to resist exertional rhabdomyolysis during a marathon.

Authors:  Juan Del Coso; Marjorie Valero; Juan José Salinero; Beatriz Lara; César Gallo-Salazar; Francisco Areces
Journal:  PLoS One       Date:  2017-03-03       Impact factor: 3.240

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