Publications by authors named "Yuan Di C Halvorsen"

Article Synopsis
  • The study aimed to examine the cardiovascular risks associated with bexagliflozin in individuals with type 2 diabetes (T2D) by analyzing data from 4090 participants involved in controlled trials.
  • Results indicated that bexagliflozin did not increase the risk of major adverse cardiovascular events (MACE) compared to a placebo, satisfying safety benchmarks set by regulatory authorities.
  • The findings support FDA approval of bexagliflozin for T2D, confirming its safety concerning cardiovascular events.
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Article Synopsis
  • The study aimed to assess the safety and effectiveness of bexagliflozin, a medication for type 2 diabetes, over a 96-week period compared to a placebo.
  • It involved 288 adults from the USA, Colombia, and Mexico, showing a significant reduction in HbA1c levels and beneficial changes in body mass and blood pressure for those taking bexagliflozin.
  • The results indicated that bexagliflozin was well tolerated, with fewer serious adverse events and urinary tract infections compared to the placebo group, demonstrating it provided meaningful improvements in diabetes management.
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Article Synopsis
  • Hyperglycemia can worsen chronic kidney disease (CKD), and traditional diabetes treatments often don't help CKD-related problems; bexagliflozin, an SGLT2 inhibitor, was studied for its potential effectiveness in patients with diabetes and CKD.
  • A Phase 3, double-blind trial involved 312 participants with type 2 diabetes and CKD stages 3a and 3b across 54 sites in 4 countries, comparing the effects of 20mg of bexagliflozin to a placebo over 24 weeks.
  • Results showed bexagliflozin significantly reduced hemoglobin A1c levels by 0.37%, lowered body weight, systolic blood pressure, fasting
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Adipose tissue is as an abundant and accessible source of stem cells with multipotent properties suitable for tissue engineering and regenerative medical applications. Here, we describe methods from our own laboratory and the literature for the isolation and expansion of adipose-derived stem cells (ASCs). We present a large scale procedure suitable for processing >100 mL volumes of lipoaspirate tissue specimens by collagenase digestion and a related procedure suitable for processing adipose tissue aspirates without digestion.

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The primary physiological function of adipose-derived stem cells (ASCs) is to differentiate into adipose tissue. It is now possible to isolate, expand, and cryopreserve ASC from adipose depots of many animal species. These ASC can be induced to undergo adipogenic differentiation in vitro by exposure to a cocktail of chemical agents or inductive growth factors.

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Murine models of obesity or reduced adiposity are a valuable resource for understanding the role of adipocyte dysfunction in metabolic disorders. Primary adipocytes grown in culture and derived from murine adipose tissue are essential for studying the mechanisms underlying adipocyte development and function. Herein, we describe methods for the isolation, expansion, and long-term storage of murine adipose-derived stem cells along with a protocol for inducing adipogenesis in this cell population.

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Adipose tissue is as an abundant and accessible source of stem cells with multipotent properties suitable for tissue engineering and regenerative medical applications. Here, we describe methods from our own laboratory and the literature for the isolation and expansion of adipose-derived stem cells (ASCs). We present a large-scale procedure suitable for processing >100-ml volumes of lipoaspirate tissue specimens by collagenase digestion and a related procedure suitable for processing adipose tissue aspirates without digestion.

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Previous studies have demonstrated that EGF and bFGF maintain the stem cell properties of proliferating human adipose-derived stromal/stem cells (hASCs) in vitro. While the expansion and cryogenic preservation of isolated hASCs are routine, these manipulations can impact their proliferative and differentiation potential. This study examined cryogenically preserved hASCs (n = 4 donors), with respect to these functions, after culture with basic fibroblast growth factor (bFGF) and epidermal growth factor (EGF) at varying concentrations (0-10 ng/ml).

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Adipose tissue has proven to serve as an abundant, accessible, and rich source of adult stem cells with multipotent properties suitable for tissue engineering and regenerative medical applications. Here, we describe a detailed method for the isolation and expansion of adipose-derived stem cells (ASCs). We present a large scale procedure suitable for processing >100 mL volumes of lipoaspirate tissue specimens and a small scale procedure suitable for processing adipose tissue biopsy specimens of < 0.

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Goals Of Work: The objective of this study was to evaluate the safety and tolerability of velafermin in patients at risk of developing severe oral mucositis (OM) from chemotherapy.

Materials And Methods: This study was a single-center, open-label, single-dose escalation, phase I trial in patients undergoing high-dose chemotherapy (HDCT) and autologous peripheral blood stem cell transplant (PBSCT). Velafermin was administered 24 h after stem cell infusion as a single intravenous dose infused over 15 min.

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Adipose tissue serves as a source of adipokines and cytokines with both local and systemic actions in health and disease. In this study, we examine the hypothesis that multipotent human adipose-derived stem cells (ASCs), capable of differentiating along the adipocyte, chondrocyte, and osteoblast pathways, contribute to adipose tissue-derived cytokine secretion. Following exposure to basic fibroblast growth factor (bFGF) or epidermal growth factor (EGF), the ASCs significantly increase their secretion of hepatocyte growth factor (HGF), a cytokine implicated in hematopoiesis, vasculogenesis, and mammary epithelial duct formation.

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Human FIZZ3 (hFIZZ3) was identified as an ortholog of mouse resistin (mResistin), an adipocyte-specific secreted factor linked to insulin resistance in rodents. Unlike mResistin, hFIZZ3 is expressed in macrophages and monocytes, but is undetectable in adipose tissue. The profound macrophage infiltration of adipose that occurs during obesity suggests that hFIZZ3 may play an important role in adipocyte biology.

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Adult subcutaneous fat tissue is an abundant source of multipotent cells. Previous studies from our laboratory have shown that, in vitro, adipose-derived adult stem (ADAS) cells express bone marker proteins including alkaline phosphatase, type I collagen, osteopontin, and osteocalcin and produce a mineralized matrix as shown by alizarin red staining. In the current study, the ADAS cell ability to form osteoid in vivo was determined.

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The effects of soluble mediators and medium supplements commonly used to induce chondrogenic differentiation in different cell culture systems were investigated to define their dose-response profiles and potentially synergistic effects on the chondrogenic differentiation of adipose-derived adult stromal (ADAS) cells. Human ADAS cells were suspended within alginate beads and cultured in basal medium with insulin, transferrin, and selenious acid (ITS+) or fetal bovine serum (FBS) and treated with different doses and combinations of TGF-beta1 (0, 1, and 10 ng/mL) and dexamethasone (0, 10, and 100 nM). Cell growth and chondrogenic differentiation were assessed by measuring DNA content, protein and proteoglycan synthesis rates, and proteoglycan accumulation.

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The identification of cells capable of neuronal differentiation has great potential for cellular therapies. We examined whether murine and human adipose-derived adult stem (ADAS) cells can be induced to undergo neuronal differentiation. We isolated ADAS cells from the adipose tissue of adult BalbC mice or from human liposuction tissue and induced neuronal differentiation with valproic acid, butylated hydroxyanisole, insulin, and hydrocortisone.

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