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To our knowledge, this is the first reported case of CMV-associated PMC in a kidney transplant recipient.Artificial metalloenzymes (ArMs) are commonly used to control the stereoselectivity of catalytic reactions, but controlling chemoselectivity remains challenging. In this study, we engineer a dirhodium ArM to catalyze diazo cross-coupling to form an alkene that, in a one-pot cascade reaction, is reduced to an alkane with high enantioselectivity (typically >99 % ee) by an alkene reductase. The numerous protein and small molecule components required for the cascade reaction had minimal effect on ArM catalysis. Directed evolution of the ArM led to improved yields and E/Z selectivities for a variety of substrates, which translated to cascade reaction yields. MD simulations of ArM variants were used to understand the structural role of the cofactor on ArM conformational dynamics. These results highlight the ability of ArMs to control both catalyst stereoselectivity and chemoselectivity to enable reactions in complex media that would otherwise lead to undesired side reactions.Assemblies of racemic β-sheet-forming peptides have attracted attention for biomedical applications because racemic forms of peptides can self-associate more avidly than do single enantiomers. In 1953, Pauling and Corey proposed "rippled β-sheet" modes of H-bond-mediated interstrand assembly for alternating L- and D-peptide strands; this structural hypothesis was complementary to their proposal of "pleated β-sheet" assembly for L-peptides. Although no high-resolution structure has been reported for a rippled β-sheet, there is strong evidence for the occurrence of rippled β-sheets in some racemic peptide assemblies. Here we compare propensities of peptide diastereomers in aqueous solution to form a minimum increment of β-sheet in which two antiparallel strands associate. β-Hairpin folding is observed for homochiral peptides with aligned nonpolar side chains, but no β-hairpin population can be detected for diastereomers in which one strand contains L residues and the other contains D residues. These observations suggest that rippled β-sheet assemblies are stabilized by interactions between β-sheet layers rather than interactions within these layers.A couple of fluorescent enantiomers, which are suitable for the emitters of high-efficiency TADF-sensitized CP-OLEDs, have been developed. The enantiomers show configurational stability, high PLQY of 98 %, large kr of 7.8×107  s-1 , and intense CPL activities with |glum | values of about 2.5×10-3 . Notably, by using matchable TADF sensitizer, the enantiomers were then exploited as emitter to fabricate CP-OLEDs. The TADF-sensitized CP-OLEDs not only show mirror-image CPEL activities with gEL values of +1.8×10-3 and -1.4×10-3 , but also display fast start-up featuring with low VT of 3.0 V as well as driving voltage of 4.8 V at 10 000 cd m-2 . Meaningfully, the TADF-sensitized fluorescent devices show high EQEmax of 21.5 % and extremely low efficiency roll-off, whose EQEs are 21.2 % and 15.3 % at 1000 and 10 000 cd m-2 , respectively. The obtained EQEs are comparable to those of CP-TADF emitters, which provides a promising perspective to break through the EL efficiency limit of CP-FL emitters.The formation of aryl-alkyl ether bonds through cross coupling of alcohols with aryl halides represents a useful strategic departure from classical SN 2 methods. Numerous tactics relying on Pd-, Cu-, and Ni-based catalytic systems have emerged over the past several years. Herein we disclose a Ni-catalyzed electrochemically driven protocol to achieve this useful transformation with a broad substrate scope in an operationally simple way. This electrochemical method does not require strong base, exogenous expensive transition metal catalysts (e.g., Ir, Ru), and can easily be scaled up in either a batch or flow setting. Interestingly, e-etherification exhibits an enhanced substrate scope over the mechanistically related photochemical variant as it tolerates tertiary amine functional groups in the alcohol nucleophile.

To examine the treatment patterns and medical costs in real-world practice among patients who received hepatectomy for hepatocellular carcinoma (HCC) in Japan.

Data of patients who underwent hepatectomy as an initial therapy for primary HCC were extracted from a Japanese medical claims database from April 2008 to December 2019. The types of additional treatments for recurrent HCC and medical costs for up to 3years from the first hepatectomy were analyzed. Nutlin-3a cell line The average cumulative cost per patient starting on the date of the first hepatectomy was calculated using the Kaplan-Meier sample-average method.

Data from 2342 patients (median age, 71years) were analyzed. Overall, 35.6% of patients received at least one HCC treatment within 3years of the first hepatectomy. The total average cumulative 3-years medical cost was JPY 4993300 (95% confidence interval [CI] 4804100 to 5220500). Surgical procedures were the most costly components in the first month after hepatectomy, whereas the costs of drugs, which mainly included antiviral and antineoplastic medications, increased thereafter. Patients with advanced stage HCC, hepatitis C, or a higher Charlson Comorbidity Index at hepatectomy, or those who required additional treatment, especially with antineoplastic drugs for recurrent HCC, incurred higher medical costs.

Patients with HCC after hepatectomy experienced a large economic burden, which was more serious for those with advanced stage HCC, higher comorbidities, and hepatitis at baseline and for patients treated with antineoplastic drugs. A treatment selection that considers its medical cost burden would help to reduce some of these economic burdens.

Patients with HCC after hepatectomy experienced a large economic burden, which was more serious for those with advanced stage HCC, higher comorbidities, and hepatitis at baseline and for patients treated with antineoplastic drugs. A treatment selection that considers its medical cost burden would help to reduce some of these economic burdens.

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