Korelasi Kadar Gula Darah Sewaktu dengan Kadar Air dan Sebum Kulit di Rukun Warga (RW) 008 Kelurahan Cipondoh

Novia Yudhitiara, Sukmawati Tansil Tan, Giovanno Sebastian Yogie, Dean Ascha Wijaya, William Gilbert Satyanegara, Fernando Nathaniel, Joshua Kurniawan, Catharina Sagita Moniaga, Yohanes Firmansyah, Alexander Halim Santoso, Astin Mandalika, Linginda Soebrata

Sari


ABSTRACT

 

Skin hydration is influenced by various factors. Blood glucose levels are also known to affect the protective function of the skin. This cross-sectional study aims to investigate the profile of skin hydration status and its correlation with blood glucose levels among subjects at RW 08 Cipondoh. Skin hydration status measurements were done using an Over The Counter (OTC) skin analyzer. Blood glucose levels were measured using Point of Care Testing (POCT) Out of 101 respondents, the average age was 51.38 years with 75.2% of the respondents were female. The mean blood glucose was 122.71 mg/dL. The mean oil and water hydration were 22.99% and 42.96%, respectively. The data showed a negative correlation between blood glucose and water hydration, with a correlation coefficient power of 0.319 significantly, and between blood glucose and oil hydration, with 0.236 significantly. This study concludes that higher blood glucose levels was associated with worse skin hydration status.

 

Keywords : Blood glucose, Hydration Status

 

ABSTRAK

 

Kelembaban kulit dipengaruhi oleh banyak faktor. Kadar gula darah merupakan salah satu faktor yang dapat mempengaruhi fungsi kelembaban kulit. Penelitian potong lintang ini bertujuan untuk mengetahui gambaran status hidrasi kulit dan korelasinya dengan kadar gula darah pada komunitas yang tinggal di RW 08 Cipondoh. Pengukuran status hidrasi kulit menggunakan alat Over The Counter (OTC) skin analyzer. Kadar gula darah diukur menggunakan Point of Care Testing (POCT). Dari 101 responden, rata-rata usia subjek penelitian adalah 51,38 tahun dengan 75,2% responden adalah perempuan. Rerata gula darah sewaktu (GDS) sebesar 122,71 mg/dL. Rerata hidrasi sebum dan air, masing-masing sebesar 22,99% dan 42,96%. Hasil uji statistik menunjukan hasil korelasi negatif antara GDS dengan hidrasi air sebesar 0,319 secara signifikan dan hidrasi sebum sebesar 0,236 secara signifikan. Penelitian ini menyatakan bahwa semakin tinggi kadar gula darah, maka semakin menurun status hidrasi kulit seseorang.

 

Kata Kunci: Kadar Gula Darah, Kadar Hidrasi


Teks Lengkap:

Download Artikel

Referensi


Akdeniz, M., Tomova‐Simitchieva, T., Dobos, G., Blume‐Peytavi, U., & Kottner, J. (2018). Does dietary fluid intake affect skin hydration in healthy humans? A systematic literature review. Skin Research and Technology, 24(3), 459–465. https://doi.org/10.1111/srt.12454

Camilion, J. V, Khanna, S., Anasseri, S., Laney, C., & Mayrovitz, H. N. (2022). Physiological, Pathological, and Circadian Factors Impacting Skin Hydration. Cureus. https://doi.org/10.7759/cureus.27666

Choi, E. H. (2019). Aging of the skin barrier. Clinics in Dermatology, 37(4), 336–345. https://doi.org/10.1016/j.clindermatol.2019.04.009

Dąbrowska, A. K., Spano, F., Derler, S., Adlhart, C., Spencer, N. D., & Rossi, R. M. (2018). The relationship between skin function, barrier properties, and body-dependent factors. Skin Research and Technology, 24(2), 165–174. https://doi.org/10.1111/srt.12424

de Macedo, G. M. C., Nunes, S., & Barreto, T. (2016). Skin disorders in diabetes mellitus: an epidemiology and physiopathology review. Diabetology & Metabolic Syndrome, 8(1), 63. https://doi.org/10.1186/s13098-016-0176-y

DeFronzo, R. A., Ferrannini, E., Groop, L., Henry, R. R., Herman, W. H., Holst, J. J., Hu, F. B., Kahn, C. R., Raz, I., Shulman, G. I., Simonson, D. C., Testa, M. A., & Weiss, R. (2015). Type 2 diabetes mellitus. Nature Reviews Disease Primers, 1(1), 15019. https://doi.org/10.1038/nrdp.2015.19

Elizabeth, J., Tan, S. T., Firmansyah, Y., Sylvana, Y., & Angelika, M. (2020). Improvement of Skin Hydration Percentage By Intervention of Sheep Placenta Cream in Elderly Population At Stw Cibubur Period September 2019. Jurnal Muara Sains, Teknologi, Kedokteran Dan Ilmu Kesehatan, 4(2), 311. https://doi.org/10.24912/jmstkik.v4i2.7439

