Acute effects of thirty minutes of light-intensity, intermittent exercise on patients with chronic fatigue syndrome

Abstract:

BACKGROUND AND PURPOSE: Currently, there is no consensus on exercise prescription for patients with chronic fatigue syndrome (CFS). This investigation examined whether light-intensity, intermittent physical activity exacerbated symptoms in patients with CFS immediately following exercise to 7 days following exercise. Subjects. Subjects were 9 women (mean age=44.2 years, SD=8.4, range=29-56; mean weight=74.2 kg, SD=18.8, range=56.36-110.91; and mean height=1.63 m, SD=0.8, range=1.55-1.78) and 1 man (age=48 years, weight=97.1 kg, and height= 1.98 m) who met the Centers for Disease Control and Prevention’s criteria fi)r (FS.

METHODS: Subjects performed 10 discontinuous 3-minute exercise bouts (separated by 3 minutes of recovery) at a self-selected, comfortable walking pace on a treadmill. Oxygen consumption, minute ventilation, respiratory exchange ratio, and heart rate were measured every minute during the exercise session. To assess degree of disability, general health status, activity level, symptoms, and mood, subjects completed various questionnaires before and after exercise.

RESULTS: Results indicated that degree of disability, general health status, symptoms, and mood did not change immediately and up to 7 days following exercise.

CONCLUSION AND DISCUSSION: Thirty minutes of intermittent walking did not exacerbate symptoms in subjects with CFS. The physiological data did not show any abnormal response to exercise. Although this study did not determine whether 30 minutes of continuous versus intermittent exercise would exacerbate symptoms, all 10 subjects felt that they could not exercise continuously for 30 minutes without experiencing symptom exacerbation. Despite this limitation, the results indicate that some individuals with CFS may be able to use low-level, intermittent exercise without exacerbating their symptoms.

Comment in: Benefits of exercise therapy. [Phys Ther. 2000]

 

Source: Clapp LL, Richardson MT, Smith JF, Wang M, Clapp AJ, Pieroni RE. Acute effects of thirty minutes of light-intensity, intermittent exercise on patients with chronic fatigue syndrome. Phys Ther. 1999 Aug;79(8):749-56. http://ptjournal.apta.org/content/79/8/749.long (Full article)

 

Patterns of orthostatic intolerance: the orthostatic tachycardia syndrome and adolescent chronic fatigue

Abstract:

OBJECTIVES: To describe the orthostatic tachycardia syndrome (OTS) in adolescents, similarities to and differences from chronic fatigue syndrome (CFS), and patterns of orthostatic intolerance during head-up tilt (HUT).

STUDY DESIGN: Using electrocardiography and arterial tonometry, we investigated the heart rate and blood pressure responses during HUT in 20 adolescents with OTS compared with 25 adolescents with CFS, 13 healthy control subjects, and 20 patients with simple faint.

RESULTS: Of the control subjects, 4 of 13 experienced typical vasovagal faints with an abrupt fall in blood pressure and heart rate, and 14 of 20 patients with simple faint experienced similar HUT responses. All patients with CFS (25/25) experienced severe orthostatic symptoms with syncope in 2 of 25, early orthostatic tachycardia during HUT in 16 of 23 (13/16 hypotensive), and delayed orthostatic tachycardia in 7 of 23 (6/7 hypotensive). Acrocyanosis and edema occurred in 18 of 25. Early orthostatic tachycardia occurred in 10 of 20 patients with OTS. Of these, 9 of 10 were hypotensive, but hypotension was delayed in 4 of 9. Delayed tachycardia occurred in 10 of 20 (all hypotensive). Acrocyanosis and edema occurred in most patients with CFS, fewer patients with OTS, and in one patient with simple faint. Orthostatic symptoms were similar but more severe in patients with CFS compared with patients with OTS.

CONCLUSIONS: Symptoms and patterns of orthostatic heart rate and blood pressure change in OTS overlap strongly with those of CFS. Orthostatic intolerance in OTS may represent an attenuated form of chronic fatigue pathophysiology.

 

Source: Stewart JM, Gewitz MH, Weldon A, Munoz J. Patterns of orthostatic intolerance: the orthostatic tachycardia syndrome and adolescent chronic fatigue. J Pediatr. 1999 Aug;135(2 Pt 1):218-25. http://www.ncbi.nlm.nih.gov/pubmed/10431117

 

Fungal spores: hazardous to health?

Abstract:

Fungi have long been known to affect human well being in various ways, including disease of essential crop plants, decay of stored foods with possible concomitant production of mycotoxins, superficial and systemic infection of human tissues, and disease associated with immune stimulation such as hypersensitivity pneumonitis and toxic pneumonitis. The spores of a large number of important fungi are less than 5 microm aerodynamic diameter, and therefore are able to enter the lungs. They also may contain significant amounts of mycotoxins. Diseases associated with inhalation of fungal spores include toxic pneumonitis, hypersensitivity pneumonitis, tremors, chronic fatigue syndrome, kidney failure, and cancer.

