Aspartic acid and glutamic acid with protected α-amino and α-carboxyl groups had been used to react with the activated hydroxyl group of N-substituted 3,4-fullero pyrrolidine. The products were deprotected, affordin...
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Aspartic acid and glutamic acid with protected α-amino and α-carboxyl groups had been used to react with the activated hydroxyl group of N-substituted 3,4-fullero pyrrolidine. The products were deprotected, affording two monofuUerene α-amino acids, monofullerene aspartic acid (mFas) and monofullerene glutamic acid (mFgu). Then a bifullerene glutamic acid conjugate (bFguC) was synthesized by reaction of mFgu containing protected amino group with N-substituted 3,4-fullero pyrrolidine.
Background: Patients on hemodialysis have a high-mortality risk. Tiffs study analyzed factors associated with death in patients on maintenance hemodialysis (MHD). While some studies used baseline data of MHD patien...
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Background: Patients on hemodialysis have a high-mortality risk. Tiffs study analyzed factors associated with death in patients on maintenance hemodialysis (MHD). While some studies used baseline data of MHD patients, this study used the most recent data obtained from patients just prior to either a primary endpoint or the end of the study period to iliad the characteristics of patients preceding ***: Participants were selected from 16 blood purification centers in China from January 2012 to December 2014, Patients' data were collected retrospectively. Based on survival status, the participants were divided into two groups: survival group and the death group. Logistic regression analysis was performed to determine/'actors associated with all-cause mortality.
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