1.Improved adipogenic in vitro differentiation: comparison of different adipogenic cell culture media on human fat and bone stroma cells for fat tissue engineering.
Amir Alexander GHONIEM ; Yahya ACIL ; Jorg WILTFANG ; Matthias GIERLOFF
Anatomy & Cell Biology 2015;48(2):85-94
To date there is no sufficient in vitro fat tissue engineering and a protocol has not been well established for this purpose. Therefore, we evaluated the in vitro influence of two different adipogenic growth media for their stimulation potential on different cell lineages to clearly define the most potent adipogenic growth media for future in vitro tissue engineering approaches. The samples for differentiation were composed of human adipogenic-derived stroma cells (hADSCs) and human bone marrow mesenchymal stroma cells (hMSCs). A normal adipogenic medium (NAM) and a specific adipogenic medium (SAM) were tested for their adipogenic stimulation potential. After 10 days and 21 days the relative gene expression was measured for the adipogenic marker genes PPARgamma2, C/EBPalpha, FABP4, LPL, and GLUT4 detected through real time reverse transcriptase polymease chain reaction (RT-PCR). Other study variables were the comparison between NAM and SAM and between the used cells hADSCs and hMSCs. Additionally an Oil-Red staining was performed after 21 days. Our results revealed that only SAM was significantly (P<0.05) superior in the differentiation process in contrast to NAM for 10 days and 21 days. As well was SAM superior to differentiate the used cell lineages. This was evaluated by the detected marker genes PPARgamma2, C/EBPalpha, FABP4, LPL, and GLUT4 through real time RT-PCR and by Oil-Red staining. In addition, the hMSCs proofed to be equal donor cells for adipogenic differentiation especially when stimulated by SAM. The results suggest that the SAM should be established as a new standard medium for a more promising in vitro adipogenic differentiation.
Bone Marrow
;
Cell Culture Techniques*
;
Cell Lineage
;
Gene Expression
;
Humans
;
PPAR gamma
;
RNA-Directed DNA Polymerase
;
Tissue Donors
;
Tissue Engineering*
2.Whole body ultrasound in the operating room and intensive care unit
André DENAULT ; David CANTY ; Milène AZZAM ; Alexander AMIR ; Caroline E GEBHARD
Korean Journal of Anesthesiology 2019;72(5):413-428
Whole body ultrasound can be used to improve the speed and accuracy of evaluation of an increasing number of organ systems in the critically ill. Cardiac and abdominal ultrasound can be used to identify the mechanisms and etiology of hemodynamic instability. In hypoxemia or hypercarbia, lung ultrasound can rapidly identify the etiology of the condition with an accuracy that is equivalent to that of computed tomography. For encephalopathy, ocular ultrasound and transcranial Doppler can identify elevated intracranial pressure and midline shift. Renal and bladder ultrasound can identify the mechanisms and etiology of renal failure. Ultrasound can also improve the accuracy and safety of percutaneous procedures and should be currently used routinely for central vein catheterization and percutaneous tracheostomy.
Anoxia
;
Brain Diseases
;
Catheterization
;
Catheters
;
Critical Care
;
Critical Illness
;
Hemodynamics
;
Intensive Care Units
;
Intracranial Hypertension
;
Lung
;
Operating Rooms
;
Renal Insufficiency
;
Tracheostomy
;
Ultrasonography
;
Urinary Bladder
;
Veins
3.Whole body ultrasound in the operating room and intensive care unit
André DENAULT ; David CANTY ; Milène AZZAM ; Alexander AMIR ; Caroline E GEBHARD
Korean Journal of Anesthesiology 2019;72(5):413-428
Whole body ultrasound can be used to improve the speed and accuracy of evaluation of an increasing number of organ systems in the critically ill. Cardiac and abdominal ultrasound can be used to identify the mechanisms and etiology of hemodynamic instability. In hypoxemia or hypercarbia, lung ultrasound can rapidly identify the etiology of the condition with an accuracy that is equivalent to that of computed tomography. For encephalopathy, ocular ultrasound and transcranial Doppler can identify elevated intracranial pressure and midline shift. Renal and bladder ultrasound can identify the mechanisms and etiology of renal failure. Ultrasound can also improve the accuracy and safety of percutaneous procedures and should be currently used routinely for central vein catheterization and percutaneous tracheostomy.