 

Source: Sorenson WG. Fungal spores: hazardous to health? Environ Health Perspect. 1999 Jun;107 Suppl 3:469-72. http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1566211/ (Full article)

 

Chronic fatigue syndrome does exist. Changes of biological parameters are measurable

Abstract:

Chronic fatigue syndrome is a debilitating condition characterised by neurocognitive and somatic symptoms. Although many patients report an infectious onset, there is no unequivocal evidence to support this. The immune system is activated, and the hypothalamic-pituitary-adrenal axis is involved. The aetiology is complex, and its understanding may require modification of our views on ill-health and disease.

 

Source: Evengård B, Komaroff AL. Chronic fatigue syndrome does exist. Changes of biological parameters are measurable. Lakartidningen. 1999 Jun 30;96(26-27):3166-9. [Article in Swedish] http://www.ncbi.nlm.nih.gov/pubmed/10423976

 

Differences in adrenal steroid profile in chronic fatigue syndrome, in depression and in health

Abstract:

BACKGROUND: Hyperactivity and hypoactivity of the HPA have been forwarded as of pathophysiological relevance in major depressive disorder and chronic fatigue syndrome (CFS), respectively.

METHODS: This study examines cortisol levels in the two disorders, and also assesses levels of the adrenal androgens, dehydroepiandrosterone (DHEA) and its sulphate derivative (DHEA-S), and 17-alpha-hydroxyprogesterone; 15 subjects with CFS diagnosed according to CDC criteria, 15 subjects with DSM III-R major depression and 11 healthy subjects were compared.

RESULTS: DHEA and DHEA-S levels were significantly lower in the CFS compared to the healthy group; DHEA-S levels, but not DHEA, were lower in the depressives; cortisol and 17-alpha-hydroxyprogesterone did not differ between the three groups.

CONCLUSIONS: A potential role for DHEA, both therapeutically and as a diagnostic tool, in CFS, is suggested.

 

Source: Scott LV, Salahuddin F, Cooney J, Svec F, Dinan TG. Differences in adrenal steroid profile in chronic fatigue syndrome, in depression and in health. J Affect Disord. 1999 Jul;54(1-2):129-37. http://www.ncbi.nlm.nih.gov/pubmed/10403156

 

The chronic fatigue and neurasthenia in the student population

Abstract:

INTRODUCTION: Fatigue is one of the most common symptoms in community studies, primary care and other medical setting. In spite of a high frequency of fatigue, the incidence of chronic fatigue syndrome is very low. In this paper, we want to know the frequency of chronic fatigue syndrome and neurasthenia; we want to know the association between fatigue and depressive symptoms in students.

METHODS: We studied 277 medical student, administering: 1. a center for disease control questionnaire to assess major criteria and minor criteria of chronic fatigue syndrome, 2. ICD 10 criteria for the diagnoses of neurasthenia and 3. Beck depression inventory.

RESULTS AND CONCLUSIONS: We found that the 37,55% of the subjects suffer fatigue. 9 subjects (3,25% of the total) meet the criteria of neurasthenia. 2 subjects (0,72% of the total) meet the chronic fatigue syndrome criteria. The depressive symptoms are most frequent in the subjects with fatigue, but we don’t know if they are the cause or the consequence of the fatigue. With the factorial analyses, we find that symptoms of physical fatigue, mental fatigue and cognitive difficulties are factor independent of each other.

 

Source: Mojarro Práxedes MD, Benjumea Pino P. The chronic fatigue and neurasthenia in the student population. Actas Esp Psiquiatr. 1999 Jan-Feb;27(1):14-21. [Article in Spanish] http://www.ncbi.nlm.nih.gov/pubmed/10380143

 

Critical life events, infections, and symptoms during the year preceding chronic fatigue syndrome (CFS): an examination of CFS patients and subjects with a nonspecific life crisis

Abstract:

OBJECTIVE: The purpose of this study was to describe the sequence of psychosocial events and infections preceding the onset of chronic fatigue syndrome (CFS). This information was related to the temporal development of crucial symptoms in relation to the onset of, namely, fatigue, sadness, irritability, pain, and feeling of fever.

METHODS: A personal interview was conducted in 46 patients (mean age, 39.5 years; SD, 9 years) who fulfilled international CFS criteria. These patients were matched with regard to age and gender to 46 carefully matched control subjects. Twenty-three percent of the study subjects were men, and 77% were women. The patient at first identified the month that coincided with the onset of CFS. Similarly, each control subject was asked to identify a “very difficult period” within approximately the same period as the patient with whom the control subject was matched. A list of 14 different life events was perused. Participants were asked to identify for each month whether each of the listed events had occurred. Furthermore, they were asked to rate the importance of the events they had experienced. In addition, for each of the cardinal symptoms (fatigue, sadness, irritability, pain, and feeling of fever) and for each month, the subjects were asked to rate, on a visual analogue scale, the symptom intensity. Also, the number of infections was noted.

