Diabetic and Nephropathy
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-0027-3_5
Reference144 articles.
1. Adler, A. I., Stevens, R. J., Manley, S. E., Bilous, R. W., Cull, C. A., Holman, R. R., & UKPDS Group. (2003). Development and progression of nephropathy in type 2 diabetes: The United Kingdom prospective diabetes study (UKPDS 64). Kidney International, 63(1), 225–232.
2. Ahluwalia, T. S., Khullar, M., Ahuja, M., Kohli, H. S., Bhansali, A., Mohan, V., Venkatesan, R., Rai, T. S., Sud, K., & Singal, P. K. (2009). Common variants of inflammatory cytokine genes are associated with risk of nephropathy in type 2 diabetes among Asian Indians. PLoS One, 4(4), e5168.
3. Alter, M. L., Ott, I. M., Von Websky, K., Tsuprykov, O., Sharkovska, Y., Krause-Relle, K., Raila, J., Henze, A., Klein, T., & Hocher, B. (2012). DPP-4 inhibition on top of angiotensin receptor blockade offers a new therapeutic approach for diabetic nephropathy. Kidney and Blood Pressure Research, 36(1), 119–130.
4. Altshuler, D., Daly, M. J., & Lander, E. S. (2008). Genetic mapping in human disease. Science, 322(5903), 881–888.
5. Alvarez, M. L., & DiStefano, J. K. (2011). Functional characterization of the plasmacytoma variant translocation 1 gene (PVT1) in diabetic nephropathy. PLoS One, 6(4), e18671.
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