Rhodiola Rosea: una planta de la familia de las crasuláceas que tiene el potencial de reducir el dolor muscular y aumentar el rango de movimiento durante el daño muscular inducido por el ejercicio (Rhodiola Rosea: a plant from the Crassulaceae family that has the potential to reduce muscle pain and increase range of motion during exercise-induced muscle damage)

Autores/as

DOI:

https://doi.org/10.47197/retos.v58.107977

Palabras clave:

Rhodiola Rosea, Muscle Pain, Range of Motion, Exercise-Induced Muscle Damage, Inflammation

Resumen

Este estudio tiene como objetivo analizar el potencial de la rhodiola rosea para reducir el dolor muscular y aumentar el ROM durante EIMD. Esta investigación experimental utiliza un diseño de grupo de control previo y posterior. Los sujetos de investigación se seleccionaron utilizando una técnica de muestreo intencional, luego los sujetos se dividieron en 2 grupos, a saber, el grupo (K1) al que se le administró placebo y el grupo (K2) al que se le administró rhodiola rosea en una dosis de 500 mg. En este estudio participaron un total de 18 hombres sanos de entre 19 y 25 años. La recolección de datos comenzó el primer día con la recopilación de datos sobre las características de los sujetos. Después de eso, se les pidió que calentaran. Posteriormente se realiza actividad física. Estas actividades incluyen actividades de alta intensidad, como caminatas, buenos días y extensiones de piernas. Este ejercicio se realiza en 4 series con un descanso (recuperación) de 1 minuto entre series. La intensidad del ejercicio se controla mediante un sensor de frecuencia cardíaca Polar H9. El día 2 o 24 horas después del entrenamiento, los sujetos tomaron datos previos a la prueba para medir el dolor muscular y el ROM. Luego, los sujetos recibieron placebo o tratamiento con rhodiola rosea, según el grupo asignado. Al tercer día o 48 horas después del entrenamiento, se recopilaron nuevamente los datos posteriores a la prueba. La intensidad muscular se midió mediante una escala visual analógica (EVA) y el ROM se midió en la articulación de la rodilla mediante un goniómetro. Una vez obtenidos los datos, los datos se analizaron utilizando la aplicación IBM SPSS versión 26. Los resultados de este estudio informaron que el grupo K1 que recibió placebo no redujo significativamente el dolor muscular ni aumentó el ROM durante EIMD, mientras que el grupo K2 que recibió rhodiola rosea en una dosis de 500 mg redujo significativamente el dolor. músculo y aumentar el ROM durante EIMD. Teniendo en cuenta que el control del dolor y el ROM son muy necesarios para respaldar la función corporal, recomendamos el uso de rhodiola rosea a los entusiastas del deporte para respaldar el rendimiento físico.

Palabras clave: Rhodiola Rosea, dolor muscular, rango de movimiento, daño muscular inducido por el ejercicio, inflamación, Estilo de vida saludable

Abstract. This study aims to analyze the potential of rhodiola rosea in reducing muscle pain and increasing ROM during EIMD. This experimental research uses a pre- and post-control group design. Research subjects were selected using a purposive sampling technique, then the subjects were divided into 2 groups, namely group (K1) which was given placebo and group (K2) which was given rhodiola rosea at a dose of 500 mg. A total of 18 healthy men aged between 19-25 years participated in this study. Data collection began on the first day by collecting data on subject characteristics. After that, they were asked to warm up. Physical activity is carried out afterward. These activities include high-intensity activities, such as walking lunges, good mornings, and leg extensions. This exercise is done in 4 sets with a 1-minute break (recovery) between sets. Exercise intensity is monitored using a Polar H9 Heart Rate Sensor. On day 2 or 24 hours after training, subjects took pre-test data to measure muscle soreness and ROM. Subjects were then given placebo or rhodiola rosea treatment, depending on the group assigned. On the 3rd day or 48 hours after training, post-test data was collected again. Muscle intensity was measured using a Visual Analog Scale (VAS) and ROM was measured at the knee joint using a goniometer. After the data was obtained, the data were analyzed using the IBM SPSS version 26 application. The results of this study reported that the K1 group given placebo did not significantly reduce muscle pain and increase ROM during EIMD, while the K2 group given rhodiola rosea at a dose of 500 mg significantly reduced pain. muscle and increase ROM during EIMD. Considering that pain management and ROM are very necessary to support body function, we recommend the use of rhodiola rosea for sports enthusiasts to support physical performance.

