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1 tions, including solar energy conversion and photochemotherapy.
2 intenance immunosuppression and prophylactic photochemotherapy.
3 th regard to the potential use of MKT-077 in photochemotherapy.
4 actinic keratosis, photodynamic therapy, and photochemotherapy.
5 ls in response to topical drug treatment and photochemotherapy.
6    The potential of both compounds to act as photochemotherapy agents was evaluated.
7  to be useful for increasing the efficacy of photochemotherapy drugs by acting via two different mech
8                               Extracorporeal photochemotherapy (ECP) has been associated with clinica
9                               Extracorporeal photochemotherapy (ECP) has been shown to be an effectiv
10                               Extracorporeal photochemotherapy (ECP) is widely used to treat cutaneou
11 pical drugs and in mediating the response to photochemotherapy in psoriasis.
12                                              Photochemotherapy-in which a photosensitizing drug is co
13  as photoradiation therapy, phototherapy, or photochemotherapy, involves the use of a photoactive dye
14                      Psoralen and UVA (PUVA) photochemotherapy is associated with a dose-dependent in
15 ese findings, we conclude that IFN plus oral photochemotherapy is superior to IFN plus acitretin, ind
16 otosensitization processes and some forms of photochemotherapy, is nowadays becoming more and more im
17 erate disease; and systemic agents including photochemotherapy, oral agents, and newer injectable bio
18 after ingestion of the standard dose used in photochemotherapy (psoralen plus ultraviolet A).
19 n monotherapy, combinations of IFN with oral photochemotherapy (PUVA) or retinoids were investigated
20                                              Photochemotherapy was applied after oral intake of 8-met
21                                              Photochemotherapy with oral methoxsalen (psoralen) and u

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