2008年10月21日 星期二

標靶治療+個人化醫療 乳癌治療未來趨勢

標靶治療+個人化醫療 乳癌治療未來趨勢
高醫附設醫院癌症中心主任侯明鋒:最好的治療是更早發現乳癌
【中國時報 文/李盛雯】2008.10.14

「如果標靶藥物發展越來越好,未來那些較有毒性的化學治療可能被拋棄;另一方面,個人化醫療將是最重要的趨勢。」高醫附設醫院癌症中心主任侯明鋒一語道出未來乳癌的治療前景。

標靶藥物取代強毒化療藥 指日可待

  侯明鋒是乳癌權威,被稱為「南台灣第一刀」,挽救許多患者生命。在乳癌治療上,歷經不同年代,從過去只有少數藥物可以選擇,到現在有多種藥物可供組合,且絕大部分有健保給付,乳癌患者存活率得以大幅提高。

  談到乳癌的治療趨勢,侯明鋒認為台灣無論手術技術或藥物使用都跟上國際水準,乳癌整體治療很樂觀。隨著標靶藥物陸續上市,加上服藥便利性增加,未來毒性較強的化療藥物有可能被取代,「癌症很可能像高血壓、糖尿病一樣,變成一種慢性疾病。」

選擇有效的藥物  用在有效的病人

  標靶藥物帶來新希望,但侯明鋒認為,「更重要的是個人化的醫療。」隨著生物標記的發展、篩檢技術的進步,「誰適合使用哪些藥物?要好好分析。」他預測不久的未來,也許會有好幾百種癌症標靶藥物上市,透過基因晶片分析,一個病人可能同時併用好幾種標靶藥物,「選擇有效的藥物、用在有效的病人身上」。

  除了「標靶藥物」和「個人化醫療」兩大發展趨勢,侯明鋒強調「最好的治療是  更早發現乳癌。」透過篩檢,越早找到零期乳癌,就越能防治乳癌,「這些零期病人甚至根本不需要做化療。從經濟效益來看,更節省費用,治療也更有效。」


生機飲食治癌?醫師戳破迷思

生機飲食治癌?醫師戳破迷思
【中國時報 朱武智/台北報導】2008.06.16

光靠生機飲食就能治癌?錯!此舉不但延誤治療,更會導致病情惡化。國內醫師強調,沒有證據顯示吃生機飲食可以預防癌症,且針對已罹癌病人,生機飲食只能幫助排便,無助於治療。呼籲癌友仍應回到常規治療管道,搭配均衡飲食,葷、素適量吃,才能增強治療過程身體所需抵抗力。

     基隆長庚醫院癌症中心主任王正旭曾看過一位五十多歲第三期乳癌女性患者,她堅持不開刀、不化療,只想靠吃生機飲食「自療」。半年後惡化成第四期乳癌,原本十五公分大的腫瘤擴大成整個乳房都是硬塊,只好回頭治療,但為時已晚,導致預後較差。

     台大醫院外科教授張金堅也指出,曾有乳癌患者堅持用生機療法取代開刀、化療,卻導致癌細胞轉移到腋下淋巴與骨頭。

     兩位醫師都說,病人堅持生機飲食治療的理由千奇百怪,有些看到同樣罹癌的親友過世,就說「反正治療也沒效」;也有人會當面拿出名人代言的廣告,告訴醫生:「你看,他(名人家屬)也是靠生機飲食『醫』好的!」

     醫師強調,生機飲食不但無法治癌,開刀後與化療期間,光吃蔬果會導致病人體力不濟、抵抗力降低,反而有害治療。

     多數癌症病人對飲食存有迷思,認為吃太營養反而助長癌細胞生長,所以拒吃肉類,只吃有機蔬果為主的生機飲食。王正旭表示,這都是錯誤觀念,癌症病人更應藉均衡飲食來增加營養攝取。

     以牛肉、豬肉等紅肉來說,富含蛋白質,是術後與化療期間體虛病人重要的營養來源。王正旭提醒病人不應偏廢,需適量攝取。

     再者,生機飲食主張「全食物」觀念,強調蔬果表皮一起吃下肚,且認為應少油、少烹調、生吃最好。醫生認為,此舉恐會導致癌症病人吃進殘留農藥或微生菌,反而對病人有害。

     導致癌症的原因很複雜,很難單獨歸咎於飲食習慣。王正旭表示,病人反應吃生機飲食後「排便順暢、神清氣爽」,但這並不代表癌症得到治療。建議病人除了接受正規治療外,飲食也應均衡,不需刻意偏食。


