Biology Reference
In-Depth Information
198. Taniguchi M, Cramer DL, Bhise AD, Kee HL, Bocian DF, Holten D, et al. Accessing
the near-infrared spectral region with stable, synthetic, wavelength-tunable bacteri-
ochlorins. New J Chem 2008;32:947-58.
199. Ptaszek M, Lahaye D, Krayer M, Muthiah C, Lindsey JS. De novo synthesis of long-
wavelength absorbing chlorin-13,15-dicarboximides. J Org Chem 2010;75:1659-73.
200. Mass O, Taniguchi M, Ptaszek M, Springer JW, Faries KM, Diers JR, et al. Structural
characterization that make chlorophyll green: interplay of hydrocarbon skeleton and
substituents. New J Chem 2010;34:1-13.
201. Muthiah C, Kee HL, Diers JR, Fan D, Ptaszek M, Bocian DF, et al. Synthesis and
excited-state photodynamics of a chlorin-bacteriochlorin dyad: through-space versus
through-bond
energy
transfer
in
tetrapyrrole
arrays.
Photochem Photobiol
2008;84:786-801.
202. Kee HL, Nothdurft R, Muthiah C, Diers JR, Fan D, Ptaszek M, et al. Examination of
chlorin-bacteriochlorin energy-transfer dyads as prototypes for near-infrared molecular
imaging probes. Photochem Photobiol 2008;84:1061-72.
203. Hambright P. Chemistry of water soluble porphyrins. In: Kadish KM, Smith KM,
Guilard R, editors. The porphyrin handbook , vol. 3. San Diego: Academic Press;
2000. p. 129-210.
204. Borbas KE, Chandrashaker V, Muthiah C, Kee HL, Holten D, Lindsey JS. Design, syn-
thesis, and photophysical characterization of water-soluble chlorins. J Org Chem
2008;73:3145-58.
205. Bri˜as RP, Troxler T, Hochstrasser RM, Vinogradov SA. Phosphorescent oxygen sen-
sor with dendritic protection and two-photon absorbing antenna. J Am Chem Soc
2005;127:11851-62.
206. Finikova O, Galkin A, Rozhkov V, Cordero M, H¨gerh¨ll C, Vinogradov S. Porphy-
rin and tetrabenzoporphyrin dendrimers: tunable membrane-impermeable fluorescent
pH nanosensors. J Am Chem Soc 2003;125:4882-93.
207. Duncan TV, Ghoroghchian PP, Rubtsov IV, Hammer DA, Therien MJ. Ultrafast
excited-state dynamics of nanoscale near-infrared emissive polymersomes. J Am Chem
Soc 2008;130:9733-84.
208. Ceroni P, Lebedev AY, Marchi E, Yuan M, Esipova TV, Bergamini G, et al. Evalu-
ation of phototoxicity of dendritic porphyrin-based phosphorescent oxygen probes: an
in vitro study. Photochem Photobiol 2011;10:1056-65.
209. Tatman D, Liddell PA, Moore TA, Gust D, Moore AL. Carotenohematoporphyrins as
tumor-imaging dyes. Synthesis and in vitro photophysical characterization. Photochem
Photobiol 1998;68:459-66.
210. Chen J, Stefflova K, Niedre M, Wilson BC, Chance B, Glickson JD, et al. Protease-
triggered photosensitizing beacon based on singlet oxygen quenching and activation.
J Am Chem Soc 2004;126:11450-1.
211. Nesterova IV, Verdree VT, Pakhomov S, Strickler KL, Allen MW, Hammer RP, et al.
Metallo-phthalocyanine near-IR fluorophores: oligonucleotide conjugates and their
applications in PCR assays. Bioconjugate Chem 2007;18:2159-68.
212. Nesterova IV, Erdem S, Pakhomov S, Hammer RP, Soper SA. Phthalocyanine
dimerization-based molecular beacon using near-IR fluorescence. J Am Chem Soc
2009;
:2432-3.
213. Peng X, Draney DR, Volcheck WM, Bashford GR, Lamb DT, Grone DL, et al.
Phthalocyanine dye as an extremely photostable and highly fluorescent near-infrared
labeling reagent. SPIE-Int Soc Opt Eng 2006;6097E:1-12.
214. Li H, Jensen TJ, Fronczek FR, Vicente MGH. Synthesis and properties of a series of
cationic water-soluble phthalocyanines. J Med Chem 2008;51:502-11.
131
Search WWH ::




Custom Search