Assistant Professor, Medicine, Northwestern University Medical School
Internal Medicine
Dr. Elisabeth I. Wallner, MD
Elisabeth Wallner is an expert in the field of Internal Medicine. He has 1 awards "CMS Meaningful Use Stage 1 Certification". Elisabeth Wallner is a published MD. He published 40 publications, including: 'Relevance of extracellular matrix, its receptors, and cell adhesion molecules in mammalian nephrogenesis.' He accepts Medicare payments and is registered with Medicare.gov.
Publications
- Diabetic nephropathy: mechanisms of renal disease progression.
- Expression and functional characteristics of tubular transporters: P-glycoprotein, PEPT1, and PEPT2 in renal mass reduction and diabetes.
- Renal development in high-glucose ambience and diabetic embryopathy.
- High glucose stimulates synthesis of fibronectin via a novel protein kinase C, Rap1b, and B-Raf signaling pathway.
- Identification of developmentally regulated mesodermal-specific transcript in mouse embryonic metanephros.
- An easy cAMP extraction method facilitating adenylyl cyclase assays.
- Impact of medication nonadherence on coronary heart disease outcomes. A critical review.
- Amphipathic alpha-helical structure does not predict the ability of receptor-derived synthetic peptides to interact with guanine nucleotide-binding regulatory proteins.
- Effect of puromycin on metanephric differentiation: morphological, autoradiographic and biochemical studies.
- Mannose-induced dysmorphogenesis of metanephric kidney. Role of proteoglycans and adenosine triphosphate.
- Selective decreased de novo synthesis of glomerular proteoglycans under the influence of reactive oxygen species.
- Growth factors in metanephric development.
- Influence of hypophysectomy on renal proteoglycans and their modulation by insulin-like growth factor-I and its receptor.
- Role of extracellular matrix, growth factors and proto-oncogenes in metanephric development.
- Relevance of proto-oncogenes as growth modulators in organogenesis of the mammalian embryonic kidney.
- Diverse aspects of metanephric development.
- Trophic effect of insulin-like growth factor-I on metanephric development: relationship to proteoglycans.
- Biosynthetic regulation of proteoglycans by aldohexoses and ATP.
- Influence of glucose on murine metanephric development and proteoglycans: morphologic and biochemical studies.
- Current status of the structural and functional basis of glomerular filtration and proteinuria.
- Distribution and relevance of insulin-like growth factor-I receptor in metanephric development.
- Status of glucose transporters in the mammalian kidney and renal development.
- Relevance of extracellular matrix, its receptors, and cell adhesion molecules in mammalian nephrogenesis.
- Cloning of rat fibrillin-2 cDNA and its role in branching morphogenesis of embryonic lung.
- Tubulointerstitial nephritis antigen: an extracellular matrix protein that selectively regulates tubulogenesis vs. glomerulogenesis during mammalian renal development.
- D-glucose-induced dysmorphogenesis of embryonic kidney.
- Developmental regulation and the role of insulin and insulin receptor in metanephrogenesis.
- Cloning of cDNA for the alpha subunit of mouse insulin-like growth factor I receptor and the role of the receptor in metanephric development.
- Developmental regulation, expression, and apoptotic potential of galectin-9, a beta-galactoside binding lectin.
- Role of membrane-type matrix metalloproteinase 1 (MT-1-MMP), MMP-2, and its inhibitor in nephrogenesis.
- Cloning of murine membrane-type-1-matrix metalloproteinase (MT-1-MMP) and its metanephric developmental regulation with respect to MMP-2 and its inhibitor.
- Representational difference analysis of cDNA of genes expressed in embryonic kidney.
- Developmental regulation and partial-length cloning of tubulointerstitial nephritis antigen of murine metanephros.
- Relevance of aldo-keto reductase family members to the pathobiology of diabetic nephropathy and renal development.
- Identification of up-regulated Ras-like GTPase, Rap1b, by suppression subtractive hybridization.
- Identification of a renal-specific oxido-reductase in newborn diabetic mice.
- Expression characteristics and relevance of sodium glucose cotransporter-1 in mammalian renal tubulogenesis.
- Renal gene expression in embryonic and newborn diabetic mice.
- Gene regulation of aldose-, aldehyde- and a renal specific oxido reductase (RSOR) in the pathobiology of diabetes mellitus.
Schools
LudwigMaximiliansUniversitaet Munchen Fachbereich Medizin
University of Illinois Hospital
Northwestern University Medical SchoolNorthwestern Hospital
Doctors Specialties
Accepted Insurances
- Aetna HMO
- Choice Plus POS II
- Assurant Health
- Bakery & Confectionary Union Plan
- Blue Card PPO
- Blue Cross Blue Shield of Illinois PPO
- Cigna HMO
- Cigna PPO
- Great West Healthcare-Cigna PPO
- LocalPlus
- Open Access Plus
- Commercial Insurance Company
- First Health (Coventry Health Care) PPO
- Golden Rule
- HealthLink PPO
- Choice Care PPO
- Mail Handlers Benefit Plan (MHBP)
- Medicaid
- Medicare MCR
- MultiPlan PPO
- PHCS Network PPO
- Choice Plus POS
- Options PPO
- United Healthcare
Awards
- CMS Meaningful Use Stage 1 Certification
Education
-
McGaw Medical Center of Northwestern University
-
Ludwig Maximilian University of Munich Faculty of Medicine
Hospital
-
Northwestern Memorial Hospital
Drug Facts
NPI NUMBER |
|
1912919440 |
NPPES Provider LastName |
|
WALLNER |
NPPES Provider FirstName |
|
ELISABETH |
NPPES Provider ZIPCode |
|
606112927 |
NPPES Provider State |
|
IL |
Specialty Description |
|
Internal Medicine |
Total Claim Count |
|
3530.0 |
Distinct Opioid Count |
|
2.0 |
Opioid Claim Count |
|
138.0 |
Percent Opioid Claims |
|
3.91 |
Helpful Reviews
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Medicare Facts
National Provider Identifier [NPI] |
1912919440 |
Last Name Of The Provider |
WALLNER |
First Name Of The Provider |
ELISABETH |
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|
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