中時健康:http://health.chinatimes.com/contents.aspx?cid=6,56&id=1581

健保需知:衛生署核准新式口服標靶用藥

衛生署核准新式口服標靶用藥
提供晚期乳癌患者的新選擇
【中時健康 楊格非/台北報導】2008.10.20

  針對ErbB2呈陽性反應的轉移性乳癌治療有了新選擇!新式口服標靶用藥「泰嘉錠」於今年九月正式通過衛生署核准上市,大約可以改善五百名Erb2陽性的晚期乳癌病患目前無藥可用的窘境。

  乳癌在台灣占女性癌症死因第四位,且位居婦女癌症發生率首位,根據衛生署統計報告,2005年乳癌新增病例為6593人,其中有三成患者會腫瘤轉移。

  台灣乳房醫學會理事長、長庚醫院乳房外科主任陳訓徹表示,根據臨床研究發現,約有三成左右的病患在接受過完整手術治療、賀爾蒙治療或輔助性治療(化療、放射線治療),仍會發生癌細胞轉移的現象,而其中約有四分之一的病人屬於ErbB2陽性反應。

  如以6592名乳癌新病例來推估,將近兩千名乳癌患者會發生癌細胞轉移的,其中又有近500名屬於ErbB2陽性反應,對於現有單株抗體針劑型標靶藥物的治療效果欠佳。

  陳訓徹指出,傳統上乳癌治療所使用的代表性標靶藥物為「賀癌平」,利用基因重組技術製得的單株抗體,可結合至ErbB2蛋白質細胞表面抗原,用於治療轉移性且腫瘤細胞上有ErbB2過度表現之乳癌病患,但治療效果受到侷限。

  新式乳癌標靶藥物「泰嘉錠」屬於口服的小分子酪胺激(酉每)抑制劑,突破過去治療瓶頸,可藉由其小分子特性進入細胞內,直接作用在訊息傳遞路徑的下游地區,有效阻斷傳導路徑的活化,阻斷癌細胞生長分裂,。

  根據2006年新英格蘭醫學期刊(NEJM)一篇國際性研究指出,經過各種化療、其他針劑型標靶治療仍失敗無反應,且ErbB2呈陽性的局部復發或轉移性乳癌患者,如果服用泰嘉錠合併化療藥物截瘤達將可延長疾病惡化期至8.4個月,比單一服用截瘤達的疾病惡化期4.4個月多出一倍。

  陳訓徹強調,新式標靶治療藥物屬於口服劑型,一天一次,一次五顆,取代過去必須到醫院使用針劑的治療形式,不但增加治療的便利性,提高了治療意願,提供患者另一項新選擇。


中時健康:http://health.chinatimes.com/contents.aspx?cid=6,56&id=3054

2008年10月18日 星期六

乳癌營養注意 (二)

乳癌營養注意 (二)


你可以多喝豆漿多吃蔬果來改變体質


燉些菇類的湯來喝因為多醣体能幫助免疫系統的修護能力


肉奶蛋一定要少吃


多做深呼吸可以幫助淋巴循環


吸四秒停十六秒吐八秒早晚做十回


水一定要多喝幫助代謝


另外可以熱水泡泡腳幫助新陳代謝


人体自身的免疫系統 ~是世界上最好的医生 
提供均衡且多樣化的營養 ~來滋養免疫系統功能 
使身体能夠預防疾病侵擾 ~遠比生病了 
再去尋求治療更加來得重要 

人体的組成~細胞*組織*器官*系統*人 
~<百分之九十九的疾病與免疫系統失調有關>~ 

免疫系統失調分三大類: 
第一太弱 
*容易感冒或病毒感染或各類型肝炎或罹患癌症 
第二單一抗体太強 
*容易呼吸系統過敏氣喘或異位性皮膚炎或蕁麻疹 
第三自体混亂 
*容易糖尿病僵直性脊椎炎或紅斑性狼瘡或風濕性關節炎 
多發性硬化症重症肌無力或肌肉萎縮症或老年癡呆症或腎臟萎縮...等 
(此為免疫系統失調到喪失辨識能力認不清誰是自己人 
誰是敵人造成免疫細胞攻擊自己的器官組織) 

