Journal of Surgery Concepts & Practice ›› 2024, Vol. 29 ›› Issue (05): 376-381.doi: 10.16139/j.1007-9610.2024.05.02
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ZHAO Xin, GAO Peng,*, CHEN Jie()
Received:
2024-08-05
Online:
2024-09-25
Published:
2025-01-23
Contact:
CHEN Jie
E-mail:chenjiewestchina@163.com
CLC Number:
ZHAO Xin, GAO Peng, CHEN Jie. Robotic-assisted surgical systems in treatment of breast cancer: applications and prospects[J]. Journal of Surgery Concepts & Practice, 2024, 29(05): 376-381.
Tab 1
Recent robotic-assisted breast surgery clinical trial records from the Clinicaltrial.gov website
Clinicaltrial.gov ID | 研究单位 | 研究类型 | 研究对象 | 主要研究终点 | 状态 | 研究题目 |
---|---|---|---|---|---|---|
NCT05945914 | Chang Gung Memorial Hospital | 前瞻性观察性研究 | 2020.3—2023.6同时接受机器人辅助乳房切除术和机器人辅助游离DIEP皮瓣采集术进行乳房重建的病人 | 急、慢性并发症发生率 | 已完成 | Oncoplastic entirely robot-assisted approach (opera) - incorporating robotic surgery in both mastectomy and DIEP flap reconstruction |
NCT04108117 | Severance Hospital | 多中心观察性研究 | 2016—2020年期间接受NSM的病人(共招募659例) | 术后 30 d内的并发症发生率 | 已完成 | Surgical and oncologic outcomes after RNSM and immediate reconstruction: an international multicenter pooled analysis |
NCT06415526 | Chang Gung Memorial Hospital | 回顾性观察性研究 | 接受机器人辅助乳房切除术和机器人辅助游离 DIEP皮瓣采集术行乳房重建的单侧乳腺癌病人(共招募14例) | 切口长度、手术时间、皮瓣大小 | 已完成 | Oncoplastic entirely robot-assisted approach (OPERA) - incorporating robotic surgery in both mastectomy and DIEP flap reconstruction |
NCT06532955 | Maastricht University Medical Center | 前瞻性干预性研究 | 60例接受机器人辅助或人工淋巴-静脉吻合术(LVA)治疗乳腺癌相关淋巴水肿(BCRL)的病人 | LVA的效率 | 进行中 | Pilot study on robotic assisted microsurgical lymphatico-venular anastomosis |
NCT04585074 | Severance Hospital | 前瞻性观察性研究 | 19~80岁乳腺癌或乳腺癌高风险(BRCA1/2、TP53、PALB2基因突变等),计划接受治疗性或预防性乳房切除术,并希望即刻乳房重建的病人 | 术后30 d内并发症发生率、Clavien-Dindo术后并发症分级 | 进行中 | Prospective cohort study of mastectomy with reconstruction including robot endoscopic breast surgery |
NCT05720039 | Intuitive Surgical (Responsible Party) | 前瞻性、双臂、多中心、随机对照临床研究 | ≥21岁的早期乳腺癌病人,接受da Vinci机器人辅助SP手术或开放乳头乳晕切除术 | da Vinci Xi机器人辅助手术转换为开放手术的比例、不良事件发生率、手术边缘阳性率 | 进行中 | A prospective, multicenter randomized controlled trial (RCT) of the Da Vinci® SP™ surgical system vs. open surgery in NSM procedures |
NCT02274493 | M.D. Anderson Cancer Center | 前瞻性干预性临床研究 | 年满18岁且正在接受需采集背阔肌的整形手术,同意接受术后6个月的随访 | 机器人辅助采集术后背阔肌瓣(latissimus dorsi, LD)存活的参与者人数、术后 6个月捐献部位并发症评估 | 已完成 | Pilot study of robotic-assisted harvest of the latissimus dorsi muscles |
NCT03440398 | European Institute of Oncology | 前瞻性随机临床研究 | 82例接受开放NSM和即刻假体植入乳房重建术或RNSM的病人 | 病人的满意度;术后效果,包括并发症、术后疼痛、长期肿瘤治疗效果等 | 进行中 | RNSM and immediate robotic breast reconstruction vs. conventional open technique: a prospective randomized trial evaluating patients satisfaction |
NCT05490433 | Yonsei University | 前瞻性多中心随机临床研究 | 19~70岁确诊为乳腺癌,接受RNSM或传统开放NSM的病人 | 5年无病生存率、5年总生存率、5年乳腺癌特异性生存率 | 进行中 | A Prospective Multicenter Rando-mized Clinical Trial: Robot-assisted vs. Open Nipple-sparing Mastectomy With Immediate Breast Reconstruction (ROM) Trial |
