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1 institution is 'MRC Weatherall Institute of Molecular Medicine'.
2 innovative platform in chemical biology and molecular medicine.
3 able aptamers and enzymes for exobiology and molecular medicine.
4 in the fields of molecular cell biology and molecular medicine.
5 res in many areas of chemistry, biology, and molecular medicine.
6 fully realizing the promise of personalized molecular medicine.
7 rder emphasizes the potential and promise of molecular medicine.
8 This is the promise of molecular medicine.
9 on of WBP2 and how they can be exploited for molecular medicine.
10 implemented as a gene-specific approach for molecular medicine.
11 ngineering as well as disease mechanisms and molecular medicine.
12 m at the interface of chemistry, biology and molecular medicine.
13 le cell disease was an important landmark in molecular medicine.
14 neration and as vehicles for cell therapy in molecular medicine.
15 ep in fulfilling the promise of personalized molecular medicine.
16 agnostics has the potential to revolutionize molecular medicine.
17 ong the priorities in this emerging field of molecular medicine.
18 have demonstrated considerable potential for molecular medicine.
19 ently being investigated as another tool for molecular medicine.
20 ion of single-base changes is fundamental to molecular medicine.
21 id delivery systems, advancing the future of molecular medicine.
22 School and an endowed chair in cellular and molecular medicine.
23 hanced detection of biomarkers in cancer and molecular medicine.
24 t one of the great success stories of modern molecular medicine.
25 prove the delivery and efficacy of nano- and molecular medicines.
28 gs are consistent with PML.The Laboratory of Molecular Medicine and Neuroscience (LMMN), National Ins
29 orbent assays performed at the Laboratory of Molecular Medicine and Neuroscience, National Institute
31 t only introduced a new era in the fields of molecular medicine and targeted therapies but may also p
32 icantly enhanced by technical innovations in molecular medicine and the integration of cutaneous biol
34 The merging fields of molecular biology, molecular medicine, and imaging modalities may provide t
36 amounts of data emerging from experiments in molecular medicine are leading to the identification of
39 that this virus is of increasing interest to molecular medicine as a vector for gene delivery, relati
42 equirement for quantitative data analysis in molecular medicine, biotechnology, microbiology and diag
46 s promise to accelerate rapidly a new era in molecular medicine, especially in the detection and disc
48 ly manipulated mammals fulfills a promise of molecular medicine: fusion of molecular biochemistry wit
54 demic programs now embracing the concepts of molecular medicine (i.e., targeting changes in specific
56 ntional procedures, surgical techniques, and molecular medicine-including gene editing and RNA-based
61 nology that will be driven by the demands of molecular medicine, notably sensitive and specific molec
64 ases are increasingly important resources in molecular medicine, systems biology, and pharmacology.
65 ons, as well as lessons for other aspects of molecular medicine, the origin of which can be largely t
67 e editing to the clinic and hold promise for molecular medicine to address human disease at its root.
68 erstanding of gene-nutrient interactions and molecular medicine to address potential mechanisms by wh
69 continues to be a model for applications of molecular medicine to clinical delineation, diagnosis, a
70 The MOT provides a clinical venue to allow molecular medicine to rapidly advance, answers questions
74 e at the Institute of Infectious Disease and Molecular Medicine, University of Cape Town, South Afric