免疫系統有三大功能:攻擊~清除~記憶和修補的能力 

要如何使免疫系統功能健全呢? 
1*正常的作息2*穩定的情緒3*適度的運動4*均衡的營養 

正確的營養觀念: 
*要植物的非動物的(動物蛋白質50%人体無法吸收與消化) 
*要天然的無副作用 (本草植物分上中下品) 
*要神造的不要人造的(一顆橘子好過一顆維他命) 
*要種類多複方搭配量要大(現今人類一天要吃到15種蔬果11公斤) 
*要富含植物營養素~多醣体~抗氧化劑(才能對抗這個污染的環境)



參考資料http://tw.myblog.yahoo.com/ni-ni/陽光女孩營養免疫學

Breast cancer radiotherapy: controversies and prospectives

Breast cancer radiotherapy: controversies and prospectives

YU Jin-ming, WANG Yong-sheng
YU Jin-ming Breast Cancer Center, Shandong Cancer Hospital, Jinan, Shandong 250117, China; WANG Yong-sheng Breast Cancer Center, Shandong Cancer Hospital, Jinan, Shandong 250117, China 

Correspondence to: YU Jin-ming  Breast Cancer Center, Shandong Cancer Hospital, Jinan, Shandong 250117, China  (Tel:86-531-87984777 Fax:86-531-87984079 Email:jn7984729@ public.jn.sd.cn )
Abstract:
No abstract available 
CMJ 2008;121(20):1957-1959



Despite consensus on breast cancer radiotherapy, there are still some controversies over post-mastectomy radiotherapy (PMRT) in patients with 1–3 positive lymph nodes, accelerated partial breast irradiation (APBI), appropriate sequence of radiotherapy, chemotherapy and hormonal treatment, and radiotherapy after preoperative systemic therapy.

PMRT in patients with 1–3 positive axillary lymph nodes 
Maximal control of locoregional tumor is required to achieve the highest ultimate survival rate of patients. The role of PMRT is not clearly defined in this group of patients. Theoretically, the long-term survival of these patients might be benefited after eradication of locoregional tumor because of the lower probability of metastasis beyond the regional lymph nodes.1 The cutoff point of 4 involved axillary nodes is challenged by a recent report of Overgaard et al,2 which demonstrates that the number of involved nodes should not be used as a threshold to prescribe PMRT. This adds to the growing evidence that PMRT should be given to all patients with involved axillary lymph nodes. In fact, the Early Breast Cancer Trialists' Collaborative Group (EBCTCG) 2005 meta-analysis showed a similar effect of radiotherapy on local relapse free survival (LRF) and survival in favor of PMRT irrespective of the number of involved lymph nodes.3 Moreover, this result was even more pronounced and significant in the EBCTCG 2005-2006 worldwide overview presented at the 2006 SABCS.4 Therefore, sufficient evidence seems to be available for a new shift towards more aggressive locoregional treatment in breast cancer and adaptation of the treatment guidelines accordingly.5 PMRT to the chest wall and supraclavicular lymph nodes should be considered for these patients in the NCCN 2007 guidelines,6 and strongly considered in the NCCN 2008 guidelines.7
Further evidence will be obtained from several well-designed large prospective randomized clinical trials, like EORTC 22922/10925, NCIC CTG MA20 and SFRO CMI, which examined the thin line between advantages and side-effects of PMRT for early breast cancer patients. Until the results of these trials become available, patients with 1–3 involved axillary lymph nodes should be given PMRT at least to the chest wall and the supraclavicular lymph node area.5

APBI

Whole-breast irradiation (WBI) produces well-established results, good cosmesis and low toxicity. Conventional WBI takes 5–7 weeks, with attendant costs and inconveniences. This represents a significant hardship to certain subsets of patients and leads to disparity in breast cancer treatment. Obstacles such as inability to find an X-ray telescope (XRT) center close to home, difficulty in finding transportation to and from a center, lack of family support, and extreme age and/or physical handicap prevent some patients from electing to enter a 6-week course of WBI.