Horikawa, T., Hiramoto, K., Goto, K., Sekijima, H., & Ooi, K. (2021). Differences in the mechanism of type 1 and type 2 diabetes-induced skin dryness by using model mice. International Journal of Medical Sciences, 18(2), 474–481. https://doi.org/10.7150/ijms.50764

Lai, C. C. K., Md Nor, N., Kamaruddin, N. A., Jamil, A., & Safian, N. (2021). Comparison of transepidermal water loss and skin hydration in diabetics and nondiabetics. Clinical and Experimental Dermatology, 46(1), 58–64. https://doi.org/10.1111/ced.14363

Lima, A. L., Illing, T., Schliemann, S., & Elsner, P. (2017). Cutaneous Manifestations of Diabetes Mellitus: A Review. American Journal of Clinical Dermatology, 18(4), 541–553. https://doi.org/10.1007/s40257-017-0275-z

Man, M., Wakefield, J. S., Mauro, T. M., & Elias, P. M. (2022). Alterations in epidermal function in type 2 diabetes: Implications for the management of this disease. Journal of Diabetes, 14(9), 586–595. https://doi.org/10.1111/1753-0407.13303

Mayrovitz, H. N., Volosko, I., Sarkar, B., & Pandya, N. (2017). Arm, Leg, and Foot Skin Water in Persons With Diabetes Mellitus (DM) in Relation to HbA1c Assessed by Tissue Dielectric Constant (TDC) Technology Measured at 300 MHz. Journal of Diabetes Science and Technology, 11(3), 584–589. https://doi.org/10.1177/1932296816662284

McKnight, G., Shah, J., & Hargest, R. (2022). Physiology of the skin. Surgery (Oxford), 40(1), 8–12. https://doi.org/10.1016/j.mpsur.2021.11.005

Okano, J., Kojima, H., Katagi, M., Nakagawa, T., Nakae, Y., Terashima, T., Kurakane, T., Kubota, M., Maegawa, H., & Udagawa, J. (2016). Hyperglycemia Induces Skin Barrier Dysfunctions with Impairment of Epidermal Integrity in Non-Wounded Skin of Type 1 Diabetic Mice. PLOS ONE, 11(11), e0166215. https://doi.org/10.1371/journal.pone.0166215

Pham, Q. D., Gregoire, S., Biatry, B., Cassin, G., Topgaard, D., & Sparr, E. (2021). Skin hydration as a tool to control the distribution and molecular effects of intermediate polarity compounds in intact stratum corneum. Journal of Colloid and Interface Science, 603, 874–885. https://doi.org/10.1016/j.jcis.2021.06.097

Quondamatteo, F. (2014). Skin and diabetes mellitus: what do we know? Cell and Tissue Research, 355(1), 1–21. https://doi.org/10.1007/s00441-013-1751-2

Soesman, T. F. R., Budiastuti, A., Malik, D. A., Widayati, R. I., Riyanto, P., Muslimin, & Hardian. (2022). Systematic review and meta-analysis of the effectiveness of urea-based moisturizer on dry skin in diabetes melitus patients with parameters stratum corneum hydration and xerosis assessment scale. Journal of Pakistan Association of Dermatologists, 32(2), 299–313. https://www.jpad.com.pk/index.php/jpad/article/view/1876

Stefaniak, A. A., Krajewski, P. K., Bednarska-Chabowska, D., Bolanowski, M., Mazur, G., & Szepietowski, J. C. (2021). Itch in Adult Population with Type 2 Diabetes Mellitus: Clinical Profile, Pathogenesis and Disease-Related Burden in a Cross-Sectional Study. Biology, 10(12), 1332. https://doi.org/10.3390/biology10121332

Sugondo, K. N., & Hermawan, M. (2023). Journal of General - Procedural Dermatology & Venereology Indonesia The effect of topical oatmeal ( Avena sativa ) on hydration-related skin disorders : A systematic review The effect of topical oatmeal ( Avena sativa ) on hydration-related skin disorders. Journal of General - Procedural Dermatology & Venereology Indonesia, 7(1). https://doi.org/https://doi.org/10.7454/jdvi.v7i1.1143

Widiawaty, A., Sukasihati, Ayda, K. P., & Azura, N. S. (2022, December 2). Skin Moisture Profile of Normal Skin and Inflammatory Skin Disease Using Skin Analyzer. Nusantara Science and Technology Proceedings. https://doi.org/10.11594/nstp.2022.2825




DOI: https://doi.org/10.33024/mahesa.v3i11.11607

Refbacks

  • Saat ini tidak ada refbacks.


Publisher: Universitas Malahayati Lampung


Creative Commons License
Semua artikel dapat digunakan dibawah lisensi Creative Commons Attribution-ShareAlike 4.0 International License


kostenlose besucherzähler