RESULTS: A statistically significant group difference in fatigue intensity existed during the period 4 to 10 months before the onset of CFS. During the 3 months preceding the diagnosis for the CFS patients or the peak of the crisis for the control group, there was a dramatic rise in fatigue in both groups. The CFS group reached a much higher fatigue level, which leveled off somewhat during the first year of follow-up but still remained very high in comparison with the control group, which reached precrisis levels 4 months after the peak. Similar patterns were observed for fever and pain. With regard to sadness and irritability, no group difference was observed during the period preceding the crisis. In the patient group, the level stayed high throughout the whole first year of follow-up, whereas a slow return started in the control group; precrisis levels were reached after 1 year in this group. The prevalence ratio (CFS patients/control subjects) for negative events was around 1.0 for the periods 4 to 12 months preceding CFS but 1.9 during the quarter year preceding the onset. For infections, the prevalence ratio increased successively during the four quarters preceding CFS (from 1.4 to 2.3).

CONCLUSIONS: According to the retrospective self-reports, there were differences between the groups in fatigue, pain, and feeling of fever during the months preceding the crisis. With regard to depressive and irritable feelings, no preillness differences were reported between the groups. There was a reported excess prevalence of both infections and negative life events during the quarter year preceding the onset of CFS or crisis. Potential sources of error are discussed. These findings must be replicated in longitudinal studies.

 

Source: Theorell T, Blomkvist V, Lindh G, Evengård B. Critical life events, infections, and symptoms during the year preceding chronic fatigue syndrome (CFS): an examination of CFS patients and subjects with a nonspecific life crisis. Psychosom Med. 1999 May-Jun;61(3):304-10. http://www.ncbi.nlm.nih.gov/pubmed/10367610

 

Is depression associated with immune activation?

Abstract:

BACKGROUND: Some research immunologists have suggested that major depression amd chronic fatigue syndrome (CFS) are characterized by immune activation. To test this hypothesis, we compared immunological function in patients with major depression and in patients with CFS who developed major depression after the onset of CFS to that of sedentary healthy controls.

METHODS: Subjects completed the Centers for Epidemiological Study-Depression (CES-D) questionnaire and allowed venisection. We performed flow cytometric analysis on 13 groups of white blood cells and used a reverse transcriptase PCR method to assay m-RNA of eight cytokines.

RESULTS: CES-D scores were high in both patient groups and did not differ significantly. We found no evidence for immune activation in either patient group. Instead the data suggested immunological downregulation in depression.

LIMITATIONS: Not all the subjects in the two patient groups were off antidepressants.

CONCLUSIONS: The data indicate that immune activation is not necessary in depression–either alone or with CFS.

 

Source: Natelson BH, Denny T, Zhou XD, LaManca JJ, Ottenweller JE, Tiersky L, DeLuca J, Gause WC. Is depression associated with immune activation? J Affect Disord. 1999 May;53(2):179-84. http://www.ncbi.nlm.nih.gov/pubmed/10360413

 

One Test Too Many: Toward an Integrated Approach to Psychosomatic Disorders

Abstract:

Conditions such as chronic fatigue syndrome (CFS), fibromyalgia, and several others belong to the group of disorders in which both physiologic and psychologic factors are substantially involved, and in some cases there may be no real distinction between the two. However, primary patient assessment usually employs an array of clinical tools, and only after known physiologic factors are excluded is the patient referred for psychologic or psychiatric evaluation. This chapter suggests that clinical evaluation should initially include both physiologic and psychosocial assessment, which would minimize the division and greatly improve the efficacy of the treatment.

 

Source: Rosenfeld WD, Walco GA. One Test Too Many: Toward an Integrated Approach to Psychosomatic Disorders. Adolesc Med. 1997 Oct;8(3):483-487. http://www.ncbi.nlm.nih.gov/pubmed/10360030

 

The fatigue syndrome in autoimmune thyroiditis with polyglandular activation of autoimmunity

Abstract:

The authors compared in a group of 118 patients with autoimmune thyroiditis and a positive antibody titre against ovaries the grade of fatigue with the presence of organ specific and non-specific autoantibodies in the peripheral blood stream, antibodies against EBV and CMV, immunoglobulin concentrations, biochemical parameters of the lipid metabolism, glucose tolerance, ion balance and melatonin and serotonin levels. Patients with autoimmune thyroiditis were differentiated according to the degree of fatigue into three groups: 38 with fatigue typical for CFS, 30 with occasional fatigue and 50 without the feeling of fatigue.

Fatigue of the CFS type was characterized by a significantly higher incidence of autoantibodies against the adrenals and a higher cholesterol level. Increased fatigue of the patients was associated with a lower melatonin level, a higher serotonin level and a lower M/S ratio as compared with patients without fatigue. In other indicators no differences were found. Fatigue in CFS could be associated, similarly as in autoimmune endocrinopathies, with impaired immunoendocrine regulation. In autoimmune thyroiditis, regardless of the concomitant presence of fatigue, in addition to antibodies against thyroid peroxidase most frequently antibodies against the ovaries were detected.

 

Source: Sterzl I, Fucíková T, Hrdá P, Matucha P, Zamrazil V. The fatigue syndrome in autoimmune thyroiditis with polyglandular activation of autoimmunity. Vnitr Lek. 1998 Aug;44(8):456-60. [Article in Czech] http://www.ncbi.nlm.nih.gov/pubmed/10358448