Results from the breast-conserving therapy (BCT) trials suggest that up to 86% of the risk for ipsilateral breast cancer recurrence resides in close proximity to the original tumor site. This leads investigators to consider the role of an accelerated and more tumor bed-focused course of radiotherapy. APBI involves the treatment of a limited volume of breast tissue with a dose of irradiation per fraction increased and the treatment time course decreased. The goal is to deliver a dose of irradiation to a limited volume in less time, that is equivalent to the clinical outcome of the conventional 6-week treatment.8

The importance of proper patient selection cannot be over-stressed when discussing the efficacy of APBI. This includes early stage breast cancer as determined by tumor size less than 2–3 cm, node-negative disease, age of patients more than 45–50 years, and tumor-free margins.9,10 Additional criteria under study include features such as lobular histology, presence of extensive intraductal component (EIC), lymphvascular invasion, tumor grade and limited node-positive disease. When the tumor histology demonstrates a higher risk for multicentric disease and thus a higher rate for non-tumor bed cancer recurrence, the patients should not be considered for APBI.8

During the last decade, there are some compelling clinical observations and preliminary results: acceptable 5-year local tumor control, good to excellent cosmesis, and low-grade toxicity, suggesting APBI may be a more appropriate and user-friendly mode for delivering radiotherapy than WBI.8 Issues to be contended with include proper selection, optimizing fractionation-dose schemes, quality assurance of treatment delivery, and minimal longer-term follow-up. More recently, newer techniques that are more patient and physician friendly have been developed, and the interest in APBI has, as a result, increased dramatically.

At present, WBI remains the standard of care after lumpectomy. Patients with invasive or noninvasive breast cancer undergoing BCT or APBI should be aware of the data exploring this treatment approach and provide the opinion of participating in the ongoing phase III trials, as part of an institutional review board-approved clinical registry. Four important trials that attract our attention are the randomized NSABP B-39/RTOG0413 phase III study comparing conventional WBI with APBI for stage 0, I, or II disease, the European TARGIT and EIO trials for IORT, and the American Society of Breast Surgeons-sponsored MammoSite Breast Brachytherapy Registry Trial.

Sequence of radiotherapy and adjuvant systemic treatment

Radiotherapy and adjuvant systemic treatment contribute to an increased overall survival rate.3,11 However, the sequencing of both treatment modalities remains a matter of debate, with differing treatment policies in various countries and various centers. The best results for all clinical endpoints (local and regional control, quality of life, cosmetic results, survival) should be obtained by an optimal combination of surgery, systemic treatment and radiotherapy. This might be considered as a plea for dedicated breast clinics.
Postponement of radiotherapy might lead to an increased incidence of locoregional recurrence and a decreased survival after BCT. A comprehensive review dealing with prospective and retrospective studies in BCT showed that early radiotherapy might benefit patients with positive, close or unknown microscopic margins, whereas those with wider tumor free margins were not benefited.12

Only one small randomized trial in BCT was published where radiotherapy followed by chemotherapy was compared to chemotherapy followed by radiotherapy. Initially CTRT led to more local recurrences, whereas RTCT led to more distant metastases; but at a longer follow-up, this difference disappeared completely.13 Moreover, this trial never showed any survival benefit for either sequences. In an editorial accompanying a report of a retrospective study on the timing of radiotherapy in the prospective CALGB 9344 trial, Bellon and Harris14 concluded that with the available evidence radiotherapy should be given after completion of chemotherapy. However, they confirmed, based on their previous experience, that one should be cautious in the subset of patients with close surgical margins. They suggest that the risk of locoregional relapses, with or without radiotherapy, need to be re-examined as systemic therapy becomes more effective.

As the effectiveness of radiotherapy and chemotherapy for eradicating all clonogenic cancer cells diminishes with an increasing tumor burden, ideally both treatment modalities should start as soon as possible. Theoretically, the best way to achieve this goal is to administer adjuvant radiotherapy and chemotherapy concurrently. There are a lot of concerns opposing this approach, including more acute toxicity, decreased cosmetic outcome, and more (late) cardiac toxicity.5,12

Combined chemotherapy and radiotherapy lead to a higher risk of especially late toxicity: the sequential administration is therefore preferred. The question of which modality should be given first remains unanswered. Several attempts to address this in a properly designed randomized clinical trial failed. With the evidence that is available up to now, adjuvant hormonal treatment should start after completion of chemotherapy whereas no firm recommendations on its sequence with radiotherapy can be given.5

Patients undergoing preoperative systemic therapy 

Apart from the routine use of such treatment for large tumors, a majority of the St. Gallen 2007 Expert Panel supported preoperative systemic therapy to improve resectability and thus cosmesis, while a minority also considered that the assessment of responsiveness constituted a reason to employ this treatment approach. A clear majority supported the inclusion of trastuzumab in the preoperative treatment program for patients with HER2-positive disease.15

