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M Y Shu

Publications and source records attributed to M Y Shu.

4 recordsLinked to original sources

Photodynamic therapy in the treatment of malignant tumours: an analysis of 540 cases.

Malignant tumours (540 cases), including tumours of the lung, oesophagus, cardia, stomach, rectum, bladder, other urinary genital organs, face and mouth, eyes, ear, nose and throat (ENT), head and neck, breast and skin, were treated using photodynamic therapy (PDT) between 1982 and 1985 in Beijing. All of the cases were identified pathologically and the patients received haematoporphyrin derivative (HPD) (5 mg kg-1) intravenously 48-72 h prior to PDT. An argon-pumped dye laser emitting at 630 nm was used for the treatment. The results were as follows: complete response (CR) was obtained in 227 cases (42.1%), partial response (PR) was obtained in 114 cases (21.1%), mild response (MR) was obtained in 120 cases (22.2%) and 79 cases (14.6%) showed no response (NR). The effectiveness of PDT in the different organs was compared. HPD fluorescence was examined in 409 cases of malignant tumours: 344 lesions (84.1%) revealed red fluorescence (positive reaction), 32 gave an equivocal response and 33 gave a negative reaction. Positive fluorescence was seen in all types of malignant tumour in our study. Indications and limitations of PDT for the different organs are discussed and compared.

Argon

Hematoporphyrin derivative and laser photodynamical reaction in the diagnosis and treatment of malignant tumors.

This paper reports the use of hematoporphyrin derivative (HpD) with laser activation in China for the diagnosis and treatment of various kinds of malignant neoplasms. Fluorescence observation for diagnosis was performed for 170 tumors. One hundred and fifty-one (88.8%) fluoresced visably upon excitation with either argon or He-Cd laser light. One hundred and thirty-nine malignant tumors in 136 patients were treated by this method. The percentage of all tumors responding to treatment was 80.6%. Partial to complete response were obtained in 51.1% of the tumors treated. The advantages and disadvantages of this method are discussed. It was found effective in treating various kinds of neoplasms located at different anatomical sites. The penetrating depth of the laser is shallow. This limits its effect and application. A search for new photosensitizing drugs and an increase in the penetrating depth of laser irradiation are urgent goals for further development of this technique.

Antineoplastic Agents