Keywords: Rhodiola Rosea, Muscle Pain, Range of Motion, Exercise-Induced Muscle Damage, Inflammation, Healthy lifestyle

Citas

Ayubi, N., Yuniarti, E., Kusnanik, NW., Herawati, L., Indika, PM., Putra RY., Komaini, A. (2022). Acute effects of n-3 polyunsaturated fatty acids (PUFAs) reducing tumor necrosis factor-alpha (TNF-a) levels and not lowering malondialdehyde (MDA) levels after anaerobic exercise. Journal of Biological Regulators and Homeostatic Agents, 36(1); 7-11 https://doi.org/10.23812/21-468-A.

Ayubi, N., Purwanto, B., Rejeki, PS., Kusnanik, NW., Herawati, L., Komaini, A., Mutohir, TC., Nurhasan, N., Al Ardha, MA., & Firmansyah, A. (2022). Effect of acute omega 3 supplementation reduces serum tumor necrosis factor-alpha (TNF-a) levels, pain intensity, and maintains muscle strength after high-intensity weight training. Retos, 46; 677–682. https://doi.org/10.47197/retos.v46.93720.

Bernatoniene, J., Jakstas, V., Kopustinskiene, DM. (2023). Phenolic Compounds of Rhodiola rosea L. as the Potential Alternative Therapy in the Treatment of Chronic Diseases. International Journal of Molecular Sciences, 24(15); 12293. https://doi.org/10.3390/ijms241512293.

Drafi, F., Bauerova, K., Chrastina, M., Taghdisiesfejír, M., Rocha, J., Direito, R., Figueira, ME., Sepodes, B., Ponist, S. (2023). Rhodiola rosea L. Extract, a Known Adaptogen, Evaluated in Experimental Arthritis. Molecules, 28(13); 5053. https://doi.org/10.3390/molecules28135053.

Ezike, TC., Okpala, US., Onoja, UL., Nwike, CP., Ezeako, EC., Okpara, OJ., Okoroafor, CC., Eze, SC., Kalu, OL., Odoh, EC., Nwadike, UG., Ogbodo, JO., Umeh, BU., Ossai, EC., & Nwanguma, BC. (2023). Advances in drug delivery systems, challenges and future directions. Heliyon, 9(6); e17488. https://doi.org/10.1016/j.heliyon.2023.e17488.

Fernández-Lázaro, D., Mielgo-Ayuso, J., Seco Calvo, J., Córdova Martínez, A., Caballero García, A., & Fernandez-Lazaro, C. I. (2020). Modulation of Exercise-Induced Muscle Damage, Inflammation, and Oxidative Markers by Curcumin Supplementation in a Physically Active Population: A Systematic Review. Nutrients, 12(2); 501. https://doi.org/10.3390/nu12020501.

Hody, S., Croisier, JL., Bury, T., Rogister, B., & Leprince, P. (2019). Eccentric Muscle Contractions: Risks and Benefits. Frontiers in physiology, 10; 536. https://doi.org/10.3389/fphys.2019.00536.

Ivanova Stojcheva, E., & Quintela, J. C. (2022). The Effectiveness of Rhodiola rosea L. Preparations in Alleviating Various Aspects of Life-Stress Symptoms and Stress-Induced Conditions-Encouraging Clinical Evidence. Molecules (Basel, Switzerland), 27(12); 3902. https://doi.org/10.3390/molecules27123902.