4.Serum estradiol levels decrease after oophorectomy in transmasculine individuals on testosterone therapy.
Sahil KUMAR ; Elise BERTIN ; Cormac O'DWYER ; Amir KHORRAMI ; Richard WASSERSUG ; Smita MUKHERJEE ; Neeraj MEHRA ; Marshall DAHL ; Krista GENOWAY ; Alexander G KAVANAGH
Asian Journal of Andrology 2023;25(3):309-313
Transmasculine individuals, considering whether to undergo total hysterectomy with bilateral salpingectomy, have the option to have a concomitant oophorectomy. While studies have evaluated hormone changes following testosterone therapy initiation, most of those patients have not undergone oophorectomy. Data are currently limited to support health outcomes regarding the decision to retain or remove the ovaries. We performed a retrospective chart review of transmasculine patients maintained on high-dose testosterone therapy at a single endocrine clinic in Vancouver, British Columbia, Canada. Twelve transmasculine individuals who underwent bilateral oophorectomy and had presurgical and postsurgical serum data were included. We identified 12 transmasculine subjects as controls, who were on testosterone therapy and did not undergo oophorectomy, but additionally matched to the first group by age, testosterone dosing regimen, and body mass index. There was a statistically significant decrease in the estradiol levels of case subjects postoophorectomy, when compared to presurgical estradiol levels (P = 0.02). There was no significant difference between baseline estradiol levels between control and case subjects; however, the difference in estradiol levels at follow-up measurements was significant (P = 0.03). Total testosterone levels did not differ between control and case subjects at baseline and follow-up (both P > 0.05). Our results demonstrate that oophorectomy further attenuates estradiol levels below what is achieved by high-dose exogenous testosterone alone. Correlated clinical outcomes, such as impacts on bone health, were not available. The clinical implications of oophorectomy versus ovarian retention on endocrinological and overall health outcomes are currently limited.
Female
;
Humans
;
Testosterone/therapeutic use*
;
Retrospective Studies
;
Ovariectomy
;
Hysterectomy/methods*
;
Estradiol
5.National Spinal Cord Injury Registry of Iran (NSCIR-IR) - a critical appraisal of its strengths and weaknesses.
Mahdi SHARIF-ALHOSEINI ; Zahra AZADMANJIR ; Mohsen SADEGHI-NAINI ; Zahra GHODSI ; Khatereh NAGHDI ; Mahdi MOHAMMADZADEH ; Amir AZARHOMAYOUN ; Kazem ZENDEHDEL ; Moein KHORMALI ; Farideh SADEGHIAN ; Seyed Behzad JAZAYERI ; Mojtaba SEHAT ; Habibollah PIRNEJAD ; Edward C BENZEL ; Gerard O'REILLY ; Michael G FEHLINGS ; Alexander R VACCARO ; Vafa RAHIMI-MOVAGHAR
Chinese Journal of Traumatology 2019;22(5):300-303
The National Spinal Cord Injury Registry of Iran (NSCIR-IR) is a not-for-profit, hospital-based, and prospective observational registry that appraises the quality of care, long-term outcomes and the personal and psychological burden of traumatic spinal cord injury in Iran. Benchmarking validity in every registry includes rigorous attention to data quality. Data quality assurance is essential for any registry to make sure that correct patients are being enrolled and that the data being collected are valid. We reviewed strengths and weaknesses of the NSCIR-IR while considering the methodological guidelines and recommendations for efficient and rational governance of patient registries. In summary, the steering committee, funded and maintained by the Ministry of Health and Medical Education of Iran, the international collaborations, continued staff training, suitable data quality, and the ethical approval are considered to be the strengths of the registry, while limited human and financial resources, poor interoperability with other health systems, and time-consuming processes are among its main weaknesses.