NCT05448963 | Chang Gung Memorial Hospita | 前瞻性干预性临床研究 | 20~80岁乳腺癌病人或预防性乳房切除术候选者接受SP辅助单侧或双侧NSM | 手术效果(使用da Vinci SP系统完成NSM,未转换为传统腹腔镜、多孔da Vinci手术或开放手术的比例) | 进行中 | A pilot study of RNSM followed by immediate breast reconstruction using da Vinci SP ® single-port system |
NCT04151368 | University Health Network, Toronto | 前瞻性单臂干预性临床研究 | 患有浸润性乳腺癌、DCIS、BRCA或其他乳腺癌基因突变携带的任何年龄女性 | RNSM可行性、切口并发症、首次复发部位 | 已暂停 | Robotic NSM with immediate prosthetic breast reconstruction: prospective study of feasibility, safety and patient satisfaction, Toronto experience |
[1] | ARNOLD M, MORGAN E, RUMGAY H, et al. Current and future burden of breast cancer: global statistics for 2020 and 2040[J]. Breast, 2022,66:15-23. |
[2] |
WYLD L, AUDISIO R A, POSTON G J. The evolution of cancer surgery and future perspectives[J]. Nat Rev Clin Oncol, 2015, 12(2):115-124.
doi: 10.1038/nrclinonc.2014.191 pmid: 25384943 |
[3] | DIANA M, MARESCAUX J. Robotic surgery[J]. Br J Surg, 2015, 102(2):e15-e28. |
[4] | YU H Y, FRIEDLANDER D F, PATEL S, et al. The current status of robotic oncologic surgery[J]. CA Cancer J Clin, 2013, 63(1):45-56. |
[5] |
MEADOWS M. Robots lend a helping hand to surgeons[J]. FDA consumer, 2002, 36(3):10-15.
pmid: 12085803 |
[6] | ASHRAFIAN H, CLANCY O, GROVER V, et al. The evolution of robotic surgery: surgical and anaesthetic aspects[J]. Br J Anaesth, 2017, 119(suppl_1):i72-i84. |
[7] | JAIN Y, LANJEWAR R, SHINDE R K. Revolutionising breast surgery: a comprehensive review of robotic innovations in breast surgery and reconstruction[J]. Cureus, 2024, 16(1):e52695. |
[8] |
AUTORINO R, KAOUK J H, STOLZENBURG J U, et al. Current status and future directions of robotic single-site surgery: a systematic review[J]. Eur Urol, 2013, 63(2):266-280.
doi: 10.1016/j.eururo.2012.08.028 pmid: 22940173 |
[9] | TOESCA A, PERADZE N, GALIMBERTI V, et al. Robotic nipple-sparing mastectomy and immediate breast reconstruction with implant: first report of surgical technique[J]. Ann Surg, 2017, 266(2):e28-e30. |
[10] | VOCI A, LEE D, HO E, et al. Impact of port site scar on perception of patients with breast cancer: patient-reported outcomes[J]. Breast Cancer Res Treat, 2018, 170(3):569-572. |
[11] |
PARK K U, CHA C, POZZI G, et al. Robot-assisted nipple sparing mastectomy: recent advancements and ongoing controversies[J]. Curr Breast Cancer Rep, 2023, 15(2):127-134.
doi: 10.1007/s12609-023-00487-1 pmid: 37293274 |
[12] | SARFATI B, HONART J F, LEYMARIE N, et al. Robotic da Vinci Xi-assisted nipple-sparing mastectomy: first clinical report[J]. Breast J, 2018, 24(3):373-376. |
[13] | FARR D E, HADDOCK N T, TELLEZ J, et al. Safety and feasibility of single-port robotic-assisted nipple-sparing mastectomy[J]. JAMA Surg, 2024, 159(3):269-276. |
[14] |
PARK H S, KIM J H, LEE D W, et al. Gasless robot-assisted nipple-sparing mastectomy: a case report[J]. J Breast Cancer, 2018, 21(3):334-338.
