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Timothy D. Lash

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Protein Science : a Publication of the Protein Society|January 24, 2007
Role of aspartate 400, arginine 262, and arginine 401 in the catalytic mechanism of human coproporphyrinogen oxidaseJason R Stephenson, Julie A Stacey, Justin B Morgenthaler, et al.
Bioorganic & Medicinal Chemistry|February 1, 2011
Normal and abnormal heme biosynthesis. Part 7. Synthesis and metabolism of coproporphyrinogen-III analogues with acetate or butyrate side chains on rings C and D. Development of a modified model for the active site of coproporphyrinogen oxidaseTimothy D Lash, Teresa R Lamm, J Andy Schaber, et al.
The Journal of Organic Chemistry|December 1, 2025
Synthesis of Phenaliporphyrin, a PAH-Porphyrin Hybrid, from an Acenaphthene-Fused Cyclopropane DialdehydeSunday Oladapo Jacob, Emily D Harris, Melissa A Mathius, et al.
Photochemistry and Photobiology|March 6, 2010
Association of acenaphthoporphyrins with liposomes for the photodynamic treatment of leishmaniasisDaniel M Gardner, Viviana M Taylor, David L Cedeño, et al.
Photochemistry and Photobiology|November 11, 2011
New application for expanded porphyrins: sapphyrin and heterosapphyrins as inhibitors of Leishmania parasitesJaqueline D Hooker, Victoria H Nguyen, Viviana M Taylor, et al.
Biochemistry|June 18, 2015
Unusual Peroxide-Dependent, Heme-Transforming Reaction Catalyzed by HemQArianna I Celis, Bennett R Streit, Garrett C Moraski, et al.
Antimicrobial Agents and Chemotherapy|July 27, 2011
In vitro and in vivo studies of the utility of dimethyl and diethyl carbaporphyrin ketals in treatment of cutaneous leishmaniasisViviana M Taylor, David L Cedeño, Diana L Muñoz, et al.
Bioorganic & Medicinal Chemistry|June 11, 2008
Carbaporphyrin ketals as potential agents for a new photodynamic therapy treatment of leishmaniasisJustin B Morgenthaler, Steven J Peters, David L Cedeño, et al.
Pageof 11

Showing results (101-110 of 108) with videos related to

Sort By:
Pageof 11
You have reached the last page of results.This site can display upto 108 results.
Protein Science : a Publication of the Protein Society|January 24, 2007
Role of aspartate 400, arginine 262, and arginine 401 in the catalytic mechanism of human coproporphyrinogen oxidaseJason R Stephenson, Julie A Stacey, Justin B Morgenthaler, et al.
Bioorganic & Medicinal Chemistry|February 1, 2011
Normal and abnormal heme biosynthesis. Part 7. Synthesis and metabolism of coproporphyrinogen-III analogues with acetate or butyrate side chains on rings C and D. Development of a modified model for the active site of coproporphyrinogen oxidaseTimothy D Lash, Teresa R Lamm, J Andy Schaber, et al.
The Journal of Organic Chemistry|December 1, 2025
Synthesis of Phenaliporphyrin, a PAH-Porphyrin Hybrid, from an Acenaphthene-Fused Cyclopropane DialdehydeSunday Oladapo Jacob, Emily D Harris, Melissa A Mathius, et al.
Photochemistry and Photobiology|March 6, 2010
Association of acenaphthoporphyrins with liposomes for the photodynamic treatment of leishmaniasisDaniel M Gardner, Viviana M Taylor, David L Cedeño, et al.
Photochemistry and Photobiology|November 11, 2011
New application for expanded porphyrins: sapphyrin and heterosapphyrins as inhibitors of Leishmania parasitesJaqueline D Hooker, Victoria H Nguyen, Viviana M Taylor, et al.
Biochemistry|June 18, 2015
Unusual Peroxide-Dependent, Heme-Transforming Reaction Catalyzed by HemQArianna I Celis, Bennett R Streit, Garrett C Moraski, et al.
Antimicrobial Agents and Chemotherapy|July 27, 2011
In vitro and in vivo studies of the utility of dimethyl and diethyl carbaporphyrin ketals in treatment of cutaneous leishmaniasisViviana M Taylor, David L Cedeño, Diana L Muñoz, et al.
Bioorganic & Medicinal Chemistry|June 11, 2008
Carbaporphyrin ketals as potential agents for a new photodynamic therapy treatment of leishmaniasisJustin B Morgenthaler, Steven J Peters, David L Cedeño, et al.
Pageof 11