There is insufficient evidence to make recommendations or suggestions on whether all patients initially treated with preoperative systemic therapy should be given PMRT after surgery as indicated in the ASCO guidelines.16 Buchholz et al17 reported the risk for LRF after neoadjuvant chemotherapy and mastectomy in 19% of patients with LRF of pathological complete remission (pCR) vs 28% of patients with residual cancer, suggesting that selection of patients for PMRT cannot be based on response alone. With the addition of PMRT, the LRF in patients with stage III disease declined from 20% to 9%, but did not significantly decrease in patients with stage II disease (which declined from 9% to 5%).18 Among the patients treated with mastectomy in NSABP B-18, none received PMRT. The recurrence rate was 0% in patients with pCR but 10.5% in patients with residual cancer not metastasized to the lymph nodes and 20.3% in those with residual cancer metastasized to the nodes. However, most of these patients had T1 and T2 tumors,19 suggesting that initial stage, degree, and location of residual disease should be used in determining the need for PMRT after neoadjuvant chemotherapy.

The patients who are not candidates for breast conservation on the basis of a large tumor in a small breast should be considered for preoperative chemotherapy to reduce the tumor size. The patients who are most likely to benefit from this approach are those with unicentric, high-grade, ER-negative cancers.

REFERENCES

1. Voordeckers M, Van de Steene J, Vinh-Hung V, Storme G. Adjuvant radiotherapy after mastectomy for pT1-pT2 node negative (pN0) breast cancer: is it worth the effect? Radiother Oncol 2003; 68: 227-231.

2. Overgaard M, Nielsen HM, Overgaard J. Is the benefit of postmastectomy irradiation limited to patients with four or more positive nodes, as recommended in international consensus reports? A subgroup analysis of the DBCG 82 b & c randomized trials. Radiother Oncol 2007; 82: 247-253.

3. Clarke M, Collins R, Darby S, Davies C, Elphinstone P, Evans E, et al. Effect of radiotherapy and of differences in the extent of surgery for early breast cancer on local recurrence and 15-year survival: An overview of the randomised trials. Lancet 2005; 366: 2087-2106.

4. EBCTCG Secretariat, on behalf of EBCTCG. Highlights from the early breast cancer trialists' collaborative group (EBCTCG) 2005-2006 worldwide overview. Breast Cancer Res Treat 2006; 100: s19.

5. Poortmans P. Evidence based radiation oncology: breast cancer. Radiother Oncol 2007; 84: 84-101.

6. Carlson RW, Anderson BO, Burstein HJ. NCCN breast cancer clinical practice guidelines in oncology. Version 1, 2007. Available at: http://www.nccn.org/physician_gls/PDF/breast. pdf. Accessed January 25, 2007.

7. Carlson RW, Allred DC, Anderson BO. NCCN breast cancer clinical practice guidelines in oncology. Version 2, 2008. Available at: http://www.nccn.org/professionals/physician_gls/ PDF/breast.pdf.

8. Sanders ME, Scroggins T, Ampil FL, Li BD. Accelerated partial breast irradiation in early-stage breast cancer. J Clin Oncol 2007; 25: 996-1002.

9. American Society of Breast Surgeon. Consensus statement for accelerated partial breast irradiation. http://www.breastsurgeons. org/officialstmts/officialstmt3.shtml.

10. American Brachytherapy Society. Guidelines for accelerated partial breast irradiation. http://www.americanbrachytherapy. org/resources/healthapps.cfm.

11. Early Breast Cancer Trialists' Collaborative Group (EBCTCG). Effect of chemotherapy and hormonal therapy for early breast cancer on recurrence and 15-year survival: An overview of the randomised trials. Lancet 2005; 365: 1687-1717.

12. Recht A. Integration of systemic therapy and radiation therapy for patients with early-stage breast cancer treated with conservative surgery. Clin Breast Cancer 2003; 4: 104-113.

13. Bellon JR, Come SE, Gelman RS, Henderson IC, Shulman LN, Silver BJ, et al. Sequencing of chemotherapy and radiation therapy in early-stage breast cancer: updated results of a prospective randomized trial. J Clin Oncol 2005; 23: 1934-1940.

14. Bellon JR, Harris JR. Chemotherapy and radiation therapy for breast cancer: what is the optimal sequence? J Clin Oncol 2005; 23: 5-7.