doi: 10.4048/jbc.2018.21.e45 pmid: 30275863 |
[15] | GO J, AHN J H, PARK J M, et al. Analysis of robot-assisted nipple-sparing mastectomy using the da Vinci SP system[J]. J Surg Oncol, 2022, 126(3):417-424. |
[16] | WATROWSKI R, KOSTOV S, ALKATOUT I. Complications in laparoscopic and robotic-assisted surgery: definitions, classifications, incidence and risk factors-an up-to-date review[J]. Wideochir Inne Tech Maloinwazyjne, 2021, 16(3):501-525. |
[17] | OROSCO R K, TAM K, NAKAYAMA M, et al. Transoral supraglottic laryngectomy using a next-generation single-port robotic surgical system[J]. Head Neck, 2019, 41(7):2143-2147. |
[18] |
SONG Y, ZENG J, TIAN X, et al. A review of different breast reconstruction methods[J]. Am J Transl Res, 2023, 15(6):3846-3855.
pmid: 37434844 |
[19] | SELBER J C, BAUMANN D P, HOLSINGER F C. Robotic latissimus dorsi muscle harvest: a case series[J]. Plast Reconstr Surg, 2012, 129(6):1305-1312. |
[20] | LAI H W, CHEN S T, LIN S L, et al. Technique for single axillary incision robotic assisted quadrantectomy and immediate partial breast reconstruction with robotic latissimus dorsi flap harvest for breast cancer: a case report[J]. Medicine (Baltimore), 2018, 97(27):e11373. |
[21] | FOUARGE A, CUYLITS N. From open to robotic-assisted latissimus dorsi muscle flap harvest[J]. Plast Reconstr Surg Glob Open, 2020, 8(1):e2569. |
[22] | MANRIQUE O J, BUSTOS S S, MOHAN A T, et al. Robotic-assisted DIEP flap harvest for autologous breast reconstruction: a comparative feasibility study on a cada-veric model[J]. J Reconstr Microsurg, 2020, 36(5):362-368. |
[23] |
GUNDLAPALLI V S, OGUNLEYE A A, SCOTT K, et al. Robotic-assisted deep inferior epigastric artery perforator flap abdominal harvest for breast reconstruction: a case report[J]. Microsurgery, 2018, 38(6):702-705.
doi: 10.1002/micr.30297 pmid: 29368352 |
[24] |
CHOI J H, SONG S Y, PARK H S, et al. Robotic DIEP flap harvest through a totally extraperitoneal approach using a single-port surgical robotic system[J]. Plast Reconstr Surg, 2021, 148(2):304-307.
doi: 10.1097/PRS.0000000000008181 pmid: 34398082 |
[25] | DAYARATNA N, AHMADI N, MAK C, et al. Robotic‐assisted deep inferior epigastric perforator (DIEP) flap harvest for breast reconstruction[J]. ANZ J Surg, 2023, 93(4):1072-1074. |
[26] | THORNTON R, DAVEY M G, KERIN M J. Evaluating the utility of robotic axillary lymph node dissection in patients with invasive breast cancer: a systematic review[J]. Ir J Med Sci, 2024, 193(3):1163-1170. |
[27] |
LIM S M, KUM C K, LAM F L. Nerve-sparing axillary dissection using the da Vinci surgical system[J]. World J Surg, 2005, 29(10):1352-1355.
pmid: 16142429 |
[28] | LEE J, PARK H S, LEE H, et al. Axillary lymph node dissection using a robotic surgical system: initial experience[J]. J Surg Oncol, 2020, 122(6):1252-1256. |
[29] | AHN J H, PARK J M, CHOI S B, et al. Early experience of robotic axillary lymph node dissection in patients with node-positive breast cancer[J]. Breast Cancer Res Treat, 2023, 198(3):405-412. |
[30] |
HOUVENAEGHEL G, BANNIER M, RUA S, et al. Breast cancer robotic nipple sparing mastectomy: evaluation of several surgical procedures and learning curve[J]. World J Surg Oncol, 2019, 17(1):27.
doi: 10.1186/s12957-019-1567-y pmid: 30728011 |
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