Ashon Sa’adi
Department Of Obstetrics And Gynecology, Faculty Of Medicine, Airlangga University/Dr. Soetomo Hospital, Surabaya

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Journal : Indonesian Journal of Clinical Pathology and Medical Laboratory (IJCPML)

Human Sperm Cells After Purification Using SCLB Can Be Stored at 4o, -20o, or -80oC Before Small RNA Isolation Berliana Hamidah; Ashon Sa'adi; Rina Yudiwati
INDONESIAN JOURNAL OF CLINICAL PATHOLOGY AND MEDICAL LABORATORY Vol 26, No 2 (2020)
Publisher : Indonesian Association of Clinical Pathologist and Medical laboratory

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24293/ijcpml.v26i2.1530

Abstract

There have been many studies about pre-analysis for sperm RNA examination which compared sperm purificationmethods, RNA isolation methods, sequencing methods, and semen storage before analysis. However, there is a lack ofstudies that determine the ideal storage temperature after sperm cell purification before RNA analysis, especially small RNAanalysis. The aim of this study was to determine the preferred storage temperature for human sperm cells after spermpurification using Somatic Cell Lysis Buffer (SCLB) before sperm small ribonucleic acid (RNA) isolation and analysis. Thisstudy was a true laboratory experiment using the post-test only control group design. The samples were 13 fresh humansemen that has been purified using SCLB. The sperm cells were then diluted and divided into four aliquots with differenttreatments. The first aliquot that served as a control group was immediately purified while the other three aliquots were0 0 0 stored for seven days at different temperatures as follows: 4 C, -20 , and -80 C. After the small RNA isolation, RNA levelbetween each group was compared. Micro volume spectrophotometer measured RNA level. The median of small RNA6 yields of the control group was 49.8 (5.33-522.46) ng/10 sperm cells. There was no significant difference in median of smallRNA yields of the control group and that of other groups. The median of the other groups with storage temperature0 0 0 6 of 4 C, -20 , and -80 C was 41.09 (7.03-1448.31), 65.95 (7.99-301.16), and 76.42 (10.45-434.25) ng/10 sperm cells,respectively (p-value= 0.314; α=5%). This condition suggested that after purification using SCLB, human sperm cells can be0 0 0 stored at temperatures of 4 C, -20 , or -80 C for seven days, depending on each laboratory facility.
Correlation between Serum Dehydroepiandrosterone Sulfate and LDL Cholesterol in Patients with Polycystic Ovarian Syndrome Hantoro Gunawan; Irvan Ipandi; Jusak Nugraha; Ashon Sa'adi
INDONESIAN JOURNAL OF CLINICAL PATHOLOGY AND MEDICAL LABORATORY Vol 27, No 1 (2020)
Publisher : Indonesian Association of Clinical Pathologist and Medical laboratory

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24293/ijcpml.v27i1.1600

Abstract

Polycystic Ovary Syndrome (PCOS) is the most prevalent endocrine disorder in female of childbearing age. PCOS patients also have metabolic and cardiovascular disorder risks. One of the factors that can affect those disorders is androgen hormone level. Dehydroepiandrosterone, is produced by the adrenal gland, and its metabolite dehydroepiandrosterone sulphate (DHEAS) has a different effect than testosterone. DHEA and DHEAS might have a protective effect to dyslipidemia and cardiovascular disorder. LDL cholesterol is an important parameter for dyslipidemia therapy guide according to The National Cholesterol Education Program Adult Treatment Panel. The aim of this study was to analyze the correlation between DHEAS and LDL cholesterol.This research was a cross sectional observational study. DHEAS and LDL cholesterol were examined in 25 research subjects by chemiluminescent immunoassay (Immulite®, Siemens) and colorimetric enzymatic (Dimension EXL®, Siemens). These subjects were divided into 3 groups according to 2003 Rotterdam’s criteria. Spearman and Pearson’s correlation statistical analysis were done, with a significance of p-value less than 0.05This study showed a moderate negative correlation between DHEAS and LDL cholesterol (r= -0.441, p = 0.027). Group D PCOS (non-hyperandrogenic) had a strong negative correlation between DHEAS and LDL cholesterol (r=-0.717, p= 0.001). DHEA, in some literatures was shown to activate Peroxisome Proliferator Activated Response γ (PPAR γ) receptors and thereby increasing LDL-cholesterol receptors in adipose tissue and LDL-cholesterol uptake from serum. The rise in DHEAS might indicate a better prognosis for PCOS patients in terms of cardiovascular complications, especially in group D PCOS.