Konrad, A., Kasahara, K., Yoshida, R., Yahata, K., Sato, S., Murakami, Y., Aizawa, K., & Nakamura, M. (2022). Relationship between Eccentric-Exercise-Induced Loss in Muscle Function to Muscle Soreness and Tissue Hardness. Healthcare (Basel, Switzerland), 10(1); 96. https://doi.org/10.3390/healthcare10010096.

Lee, Y., Jung, JC., Jang, S., Kim, J., Ali, Z., Khan, IA., & Oh, S. (2013). Anti-Inflammatory and Neuroprotective Effects of Constituents Isolated from Rhodiola rosea. Evidence-based complementary and alternative medicine : eCAM, 2013; 514049. https://doi.org/10.1155/2013/514049.

Li, Y., Pham, V., Bui, M., Song, L., Wu, C., Walia, A., Uchio, E., Smith-Liu, F., & Zi, X. (2017). Rhodiola rosea L.: an herb with anti-stress, anti-aging, and immunostimulating properties for cancer chemoprevention. Current pharmacology reports, 3(6); 384–395. https://doi.org/10.1007/s40495-017-0106-1.

Lu, Y., Deng, B., Xu, L., Liu, H., Song, Y., & Lin, F. (2022). Effects of Rhodiola Rosea Supplementation on Exercise and Sport: A Systematic Review. Frontiers in nutrition, 9; 856287. https://doi.org/10.3389/fnut.2022.856287.

Mahesh, G., Anil Kumar, K., & Reddanna, P. (2021). Overview on the Discovery and Development of Anti-Inflammatory Drugs: Should the Focus Be on Synthesis or Degradation of PGE2?. Journal of inflammation research, 14; 253–263. https://doi.org/10.2147/JIR.S2785144.

Nanavati, K., Rutherfurd-Markwick, K., Lee, SJ., Bishop, NC., & Ali, A. (2022). Effect of curcumin supplementation on exercise-induced muscle damage: a narrative review. European journal of nutrition, 61(8); 3835–3855. https://doi.org/10.1007/s00394-022-02943-7.

Nonnenmacher, Y., & Hiller, K. (2018). Biochemistry of proinflammatory macrophage activation. Cellular and molecular life sciences : CMLS, 75(12); 2093–2109. https://doi.org/10.1007/s00018-018-2784-1.

Paulsen, G., Crameri, R., Benestad, HB., Fjeld, JG., Mørkrid, L., Hallén, J., & Raastad, T. (2010). Time course of leukocyte accumulation in human muscle after eccentric exercise. Medicine and science in sports and exercise, 42(1); 75–85. https://doi.org/10.1249/MSS.0b013e3181ac7adb.

Tsagareli, M. G., Tsiklauri, N., Nozadze, I., & Gurtskaia, G. (2012). Tolerance effects of non-steroidal anti-inflammatory drugs microinjected into central amygdala, periaqueductal grey, and nucleus raphe: Possible cellular mechanism. Neural regeneration research, 7(13); 1029–1039. https://doi.org/10.3969/j.issn.1673-5374.2012.13.010.

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Publicado

2024-07-29

Cómo citar

Ayubi, N., Komaini, A., Aljunaid, M. ., Jr., P. B. D., Ilham, I., & Mario, D. T. (2024). Rhodiola Rosea: una planta de la familia de las crasuláceas que tiene el potencial de reducir el dolor muscular y aumentar el rango de movimiento durante el daño muscular inducido por el ejercicio (Rhodiola Rosea: a plant from the Crassulaceae family that has the potential to reduce muscle pain and increase range of motion during exercise-induced muscle damage). Retos, 58, 1112–1116. https://doi.org/10.47197/retos.v58.107977

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Artículos de carácter científico: trabajos de investigaciones básicas y/o aplicadas

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