Purpose <p>Lymphoscintigraphy is crucial for diagnosis of lymphatic abnormality and sentinel lymph node (SLN) detection in surgery. We investigated the feasibility of [<sup>99m</sup>Tc]Tc-mannosylated human serum albumin (MSA) as a new imaging agent for lymphoscintigraphy.</p> Methods <p>In the first part, three healthy volunteers were enrolled to evaluate the safety and basic efficacy of [<sup>99m</sup>Tc]Tc-MSA, using [<sup>99m</sup>Tc]Tc-phytate as a comparator. In the volunteers, the two radiopharmaceuticals were injected into the interphalangeal web of bilateral feet on different days. Whole-body scans were performed serially until 24&#xa0;h after the injection. The biodistribution, radiation dosimetry, and safety were evaluated. In the second step, six breast cancer patients planned for operation were enrolled. SLN imaging was performed using [<sup>99m</sup>Tc]Tc-MSA two days before operation, and again on the day of operation using [<sup>99m</sup>Tc]Tc-phytate. The efficacy of SLN detection was evaluated using a visual grade system and compared between the two different radiopharmaceuticals.</p> Results <p>[<sup>99m</sup> Tc]Tc-MSA and [<sup>99m</sup>Tc]Tc-phytate show comparable biodistribution in evaluated organs and inguinal lymph node stations. [<sup>99m</sup>Tc]Tc-MSA showed relatively slower migration speed through lymphatic vessels and clearer visualization of lymphatics than [<sup>99m</sup>Tc]Tc-phytate. No abnormality was observed in safety parameters. In the radiation dosimetry, whole body dose at usual injection dose (74 MBq) was estimated to be 236 µSv. In SLN imaging in breast cancer patients, [<sup>99m</sup>Tc]Tc-MSA showed higher target-to-background ratio than [<sup>99m</sup>Tc]Tc-phytate, with clear visualization of SLN with both imaging agents.</p> Conclusion <p>[<sup>99m</sup>Tc]Tc-MSA is a safe and effective imaging agent for lymphoscintigraphy. Particularly, [<sup>99m</sup>Tc]Tc-MSA can be a more effective radiopharmaceutical for SLN imaging than [<sup>99m</sup>Tc]Tc-phytate.</p>

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Feasibility of [99mTc]Tc-Mannosylated Human Serum Albumin for Lymphoscintigraphy: A Phase 1/2 Clinical Trial

  • Hyunpil Sung,
  • Minseok Suh,
  • Hyun Gee Ryoo,
  • Jin Chul Paeng,
  • Wonshik Han,
  • Jae-Min Jeong,
  • Kweon Kim,
  • Gi Jeong Cheon

摘要

Purpose

Lymphoscintigraphy is crucial for diagnosis of lymphatic abnormality and sentinel lymph node (SLN) detection in surgery. We investigated the feasibility of [99mTc]Tc-mannosylated human serum albumin (MSA) as a new imaging agent for lymphoscintigraphy.

Methods

In the first part, three healthy volunteers were enrolled to evaluate the safety and basic efficacy of [99mTc]Tc-MSA, using [99mTc]Tc-phytate as a comparator. In the volunteers, the two radiopharmaceuticals were injected into the interphalangeal web of bilateral feet on different days. Whole-body scans were performed serially until 24 h after the injection. The biodistribution, radiation dosimetry, and safety were evaluated. In the second step, six breast cancer patients planned for operation were enrolled. SLN imaging was performed using [99mTc]Tc-MSA two days before operation, and again on the day of operation using [99mTc]Tc-phytate. The efficacy of SLN detection was evaluated using a visual grade system and compared between the two different radiopharmaceuticals.

Results

[99m Tc]Tc-MSA and [99mTc]Tc-phytate show comparable biodistribution in evaluated organs and inguinal lymph node stations. [99mTc]Tc-MSA showed relatively slower migration speed through lymphatic vessels and clearer visualization of lymphatics than [99mTc]Tc-phytate. No abnormality was observed in safety parameters. In the radiation dosimetry, whole body dose at usual injection dose (74 MBq) was estimated to be 236 µSv. In SLN imaging in breast cancer patients, [99mTc]Tc-MSA showed higher target-to-background ratio than [99mTc]Tc-phytate, with clear visualization of SLN with both imaging agents.

Conclusion

[99mTc]Tc-MSA is a safe and effective imaging agent for lymphoscintigraphy. Particularly, [99mTc]Tc-MSA can be a more effective radiopharmaceutical for SLN imaging than [99mTc]Tc-phytate.