15. Goldhirsch A, Wood WC, Gelber RD, Coates AS, Thürlimann B, Senn HJ, et al. Progress and promise: highlights of the international expert consensus on the primary therapy of early breast cancer 2007. Ann Oncol 2007; 18: 1133-1144.

16. Recht A, Edge SB, Solin LJ, Robinson DS, Estabrook A, Fine RE, et al. Postmastectomy radiotherapy: guidelines of the American Society of Clinical Oncology. J Clin Oncol 2001; 19: 1539-1569.

17. Buchholz TA, Tucker SL, Masullo L, Kuerer HM, Erwin J, Salas J, et al. Predictors of local-regional recurrence after neoadjuvant chemotherapy and mastectomy without radiation. J Clin Oncol 2002; 20: 17-23.

18. Huang EH, Strom EA, Perkins GH. Comparison of risk of local-regional recurrence after mastectomy or breast conservation therapy for patients treated with neoadjuvant chemotherapy and radiation stratified according to a prognostic index score. Int J Radiat Oncol Biol Phys 2006; 66: 352-357.

19. Buzdar AU, Ibrahim NK, Francis D, Booser DJ, Thomas ES, Theriault RL, et al. Significantly higher pathologic complete remission rate after neoadjuvant therapy with trastuzumab, paclitaxel, and epirubicin chemotherapy: results of a randomized trial in human epidermal growth factor receptor 2-positive operable breast cancer. J Clin Oncol 2005; 23: 3676-3685.



文章出處:http://cmj.org/Periodical/PaperList.asp?id=CMJLW20081016319914604465


2008年10月17日 星期五

乳癌 Q & A

Q乳癌
請問謝醫師:乳癌病患需不需找個好的中醫 來補西醫的不足?並吃些中藥來調養身體.謝謝!


A:
台北馬偕醫院 血液腫瘤科 謝瑞坤 主任
 
這是個簡單又複雜的問題.需不需要因人因病況而異
第一個考量當然是患者的病況,早期患者身體機能仍然正常
日常活動及飲食也正常,此時中醫能有多少幫助實難確定.
第二個考量是使用哪些中藥,最好的建議是找一位合格的
中醫師,最好是找醫學中心的中醫師比較可靠.與醫師要多
所溝通,討論使用中藥的目的及方法.如同吃西藥一樣,要去
了解所服用的中藥.
第三點是要與主治醫師溝通,不同治療階段的治療在身體的
需要可能有所不同,主治醫師一般是最重要的決定人物.許多
西藥也可能與中藥有交互作用.做個紀錄,讓您的醫師(中或西醫)
清楚您所使用的所有藥物. 

2007/04/17



Q: 醫師您好:
請問在做乳癌化療前我有放pro-a就是打化療的一個注射檯假如已做完化療現在要安排拿掉pro-a還需要每個月去醫院打生理食鹽水沖洗嗎?如果超過一個月沒沖洗那會不會怎樣?現在等醫生排一個月後把pro-a拿掉的手術
A:
長庚醫院 血液腫瘤科 廖宗琦醫師
 
人工血管的沖洗,一般是每4星期沖洗一次,但這並不是嚴格的規定。超過一個月沒沖洗不會怎樣。人工血管在打化學治療不久後拔掉可能太早,通常是追蹤一段時間無腫瘤再發後再拔除,這較適宜。 
2008/10/05


Q:乳癌
您好!
我是乳癌一期患者約1.3公分,淋巴未感染(切10顆),HER2是陰性,賀爾蒙是陽性,目前接受化療,醫生說要六~八次療程,是用(5FU;)有利癌、Exdoxan癌得星、(Mtx)滅可善施打,目前已完成二個療程。
請問如果以上療程六~八次,和上列療程四次加歐洲紫杉醇三次(須自費),在療效上有什麼差別嗎?用紫衫醇注射療效比較好對我比較有利嗎?
還有化療一定都會掉頭髮嗎?我目前為只沒掉很嚴重,副作用也還不很嚴重,這跟用藥有關係嗎?還是體值關係?
請您百忙中盡早回答,感恩!

