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Comparative Biochemistry and Physiology. B, Comparative Biochemistry|January 1, 1989
Effects of anaerobiosis on adenine nucleotide levels and the release of ATP by Leishmania major promastigotesT N Darling, J J BlumMolecular and Biochemical Parasitology|March 1, 1988
D-lactate production by Leishmania braziliensis through the glyoxalase pathwayT N Darling, J J BlumThe Journal of Protozoology|July 1, 1990
Changes in the shape of Leishmania major promastigotes in response to hexoses, proline, and hypo-osmotic stressT N Darling, J J BlumThe Journal of Protozoology|May 1, 1987
In vitro reversible transformation of Leishmania braziliensis panamensis between promastigote and ellipsoidal formsT N Darling, J J BlumJournal of the American Academy of Dermatology|May 1, 1993
Acquired cutaneous smooth muscle hamartomaT N Darling, H Kamino, J C MurrayThe Journal of Protozoology|November 1, 1990
Rapid shape change and release of ninhydrin-positive substances by Leishmania major promastigotes in response to hypo-osmotic stressT N Darling, C M Burrows, J J BlumMolecular and Biochemical Parasitology|September 1, 1988
A comparative study of D-lactate, L-lactate and glycerol formation by four species of Leishmania and by Trypanosoma lewisi and Trypanosoma brucei gambienseT N Darling, A E Balber, J J BlumAdvances in Dermatology|January 1, 1997
Generalized atrophic benign epidermolysis bullosaT N Darling, J W Bauer, H Hintner, et al.The Journal of Protozoology|March 1, 1989
Metabolic interactions between glucose, glycerol, alanine and acetate in Leishmania braziliensis panamensis promastigotesT N Darling, D G Davis, R E London, et al.Molecular and Biochemical Parasitology|March 1, 1989
Carbon dioxide abolishes the reverse Pasteur effect in Leishmania major promastigotesT N Darling, D G Davis, R E London, et al.Pageof 3