Salivary Hormone and Immune Responses to Three Resistance Exercise Schemes in Elite Female Athletes

Nunes, JA, Crewther, BT, Ugrinowitsch, C, Tricoli, V, Viveiros, L, de Rose Jr, D, and Aoki, MS. Salivary hormone and immune responses to three resistance exercise schemes in elite female athletes J Strength Cond Res 25(8)2322-2327, 2011—This study examined the salivary hormone and immune responses o...

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Veröffentlicht in:Journal of strength and conditioning research 2011-08, Vol.25 (8), p.2322-2327
Hauptverfasser: Nunes, João A, Crewther, Blair T, Ugrinowitsch, Carlos, Tricoli, Valmor, Viveiros, Luís, de Rose, Dante, Aoki, Marcelo S
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container_end_page 2327
container_issue 8
container_start_page 2322
container_title Journal of strength and conditioning research
container_volume 25
creator Nunes, João A
Crewther, Blair T
Ugrinowitsch, Carlos
Tricoli, Valmor
Viveiros, Luís
de Rose, Dante
Aoki, Marcelo S
description Nunes, JA, Crewther, BT, Ugrinowitsch, C, Tricoli, V, Viveiros, L, de Rose Jr, D, and Aoki, MS. Salivary hormone and immune responses to three resistance exercise schemes in elite female athletes J Strength Cond Res 25(8)2322-2327, 2011—This study examined the salivary hormone and immune responses of elite female athletes to 3 different resistance exercise schemes. Fourteen female basketball players each performed an endurance scheme (ES—4 sets of 12 reps, 60% of 1 repetition maximum (1RM) load, 1-minute rest periods), a strength-hypertrophy scheme (SHS—1 set of 5RM, 1 set of 4RM, 1 set of 3RM, 1 set of 2RM, and 1set of 1RM with 3-minute rest periods, followed by 3 sets of 10RM with 2-minute rest periods) and a power scheme (PS—3 sets of 10 reps, 50% 1RM load, 3-minute rest periods) using the same exercises (bench press, squat, and biceps curl). Saliva samples were collected at 07:30 hours, pre-exercise (Pre) at 09:30 hours, postexercise (Post), and at 17:30 hours. Matching samples were also taken on a nonexercising control day. The samples were analyzed for testosterone, cortisol (C), and immunoglobulin A concentrations. The total volume of load lifted differed among the 3 schemes (SHS > ES > PS, p < 0.05). Postexercise C concentrations increased after all schemes, compared to control values (p < 0.05). In the SHS, the postexercise C response was also greater than pre-exercise data (p < 0.05). The current findings confirm that high-volume resistance exercise schemes can stimulate greater C secretion because of higher metabolic demand. In terms of practical applications, acute changes in C may be used to evaluate the metabolic demands of different resistance exercise schemes, or as a tool for monitoring training strain.
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Salivary hormone and immune responses to three resistance exercise schemes in elite female athletes J Strength Cond Res 25(8)2322-2327, 2011—This study examined the salivary hormone and immune responses of elite female athletes to 3 different resistance exercise schemes. Fourteen female basketball players each performed an endurance scheme (ES—4 sets of 12 reps, 60% of 1 repetition maximum (1RM) load, 1-minute rest periods), a strength-hypertrophy scheme (SHS—1 set of 5RM, 1 set of 4RM, 1 set of 3RM, 1 set of 2RM, and 1set of 1RM with 3-minute rest periods, followed by 3 sets of 10RM with 2-minute rest periods) and a power scheme (PS—3 sets of 10 reps, 50% 1RM load, 3-minute rest periods) using the same exercises (bench press, squat, and biceps curl). Saliva samples were collected at 07:30 hours, pre-exercise (Pre) at 09:30 hours, postexercise (Post), and at 17:30 hours. Matching samples were also taken on a nonexercising control day. The samples were analyzed for testosterone, cortisol (C), and immunoglobulin A concentrations. The total volume of load lifted differed among the 3 schemes (SHS &gt; ES &gt; PS, p &lt; 0.05). Postexercise C concentrations increased after all schemes, compared to control values (p &lt; 0.05). In the SHS, the postexercise C response was also greater than pre-exercise data (p &lt; 0.05). The current findings confirm that high-volume resistance exercise schemes can stimulate greater C secretion because of higher metabolic demand. 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The samples were analyzed for testosterone, cortisol (C), and immunoglobulin A concentrations. The total volume of load lifted differed among the 3 schemes (SHS &gt; ES &gt; PS, p &lt; 0.05). Postexercise C concentrations increased after all schemes, compared to control values (p &lt; 0.05). In the SHS, the postexercise C response was also greater than pre-exercise data (p &lt; 0.05). The current findings confirm that high-volume resistance exercise schemes can stimulate greater C secretion because of higher metabolic demand. 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Salivary hormone and immune responses to three resistance exercise schemes in elite female athletes J Strength Cond Res 25(8)2322-2327, 2011—This study examined the salivary hormone and immune responses of elite female athletes to 3 different resistance exercise schemes. Fourteen female basketball players each performed an endurance scheme (ES—4 sets of 12 reps, 60% of 1 repetition maximum (1RM) load, 1-minute rest periods), a strength-hypertrophy scheme (SHS—1 set of 5RM, 1 set of 4RM, 1 set of 3RM, 1 set of 2RM, and 1set of 1RM with 3-minute rest periods, followed by 3 sets of 10RM with 2-minute rest periods) and a power scheme (PS—3 sets of 10 reps, 50% 1RM load, 3-minute rest periods) using the same exercises (bench press, squat, and biceps curl). Saliva samples were collected at 07:30 hours, pre-exercise (Pre) at 09:30 hours, postexercise (Post), and at 17:30 hours. Matching samples were also taken on a nonexercising control day. The samples were analyzed for testosterone, cortisol (C), and immunoglobulin A concentrations. The total volume of load lifted differed among the 3 schemes (SHS &gt; ES &gt; PS, p &lt; 0.05). Postexercise C concentrations increased after all schemes, compared to control values (p &lt; 0.05). In the SHS, the postexercise C response was also greater than pre-exercise data (p &lt; 0.05). The current findings confirm that high-volume resistance exercise schemes can stimulate greater C secretion because of higher metabolic demand. In terms of practical applications, acute changes in C may be used to evaluate the metabolic demands of different resistance exercise schemes, or as a tool for monitoring training strain.</abstract><cop>United States</cop><pub>National Strength and Conditioning Association</pub><pmid>21572351</pmid><doi>10.1519/JSC.0b013e3181ecd033</doi><tpages>6</tpages><oa>free_for_read</oa></addata></record>
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subjects Adult
Athletes
Basketball - physiology
Exercise
Female
Females
Hormones
Humans
Hydrocortisone - analysis
Hydrocortisone - secretion
Immunity
Immunoglobulin A - analysis
Immunoglobulin A - immunology
Metabolism
Muscle Strength - physiology
Muscle, Skeletal - physiology
Physical Endurance
Resistance Training
Saliva - chemistry
Saliva - immunology
Saliva - metabolism
Testosterone - analysis
Testosterone - secretion
Weight Lifting - physiology
Young Adult
title Salivary Hormone and Immune Responses to Three Resistance Exercise Schemes in Elite Female Athletes
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