A:
台北市立聯合醫院仁愛 血腫科 林哲斌醫師
 
屬於第一期乳癌 , 以腫瘤大於一公分來看是應該要化療, 而妳的her-2染色成陰性不一定要用到小紅莓的藥因此妳的醫師幫妳設計 CMF( (5FU;)有利癌、Exdoxan癌得星、(Mtx)滅可善)之化療是合理的 
至於是否要使用歐洲紫杉醇 一般而言使用歐洲紫杉醇比較適用於腋下淋巴結已受感染侵犯者 妳的情況並不一定需要可以和妳的醫師討論看看
目前妳使用的CMF藥劑是副作用最低的 通常是不會全掉光頭髮 但到了療程後期還是會掉一點不嚴重 跟體質是有點關聯 


2008/06/17


Q乳癌
你好.我想尋問醫師.我乳癌2.切片是惡性.醫師説要電療.化療.何謂電療.請回覆我.謝謝.

A: 
台北馬偕醫院 耳鼻喉頭頸外科 呂宜興 醫師
 
電療就是放射治療,以前用鈷-60,現在用高能量的電子射線,並不是高壓電,好像照X光一樣 
2008/03/17



文章出處http://www.totalcare.org.tw/qa_111.php?qa_id=516

Q:乳癌
乳癌患者,受體為陽性反應且無接受荷爾蒙藥物治療‧可以喝豆漿養生嗎?
有兩種完全的衝突說法;一是豆漿會促進女性荷爾蒙活耀,最好少喝‧另一種說法是豆漿內有類似Tamoxifen的成分可以抑制女性荷爾蒙‧
何者為正確?

A: 
台北馬偕醫院 耳鼻喉頭頸外科 呂宜興 醫師
 
基本上兩者都沒有根據,豆漿就是食物,和治療疾病無關 
2007/11/15



文章出處http://www.totalcare.org.tw/qa_111.php?qa_id=422

Q腫瘤標記是什麼? 是不是正常就代表有沒有腫瘤?

A
台北馬偕醫院 血液腫瘤科 謝瑞坤 主任
 
腫瘤標記就是一些可以代表腫瘤存在的指標,如常用的CEA, Ca15-3, Ca19-9, PSA及AFP等. 我們可藉由檢驗癌症患者的血液,體組織或尿液內可測出的一些較正常人濃度為高的物質. 這種物質可以是直接由癌細胞產生的,也可以是身體對這些癌細胞所產生的反應的結果. 藉由這類腫瘤標記的檢測我們希望它可以如同其他臨床檢驗一樣來幫助我們診斷或治療癌症.

腫瘤標記高低不一定會與腫瘤的有無或大小相關。很多早期的癌症的腫瘤標記不一定會升高,譬如大腸直腸癌的第一期時腫瘤標記CEA只有4-10%會升高。

2006/05/15




文章出處http://www.totalcare.org.tw/qa_111.php?qa_id=47

Q腫瘤標記的檢查可以提早發現癌症嗎?

A:
台北馬偕醫院 血液腫瘤科 謝瑞坤 主任
 
通常不可以. 腫瘤標記的檢查對大多數的癌症而言並無法在早期診斷方面有所幫忙.最大的問題是許多早期癌症的常用腫瘤指數並未有增加. 以大腸癌為例,當癌細胞還侷限在第一期時(黏膜層)只有4-10%會有常用的CEA指數的升高. 在如何早期診斷癌症的檢驗中,腫瘤指數通常不是最重要的 
2006/06/23 


Q: 檢查中腫瘤標記不正常(升高)就可以代表身體有癌症嗎腫瘤 ?

A: 
台北馬偕醫院 血液腫瘤科 謝瑞坤 主任
 
這也不一定. 腫瘤標記有的是腫瘤細胞分泌出來的,有的是腫瘤附近細胞的反應或身體的反應而來的. 有相當多非癌症的病況也會有一些常見腫瘤指數的增加. 譬如常用的所謂大腸癌腫瘤指數CEA不但在其他腫瘤也可發現,在一般的肺疾甚至吸煙者也可以有升高的現象. 所以腫瘤標記不正常(升高)不代表身體內一定有了癌症. 
2006/06/23 




尼古丁可能導致乳癌

2008/10/17

【本報綜合外電報導】美國加州大學洛杉磯分校(UCLA)的神經科學家發現尼古丁會造成腦中與情緒、性慾、睡眠等有關的區域退化。醫生也警告:吸菸(尼古丁)會導致肺癌、心臟病、肺氣腫及難產。

如今美國麻薩諸塞州哈佛大學貝斯猶太女執事醫療中心研究團隊發現,尼古丁或許是導致人體形成乳房腫瘤的部分因素。